[Problem] To provide a uniaxial eccentric screw pump which facilitates adjustment of the interference or clearance between a rotor and a stator, and which can also be automated. [Solution] A uniaxial eccentric screw pump 1 comprises: an input shaft 3 rotatably supported by a bearing 32 and rotated by the motive power of a drive machine; a rotor 5 connected to the input shaft 3 so as to be eccentrically rotatable; a stator 12 into which the rotor 5 can be inserted; and a bearing housing 30 into which the input shaft 3 can be inserted and which accommodates the bearing 32. The uniaxial eccentric screw pump 1 comprises a movement mechanism 50, which is capable of shaping the outer diameter of the rotor 5 and/or the inner diameter of an inner hole 12a of the stator 12 so as to decrease proceeding from one end toward the other end and/or changing the amount of eccentricity of the rotor, and which moves the bearing 32 closer to or farther from the stator 12 integrally with the input shaft 3 along an axial direction of the input shaft.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
[Problem] To provide a uniaxial eccentric screw pump which facilitates adjustment of the interference or clearance between a rotor and a stator, and which can also be automated. [Solution] A uniaxial eccentric screw pump 1 comprises: an input shaft 3 rotated by the motive power of a drive machine; a rotor 5 connected to the input shaft 3 so as to be eccentrically rotatable; and a stator 12 into which the rotor 5 can be inserted. The uniaxial eccentric screw pump 1 comprises a movement mechanism 50, which is capable of shaping the outer diameter of the rotor 5 and/or the inner diameter of an inner hole 12a of the stator 12 so as to decrease proceeding from one end toward the other end and/or changing the amount of eccentricity of the rotor 5, and which moves the stator 12 closer to or farther from the rotor 5 in an axial direction. A stator casing 10 comprises a first stator casing 14 that supports the stator 12 and a second stator casing 16 that holds the first stator casing 14 so as to allow for relative movement in the axial direction.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
[Problem] To provide a uniaxial eccentric screw pump with which an interference or a clearance between a rotor and a stator can be easily adjusted, and which can be automated. [Solution] This uniaxial eccentric screw pump 1 comprises an input shaft 60 rotated by the power of a drive machine, a rotor 5 connected to the input shaft 60 in an eccentrically rotatable manner, a joint section 9 that connects the input shaft 60 and the rotor 5 directly or indirectly via a joint shaft 7, and a stator 12 into which the rotor 5 can be inserted. The outer diameter of the rotor 5 and/or the inner diameter of an inner hole 12a of the stator 12 can be formed so as to decrease from one end toward the other end, and/or the amount of eccentricity of the rotor can be changed. The input shaft 60, the joint shaft 7, and/or the joint section 9 is provided with an expansion/contraction mechanism 50 that causes the rotor 5 to move toward and away from the stator 12 by expanding and contracting in the axial direction.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
A deaeration device includes: a channel forming member that defines an annular channel; an inlet port through which a fluid flows into the annular channel; an outlet port through which the fluid flows out of the annular channel; a partition that partially partitions the annular channel; an actuator that causes at least a part of the channel forming member to rotate relatively to the partition in the circumferential direction of the annular channel, to form a gradient in the pressure of the fluid in the annular channel; and an air vent that opens to the annular channel at a position where the pressure of the fluid is lower than the pressure of the fluid in the outlet port, and that releases the air bubbles contains in the fluid, to outside of the annular channel.
[Problem] The objective is to provide a fluid discharge system capable of reducing pressure in a piping system formed from a supply path or the like to an appropriate level while in a state of not discharging a fluid. [Solution] A fluid discharge system (10) comprises: a discharge device (30); a supply pump (20); a supply path (40) connecting the discharge device (30) and the pump so as to allow a fluid to pass therebetween; a pressure regulating tank (50), partway along the supply path (40), that allows the fluid to flow in and out thereof; and a control device (200). The control unit (200) carries out control to regulate the flow of fluid in and out of the pressure regulating tank (50) to allow for execution of a low pressure maintaining mode that maintains the internal pressure (P) of the supply path (40) during a stop period when a discharge operation is stopped at a lower pressure than a standard range of the internal pressure (P) of the supply path (40) during a discharge period when the discharge operation is performed.
A uniaxial eccentric screw pump includes a stator having an insertion hole with an inner peripheral surface being internally threaded, and a rotor including shaft placed through the insertion hole in the stator. The insertion hole is, in a cross section, an opening including a middle area and two end areas. An interference amount between an outer peripheral surface of the rotor and the inner peripheral surface of the insertion hole in the stator is smaller in the middle area than in the two end areas.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
A uniaxial eccentric screw pump includes a stator having an insertion hole with an inner peripheral surface being internally threaded, and a rotor including a shaft being externally threaded and placed through the insertion hole in the stator. The stator has the insertion hole being an opening in a cross section, the opening includes a middle area and two end areas, and the middle area has lower contact pressure at least in a middle of the middle area than at two ends of the middle area.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
A uniaxial eccentric screw pump includes: a stator having an insertion hole with an inner peripheral surface being internally threaded; and a rotor being externally threaded and placed through the insertion hole. In a cross section, the rotor has a cross-sectional center displaceable in a reciprocating manner in a longitudinal direction of the insertion hole between a pair of turn positions along a center line extending in the longitudinal direction during eccentric rotation of the rotor. The rotor comes in contact with the inner peripheral surface of the insertion hole in a lateral direction of the insertion hole. An interference amount between the rotor and the stator includes a first interference amount when the cross-sectional center is at one of the turn positions and a second interference amount when the cross-sectional center is at a central axis. The first interference amount is larger than the second interference amount.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
[Problem] To provide a coating inspection system that is capable of accurately inspecting a state of coating a workpiece with a fluid, even in a case in which relative movement speed between an inspection device and the workpiece varies. [Solution] A coating inspection system (S1) has an image-capturing device (10), a moving device (30), and an inspection control device (40). A coating inspection system (S1) executes image-capturing processing of acquiring a plurality of images image-captured at different image-capturing timings by the image-capturing device (10), in a process of relatively moving the image-capturing device (10) and a workpiece (W), feature point extraction processing of extracting feature points included in the images, movement amount derivation processing of deriving a relative movement amount between the image-capturing device (10) and the workpiece (W) among image-capturing timings, image formation processing of forming an inspection image by arranging and compositing, on the basis of the relative movement amount, original images that have been acquired in the image-capturing processing and have different image-capturing timings, and inspection processing of performing inspection regarding coating on the basis of the inspection image.
A uniaxial eccentric screw pump 1 comprises: a stator 21 that defines a pump room PR; a rotor 22 that transfers fluid in accordance with periodic motion in the pump room PR; and an operation state determination apparatus 4 that determines the operation state. The operation state determination apparatus 4 includes: a Doppler sensor 40 that transmits an ultrasonic wave or a microwave toward the rotor 22, receives a reflection wave thereof, and generates a Doppler signal; a determination image generation unit 41a that generates a determination image corresponding to the Doppler signal; and a determination unit 41b on which learning processing has been performed by using teacher data so as to output the operation state upon an input of the determination image.
F04C 2/18 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés d'un autre type qu'à axe interne avec des pistons rotatifs dentés à formes de dents semblables
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
G01N 29/50 - Traitement du signal de réponse détecté en utilisant des techniques d'autocorrélation ou des techniques d'intercorrélation
An application nozzle (10) for applying a fluid (S) to a workpiece (1) comprises: a discharge tube (20) that includes a discharge port (22a) for discharging the fluid (S); a partitioning member (30) provided in the discharge tube (20) across the discharge port (22a); and a drive mechanism section (40) for relatively rotating the discharge tube (20) and the workpiece (1) about a center axis (L1, L2) of the discharge tube (20). The application nozzle (10) is configured to use the drive mechanism section (40) to relatively rotate the discharge tube (20) and the workpiece (1) about the center axis (L1, L2), thereby using the partitioning member (30) to cut the fluid (S) discharged from the discharge port (22a) of the discharge tube (20).
B05C 5/00 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage
B05C 11/10 - Stockage, débit ou réglage du liquide ou d'un autre matériau fluideRécupération de l'excès de liquide ou d'un autre matériau fluide
B05D 1/26 - Procédés pour appliquer des liquides ou d'autres matériaux fluides aux surfaces par application de liquides ou d'autres matériaux fluides, à partir d'un orifice en contact ou presque en contact avec la surface
B05D 3/00 - Traitement préalable des surfaces sur lesquelles des liquides ou d'autres matériaux fluides doivent être appliquésTraitement ultérieur des revêtements appliqués, p. ex. traitement intermédiaire d'un revêtement déjà appliqué, pour préparer les applications ultérieures de liquides ou d'autres matériaux fluides
A fluid substance supply device (1) comprises: an accommodation container (2) that removably accommodates a cartridge (90) having a filling container (91) that has been filled with a fluid substance (F) and an outflow opening (92) that is provided in one end section of the filling container (91) and allows the fluid substance (F) to flow out from the filling container (91); a discharge opening (4) that discharges the fluid substance (F) which has flowed out from the cartridge (90); a first pressing part (3A) that presses an other end section of the filling container (91) with a first pressing force (P1); and a second pressing part (3B) that supplies a fluid which has been pressurized to a second pressing force (P2) to an annular space (2c) between the filling container (91) and the accommodation container (2). When the first pressing part (3A) and the second pressing part (3B) are actuated in order to begin discharging the fluid substance (F), the pressing force due to the first pressing part (3A) reaches the first pressing force (P1) after the fluid supplied by the second pressing part (3B) has reached the second pressing force (P2).
A nozzle (110) comprises: a discharge member (111) having a discharge port (111a) for discharging a fluid (P); a plate-shaped cutting member (112) disposed close to the discharge member (111) and capable of pivoting between a first position for opening the discharge port (111a) and a second position for closing the discharge port (111a); and a pivoting device for causing the cutting member (112) to pivot between the first position and the second position so as to cut the fluid (P) discharged from the discharge port (111a).
B05C 5/02 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage à partir d'un dispositif de sortie en contact, ou presque en contact, avec l'ouvrage
B05C 11/10 - Stockage, débit ou réglage du liquide ou d'un autre matériau fluideRécupération de l'excès de liquide ou d'un autre matériau fluide
The purpose of the present disclosure is to provide a three-dimensional fabrication device capable of forming various three-dimensional shapes with good precision. A three-dimensional fabrication device (100) discharges a fluid to make layers while flying, and forms a three-dimensional shape with the layered fluid. The three-dimensional fabrication device (100) comprises: a drone (1); a discharge device (2); and a control device. The drone (1) moves in the air along a course based on the three-dimensional shape of a target. The discharge device (2) includes a nozzle (22) for discharging the fluid and is attached to the drone (1) to move integrally with the drone (1). The control device controls the operation of the drone (1) and the discharge device (2). On the basis of the movement speed of the drone (1) at each of the positions on the course. the control device controls the discharge device (2) so that the fluid is discharged from the nozzle (22) at a discharge amount associated with the movement speed.
B29C 64/393 - Acquisition ou traitement de données pour la fabrication additive pour la commande ou la régulation de procédés de fabrication additive
B29C 64/106 - Procédés de fabrication additive n’utilisant que des matériaux liquides ou visqueux, p. ex. dépôt d’un cordon continu de matériau visqueux
[Problem] To implement a nozzle and a liquid supply system in which liquid flows through branch passages connecting liquid ejection ports so that the occurrence of dripping can be reduced. [Solution] A nozzle 10 comprises: a liquid supply port 20; a plurality of liquid ejection ports 30; a passage 40 connecting the liquid supply port 20 to the plurality of liquid ejection ports 30 so that liquid can pass, and branching at a branching point 42 into a plurality of branch passages 44; and valve members 50, 150, 250, 350 that restrict the communication between the plurality of branch passages continuous from the branching point 42 to the plurality of liquid ejection ports 30.
B05B 1/14 - Buses, têtes de pulvérisation ou autres dispositifs de sortie, avec ou sans dispositifs auxiliaires tels que valves, moyens de chauffage avec des orifices de sortie multiplesBuses, têtes de pulvérisation ou autres dispositifs de sortie, avec ou sans dispositifs auxiliaires tels que valves, moyens de chauffage avec des filtres placés dans ou à l'extérieur de l'orifice de sortie
B05B 1/30 - Buses, têtes de pulvérisation ou autres dispositifs de sortie, avec ou sans dispositifs auxiliaires tels que valves, moyens de chauffage agencés pour commander un débit, p. ex. à l'aide de conduits de section réglable
B05C 11/10 - Stockage, débit ou réglage du liquide ou d'un autre matériau fluideRécupération de l'excès de liquide ou d'un autre matériau fluide
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
16.
Uniaxial eccentric screw pump with radial adjustment of the stator
a whose inner surface is formed in a female screw shape; a rotor that is a male screw shaft body inserted into the through hole of the stator; a plurality of shims that are arranged on a radially outside of the stator in a range from one end to the other end of the stator, are in surface contact with an outer surface of the stator, are capable of compressing the stator by moving radially inward with respect to the stator, and have, on an outer surface, an inclined surface gradually inclined radially inward or outward toward one end; and an adjustment member that is movable in an axial direction with respect to the stator and has a pressing part that can press the inclined surface of each of the shims.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
A method for applying a sealing agent (S), which is a highly viscous fluid, to an application surface (3a) of a base material (3), which is a workpiece, includes: a shape-retaining-part forming step for forming a shape retaining part (Sa) in which the sealing agent (S) extends from a discharge port (11a) of a nozzle (11) to the application surface (3a) by discharging the sealing agent (S) from the nozzle (11) disposed with a gap (G) from the application surface (3a) and allowing the sealing agent (S) to adhere to the application surface (3a); and a shape-retaining-part cutting step for cutting the shape retaining part (Sa) so as to remain adhered to the application surface (3a) side by sliding a wire (13) through the shape retaining part (Sa) formed in the shape-retaining-part forming step, in a first direction (Y1) crossing the discharge port (11a) of the nozzle (11).
B05D 1/26 - Procédés pour appliquer des liquides ou d'autres matériaux fluides aux surfaces par application de liquides ou d'autres matériaux fluides, à partir d'un orifice en contact ou presque en contact avec la surface
B05D 3/12 - Traitement préalable des surfaces sur lesquelles des liquides ou d'autres matériaux fluides doivent être appliquésTraitement ultérieur des revêtements appliqués, p. ex. traitement intermédiaire d'un revêtement déjà appliqué, pour préparer les applications ultérieures de liquides ou d'autres matériaux fluides par des moyens mécaniques
B05D 7/24 - Procédés, autres que le flocage, spécialement adaptés pour appliquer des liquides ou d'autres matériaux fluides, à des surfaces particulières, ou pour appliquer des liquides ou d'autres matériaux fluides particuliers pour appliquer des liquides ou d'autres matériaux fluides particuliers
A fluid discharging system 10 includes a discharging device 30 configured to discharge fluid, a pump 20 configured to supply the fluid stored in a reservoir 22 to the discharging device 30, a supply line 40 connecting the discharging device 30 with the pump 20 to allow the fluid to pass therethrough, and a buffer tank 50, disposed at an intermediate location of the supply line 40, and configured to suck and discharge the fluid. The fluid discharging system 10 is capable of continuing supply of the fluid to the discharging device 30 by discharging the fluid from the buffer tank 50 to the supply line 40, while limiting the supply of the fluid from the pump 20 to the discharging device 30. The buffer tank 50 is capable of realizing a pressure acting state and a holding state.
B05B 9/04 - Appareillages de pulvérisation pour débiter des liquides ou d'autres matériaux fluides, n'impliquant pas de mélange avec des gaz ou des vapeurs caractérisés par les moyens d'alimentation en liquide ou en autre matériau fluide comportant un réservoir sous pression ou compressibleAppareillages de pulvérisation pour débiter des liquides ou d'autres matériaux fluides, n'impliquant pas de mélange avec des gaz ou des vapeurs caractérisés par les moyens d'alimentation en liquide ou en autre matériau fluide comportant une pompe
A deaerator (100) equipped with a channel-forming member (11) demarcating a cyclic channel (20), an inflow port (21) for causing a fluid (F) to flow into the cyclic channel (20), an outflow port (22) for causing the fluid (F) to flow out of the cyclic channel (20), a partition (16) which partly divides the cyclic channel (20), an actuator (29) which rotates at least some of the channel-forming member (11) relatively to the partition (16) along the circumferential direction of the cyclic channel (20) to give a gradient to the pressure of the fluid (F) inside the cyclic channel (20), and an air withdrawal opening (23) which is open to the cyclic channel (20) in a position where the fluid (F) has a lower pressure than in the outflow port (22) and which allows bubbles (A) having come into the fluid (F) to be discharged from the cyclic channel (20).
[Problem] To provide a dispenser system that constitutes: an application system capable of reducing the time for adjustment of the application amount of fluid to be applied to a workpiece; or a filling system capable of reducing the time for adjustment of the filling amount of fluid with which a workpiece is filled. [Solution] An application system 100 and a filling system 110 each comprise: a dispenser device 1 having an ejection port 12 and a pump mechanism unit 11; and a dispenser control device 2. An operation parameter setting unit 23 sets operation parameters such that the ejection amount of fluid due to an ejection operation increases as the application amount of fluid decreases as a result of a suck-back operation, or sets operation parameters such that the ejection amount of fluid due to an ejection operation increases as the filling amount of fluid decreases as a result of a suck-back operation.
[Problem] To provide: a dispenser system that constitutes an application system with which the time for adjusting an application amount of a fluid to be applied to a workpiece can be shortened; and a filling system with which the time for adjusting a filling amount of a fluid to be filled in the workpiece can be shortened. [Solution] An application system 100 performs an application operation in which a fluid is applied to a workpiece by ejecting a fluid onto the workpiece by means of an ejection operation and then performing a suck back operation. A filling system performs a filling operation in which a fluid is filled in a workpiece by ejecting a fluid onto the workpiece by means of an ejection operation and then performing a suck back operation. A dispenser control device 2 includes an operation parameter setting unit 23 that automatically sets, on the basis of a fluid suction condition, a suction parameter that has a correlation relationship with a suction amount of the fluid in the suck back operation.
[Problem] To provide: a dispenser system which can shorten the adjustment time for the coating amount of a fluid to be coated onto a workpiece; and a dispenser system constituting a filling system which can reduce the adjustment time for the amount of a fluid to be filled into a workpiece. [Solution] Provided are a dispenser system 100 and a filling system comprising a dispenser control device 2 and a display device 51. The dispenser control device 2 has an input reception unit 21, an operation parameter setting unit 23, and a display control unit 28. The display control unit 28 has an operation parameter display section 282. The display control unit 28 causes the display device 51 to display the operation parameter display section 282 which displays operation parameters derived and set by the operation parameter setting unit 23 on the basis of coating conditions received by the input reception unit 21, or operation parameters derived and set by the operation parameter setting unit 23 on the basis of filling conditions received by the input reception unit 21.
This uniaxial eccentric screw pump comprises: a stator 2 which has an insertion hole 14 having an inner circumferential surface formed in the shape of a female thread; and a rotor 3 comprising a male threaded shaft body which is inserted through the insertion hole 14 of the stator 2. An opening 15 of the insertion hole 14 that appears in a cross section through the stator 2 comprises a central region 18 and two end regions 19, and in the central region 18, a surface pressure at a central side thereof, at least, is less than a surface pressure on both end sides thereof.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
A uniaxial eccentric screw pump comprises a stator 2 having an insertion hole 14 of which the inner peripheral surface is formed into a female thread, and a rotor 3 composed of a male-threaded shaft inserted through the through hole 14 of the stator 2. The interference formed between the outer peripheral surface of the rotor 3 and the inner peripheral surface of the insertion hole 14 of the stator 2 is smaller in a central region 19 of an opening 16 of the insertion hole 14 appearing in a cross section than in both end regions 20 of the opening 16.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
This uniaxial eccentric screw pump comprises: a stator (2) having an insertion hole (10) in which the inner circumferential surface (10a) thereof is formed into a female screw shape; and a rotor (4) of a male screw shape to be inserted into the insertion hole (10). On a cross section, the insertion hole (10) is formed as a long hole. Along with the eccentric rotation of the rotor (4), the sectional center (O4) of the rotor (4) reciprocates between a pair of returning positions (P1, P2) in a longitudinal direction (X) of the insertion hole (10) along a centerline (CX) extending in the longitudinal direction (X). The rotor (4) is brought into tight contact with the inner circumferential surface (10a) of the insertion hole (10) in the short direction (Y) of the insertion hole (10). A first shrink range (δ1) of the stator (2) with respect to the rotor (4) when the sectional center (O4) is at the returning positions (P1, P2) is larger than a second shrink range (δ2) of the stator (2) with respect to the rotor (4) when the sectional center (O4) is at a center axis (A1).
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
[Problem] To provide a uniaxial eccentric screw pump with which a device configuration can be reduced in size. [Solution] A uniaxial eccentric screw pump 100 is a uniaxial eccentric screw pump in which a male threaded rotor 20 is inserted into a stator 30 provided with a female threaded insertion hole. Further, the uniaxial eccentric screw pump 100 is provided with a rotor drive mechanism 50 capable of causing the rotor 20 to revolve while spinning. The rotor drive mechanism 50 includes an input-side pinion gear 52, and a spin-side crown gear 54. The input-side pinion gear 52 is for inputting a motive force. The spin-side crown gear 54 is capable of rotating eccentrically in such a way as to cause the rotor 20 to revolve while accepting transmission of a spinning motive force causing the rotor 20 to spin about a fixed central axis C2, while connected to the input-side pinion gear 52.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
a of a female screw type through which the rotor 1 is inserted; a casing 3 connected to one end side of the stator 2; an end stud 4 connected, to the other end side of the stator 2; and a position adjusting member 5 that adjusts a relative position of the stator 2 with respect to the rotor 1 in an axial direction.
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
[Problem] To provide a fluid discharge system allowing a fluid to be supplied stably to a discharge device, while suppressing an increase in the installation space or cost. [Solution] This fluid discharge system 10 comprises: a discharge device 30 for discharging a fluid; a pump 20 capable of supplying, in the direction of the discharge device 30, a fluid stored in a storage unit 22; a supply route 40 establishing a connection between the discharge device 30 and the pump 20 so that the fluid can pass therethrough; and a buffer tank 50 disposed halfway on the supply route 40 and capable of aspirating and evacuating the fluid. The fluid discharge system 10 is such that, when the supply of the fluid from the pump 20 to the discharge device 30 is to be limited, the fluid is evacuated from the buffer tank 50 to the supply route 40, thereby allowing the supply of the fluid to the discharge device 30 to continue, and the buffer tank 50 is capable of achieving a pressure application state, in which a pressure is exerted on the fluid, and a hold state, in which no pressure is exerted on the fluid.
[Problem] To provide a discharge device and a discharge system which sufficiently perform air venting in a fluid accommodation part through which a fluid flows into and out from a casing, and have a high degree of freedom in the positional relationship between a fluid introduction port and an air discharge part. [Solution] This discharge device 20 has a fluid introduction part 108, a connection part 78 disposed inside the fluid accommodation part 110, and an air discharge part 100. The air discharge part 100 has an air discharge path 130 communicating with the fluid accommodation part 110. The air discharge path 130 has: an air discharge part inlet 134 which communicates with the fluid accommodation part 110 on the opposite side to a fluid introduction port 108a with the connection part 78 therebetween; and an air discharge part outlet 138 which communicates with the outside of the fluid accommodation part 110 at a position spaced apart from the air discharge part inlet 134 in one or both of the circumferential direction and the axial direction of the fluid accommodation part 110.
B05C 11/00 - Parties constitutives, détails ou accessoires non prévus dans les groupes
B05C 5/00 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
A liquid coating apparatus includes a liquid chamber, a diaphragm deformable to change a volume of the liquid chamber, a piezoelectric element that deforms the diaphragm in a thickness direction, a pressurized casing bottom-wall portion between the piezoelectric element and the diaphragm to support the piezoelectric element from a diaphragm side, a fixed casing bottom wall portion that supports an end of the piezoelectric element on a side opposite to the diaphragm, a plunger that extends through the pressurized casing bottom-wall portion and transmits expansion and contraction of the piezoelectric element to the diaphragm, and a coil spring that is between the piezoelectric element and the pressurized casing bottom-wall portion and is supported by the first support portion to apply a compressive force to the piezoelectric element.
B05C 5/02 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage à partir d'un dispositif de sortie en contact, ou presque en contact, avec l'ouvrage
[Problem] The purpose of the present invention is to provide a multiple liquid mixing and discharging device capable of minimizing displacement of the liquids. [Solution] A multiple liquid mixing and discharging device 10 that mixes and discharges at least a first fluid and a second fluid having a lower density than the first fluid, said device comprising: a first fluid passage 20 that transports the first fluid; a second fluid passage 30 that transports the second fluid; a confluence part 43 that causes the first fluid transported by the first fluid passage 20 and the second fluid transported by the second fluid passage 30 to mix; and an ingress limiting part 50 that limits at least one between the ingress of the second fluid into the first fluid path 20 and the ingress of the first fluid into the second fluid path 30.
[Problem] A purpose of the present invention is to provide a fluid pressure-feeding device that can pump out and pressure-feed a pumping fluid from a bag in which said fluid is housed, leaving a sufficiently small amount remaining, even when said bag has a fluid-housing section and a non-fluid-housing section. [Solution] A fluid pressure-feeding device 10 has: a container 20 that houses a bag 100; a plate 50 that is mounted in the interior of the container 20, above the bag 100; and a pump 70 that suctions a fluid housed in the bag 100. It is possible to use the pump 70 to suction and pressure-feed the fluid via an opening 106 formed in the bag 100, while applying a pressing force to the bag 100 via the plate 50. There is a seat section 30 that is positioned on the bottom side of the container 20 and can form a storage space section 35. By having a bag that has a fluid-housing section 102 and a non-fluid-housing section 104 be housed in the container 20 as the bag 100, the non-fluid-housing section 104 can be housed in the storage space section 35.
F04B 15/02 - Pompes adaptées pour travailler avec des fluides particuliers, p. ex. grâce à l'emploi de matériaux spécifiés pour la pompe elle-même ou certaines de ses parties les fluides étant visqueux ou non homogènes
B65D 83/76 - Réceptacles ou paquets comportant des moyens particuliers pour distribuer leur contenu pour distribuer un contenu fluent au moyen d’un piston
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
This uniaxial eccentric screw pump is provided with: a stator 8 having a through hole 8a of which an inner surface is formed in the shape of a female screw thread; a rotor 14, which is a male screw thread shaped shaft body that is inserted through the through hole 8a of the stator 8; a plurality of shims 9 which are disposed on the radially outer side of the stator 8 over a range from one end of the stator 8 to the other end thereof, are in surface contact with an outer surface of the stator 8, are capable of compressing the stator 8 by moving radially inward relative to the stator 8, and which have, on an outer surface, an inclined surface 18 which is inclined radially inward or outward toward one end; and an adjusting member 10 having a pressing portion 26 which is capable of moving in the axial direction relative to the stator 8, and which is capable of pressing the inclined surfaces 18 of the shims 9.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
This single-shaft eccentric screw pump is provided with: a rotor 1 comprising a male-screw-type shaft body; a stator 2 having a female-screw-type through-hole 2a through which the rotor 1 is inserted; a casing 3 connected to one end side of the stator 2; an end stud 4 connected to the other end side of the stator 2; and a position adjustment member 5 for adjusting the axial directional relative position of the stator 2 with respect to the rotor 1.
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
F04C 2/10 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
35.
CONNECTION SHAFT AND UNIAXIAL ECCENTRIC SCREW PUMP
The purpose of the present invention is to provide a connection shaft having low flexural rigidity and high torsional rigidity. A connection shaft (10) having flexibility and connecting a first member and a second member comprises a twisted part (12) in at least one section thereof, in which cross sections perpendicular to the axial direction of the connection shaft (10) are shaped in a continuously twisting manner toward the axial direction or are shaped in a twisting manner so as to turn in an intermittently stepped shape. Cross-sectional second moments of area at a cross section differ between a first direction (widthwise direction) which is perpendicular to the axial direction and in which the cross-sectional second moment of area at the cross section (13) is minimal, and a second direction (lengthwise direction) perpendicular to the first direction at the same cross section (13).
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
The present invention aims to provide a long-life stator and a uniaxial eccentric screw pump provided with the stator, which enable a comparatively extended period of use by preventing damage of the stator due to repeating of attachment and removal to/from the uniaxial eccentric screw pump.
A stator 20 includes an outer cylinder 30, and a stator main body 42 having flange-shaped gasket parts 46 and 47. The stator 20 includes fixing areas 24 and 25 to which the gasket parts 46 and 47 and the outer cylinder 30 are adhered. One or both of the outer cylinder 30 and the gasket parts 46 and 47 has a derricking part penetrating or being dented in axial directions X and made into such a shape where at least part of one of the outer cylinder and the gasket parts is fitted into the other.
F01C 1/10 - "Machines" ou machines motrices à piston rotatif d'un type à engrènement extérieur, c.-à-d. avec engrènement des organes coopérants semblable à celui d'engrenages dentés d'un type à axe interne dans lequel l'organe externe a plus de dents ou de parties équivalentes de prise, p. ex. de galets, que l'organe interne
F04C 2/10 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
The purpose is to provide a discharge system which can minimize wear of a connecting part of a discharging device and a refilling device which is caused under the influence of particulate matters contained in fluid even if connection and disconnection for refilling the discharging device with the fluid is repeated. A discharge system includes a discharging device capable of discharging the fluid, and a refilling device capable of refilling the discharging device with the fluid. The fluid is suppliable from the refilling device side to the discharging device side by inserting one of a discharge-side coupler provided to the discharging device side and a refill-side coupler provided to the refilling device side into the other to connect the discharging device to the refilling device. A clearance size d formed between the discharge-side coupler and the refill-side coupler is determined based on the particle size distribution of the particulate matters that constitutes the fluid.
B05C 11/10 - Stockage, débit ou réglage du liquide ou d'un autre matériau fluideRécupération de l'excès de liquide ou d'un autre matériau fluide
B05C 5/02 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage à partir d'un dispositif de sortie en contact, ou presque en contact, avec l'ouvrage
Chemical processing machines and apparatus and parts and
fittings therefor; food processing machines and apparatus
and parts and fittings therefor; beverage processing
machines and apparatus and parts and fittings therefor;
painting machines and apparatus and parts and fittings
therefor; plastic processing machines and apparatus and
parts and fittings therefor; semiconductor manufacturing
machines and systems and parts and fittings therefor; fluid
discharging machines and apparatus for use in the
manufacture of precision devices, foods and beverages,
semiconductors, automobile parts and parts and fittings
therefor; fluid dispensing machines for use in the
manufacture of precision devices, foods and beverages,
semiconductors, automobile parts and parts and fittings
therefor; fluid painting and coating machines and apparatus
for use in the manufacture of precision devices, foods and
beverages, semiconductors, automobile parts and parts and
fittings therefor; fluid filling machines and apparatus for
use in the manufacture of precision devices, foods and
beverages, semiconductors, automobile parts and parts and
fittings therefor.
[Problem] The purpose of the present invention is to provide a stator that has a long service life and can be used for a comparatively long period of time as a result of suppressing breakage of the stator caused by being assembled with or detached from a uniaxial eccentric screw pump repeatedly, and also to provide a uniaxial eccentric screw pump equipped with the stator. [Solution] A stator 20 has an outer cylinder 30 and a stator body 42 having flange-shaped gasket portions 46, 47. The stator 20 is provided with fixing regions 24, 25 where the gasket portions 46, 47 and the outer cylinder 30 are fixed to each other, and has undulating portions of a shape penetrating or retracting at either one or both of the outer cylinder 30 and the gasket portions 46, 47 in the axial direction X such that at least a part of one of the outer cylinder and the gasket portions is fitted into the other one of the outer cylinder and the gasket portions.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04C 13/00 - Adaptations des "machines" ou pompes pour utilisation particulière, p. ex. pour très hautes compressions
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
09 - Appareils et instruments scientifiques et électriques
11 - Appareils de contrôle de l'environnement
Produits et services
Loading and unloading machines and apparatus; chemical
processing machines and apparatus; food processing machines
and apparatus; beverage processing machines and apparatus;
woodworking machines and apparatus; papermaking machines and
apparatus; paper processing machines and apparatus; printing
machines and apparatus; bookbinding machines and apparatus;
agricultural machines; painting machines and apparatus;
coating machines and apparatus; packaging machines and
apparatus; wrapping machines and apparatus; plastic
processing machines and apparatus; semiconductor
manufacturing machines and systems; rubber processing
machines; progressing cavity pumps; fluid pumps; food mixing
machines for commercial use; food peeling machines for
commercial use; food cutting, chopping and slicing machines
for commercial use; dishwashers; machines and apparatus for
wax-polishing, electric; electric vacuum cleaners; waste
compacting machines; waste crushing machines; pumps and
parts and fittings therefor; industrial robots and parts and
fittings therefor; robotic arms for industrial purposes and
parts and fittings therefor; fluid discharging machines and
apparatus for use in the manufacture of precision devices,
foods and beverages, semiconductors, automobile parts and
parts and fittings therefor; fluid dispensers for use in the
manufacture of precision devices, foods and beverages,
semiconductors, automobile parts and parts and fittings
therefor; fluid painting and coating machines and apparatus
for use in the manufacture of precision devices, foods and
beverages, semiconductors, automobile parts and parts and
fittings therefor; fluid filling machines and apparatus for
use in the manufacture of precision devices, foods and
beverages, semiconductors, automobile parts and parts and
fittings therefor; sewage pulverisers; machines for
shredding garbage; waste crushing machines for night-soil
disposal; waste crushing machines for sewage processing;
crushing machines for industrial wastewater treatment;
machines for shredding chemical feedstock in the manufacture
of pharmaceuticals or chemicals; machines for shredding
papermaking material for papermaking and paper processing;
crushing machines for industrial waste treatment; machines
for shredding foods for commercial use; food processing
crushers for commercial use; waste crushing machines for
food residues; waste disintegrators; waste crushing
machines; disintegrators for chemical processing; garbage
disposal machines; waste disposal machines; food waste
disposal machines. Laboratory apparatus and instruments; ozonisers;
electrolysers; egg-candlers; computers and their
peripherals; computer programs; fluid discharging machines
and apparatus for laboratory and research use; fluid
dispensers for laboratory and research use; fluid painting
and coating machines and apparatus for laboratory and
research use; fluid filling machines and apparatus for
laboratory and research use. Waste water treatment tanks; septic tanks; water purifying
apparatus; water purification units; desiccating apparatus;
drying apparatus and installations; recuperators for
chemical processing; steamers; evaporators; distillation
apparatus; heat exchangers; milk sterilizers; forage drying
apparatus; deep fryers for commercial use; dish drying
machines for commercial use; rice cookers for commercial
use; cooking pots for commercial use; roasters for
commercial use; cooking ovens for commercial use; tap water
faucets; level controlling valves for tanks; pipe line
cocks; sewage sludge treatment apparatus; wastewater
treatment apparatus for industrial purposes; purification
apparatus for sewage; purification installations for sewage.
41.
Axis eccentric screw pump with decreasing sectional area of stator with a constant diameter rotor
The present invention comprises: a stator 2 that is cylindrical and has a through hole 10, the through hole 10 in the shape of a female screw and being formed at a certain pitch in the flow direction from an inlet to an outlet; and a rotor 3 that is formed in the shape of a male screw, is inserted into the through hole 10 of the stator 2 to form a transport space 11 with the inner circumferential surface of the through hole, and rotates to move a fluid from the inlet to the outlet through the transport space 11 while being inscribed on the inner circumferential surface. The volume of the transport space 11 is reduced toward the flow direction. This prevents, reliably, the occurrence of bubbles from a fluid at a downstream-side when the fluid is transported through the transport space 11 formed between the stator 2 and the rotor 3.
F04C 2/08 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
42.
Liquid transport device with decreasing eccentricity of the rotor
The present invention comprises: a stator 2 that is cylindrical and has a through hole 10, the through hole 10 in the shape of a female screw and being formed at a certain pitch in the flow direction from an inlet to an outlet; and a rotor 3 that is formed in the shape of a male screw, is inserted into the through hole 10 of the stator 2 to form a transport space 11 with the inner circumferential surface of the through hole, and rotates to move a fluid from the inlet to the outlet through the transport space 11 while being inscribed on the inner circumferential surface. The volume of the transport space 11 is reduced toward the flow direction. This prevents, reliably, the occurrence of bubbles from a fluid at a downstream-side when the fluid is transported through the transport space 11 formed between the stator 2 and the rotor 3.
F04C 2/08 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
43.
Axis eccentric screw pump with an increasing diameter rotor with a constant sectional area stator
The present invention comprises: a stator 2 that is cylindrical and has a through hole 10, the through hole 10 in the shape of a female screw and being formed at a certain pitch in the flow direction from an inlet to an outlet; and a rotor 3 that is formed in the shape of a male screw, is inserted into the through hole 10 of the stator 2 to form a transport space 11 with the inner circumferential surface of the through hole, and rotates to move a fluid from the inlet to the outlet through the transport space 11 while being inscribed on the inner circumferential surface. The volume of the transport space 11 is reduced toward the flow direction. This prevents, reliably, the occurrence of bubbles from a fluid at a downstream-side when the fluid is transported through the transport space 11 formed between the stator 2 and the rotor 3.
F04C 2/08 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
09 - Appareils et instruments scientifiques et électriques
11 - Appareils de contrôle de l'environnement
Produits et services
[ Loading and unloading machines; ] chemical processing machines; food processing machines; beverage processing machines; papermaking machines; paper processing machines; printing machines; [ bookbinding machines for industrial purposes; agricultural machines, namely, rice planting machines; ] painting machines; coating machines for the application of functional or protective coating for thin plate materials, namely, papers, displays for PC and smart phones, and substrates; packaging machines; wrapping machines; plastic processing machines; semiconductor manufacturing machines; rubber processing machines; progressing cavity pumps being machines; fluid pumps being machines; electric food mixing machines for commercial use; [ food peeling machines for commercial use; food cutting, chopping and slicing machines for commercial use; dishwashers; machines for wax-polishing, electric; electric vacuum cleaners; waste compacting machines; waste crushing machines; ] electric pumps and replacement and structural parts therefor; industrial robots and parts therefor; fluid discharging machines for use in the manufacture of precision devices, foods and beverages, semiconductors, automobile parts and parts therefor; fluid dispenser machines for use in the manufacture of precision devices, foods and beverages, semiconductors, automobile parts and parts therefor; fluid painting and coating machines for use in the manufacture of precision devices, foods and beverages, semiconductors, automobile parts and parts therefor; fluid filling machines for use in the manufacture of precision devices, foods and beverages, semiconductors, automobile parts and parts therefor; [ sewage pulverisers being machines; machines for shredding garbage; waste crushing machines for night-soil disposal; waste crushing machines for sewage processing; crushing machines for industrial wastewater treatment; machines for shredding chemical feedstock in the manufacture of pharmaceuticals or chemicals; machines for shredding papermaking material for papermaking and paper processing; crushing machines for industrial waste treatment; machines for shredding foods for commercial use; food processing crushers for commercial use being machines; waste crushing machines for food residues; waste disintegrators for chemical and biological processing; disintegrators for chemical processing; garbage disposal machines; ] waste disposal machines; food waste disposal machines; the above goods not for use on ships or in the off shore field * none of the aforesaid being for use in the oil, gas and/or mining industries * [ Laboratory apparatus and instruments, namely, dispensing and dropping devices of preset portions of solid granules and powder for dosing purposes, all not for medical use; ozonisers; electrolysers; egg-candlers; computers and their peripherals; computer programs for use in the manufacture or precision devices, foods and beverages, semiconductors and automobile parts; ] fluid discharging apparatus for laboratory and research use, namely, fluid handling device used for disposable bioprocessing applications; fluid dispensers for laboratory and research use, namely, dispensers of preset portions of fluids, not for medical use; fluid painting and coating apparatus for laboratory and research use for testing and analyzing fluids not for medical purposes; fluid filling apparatus for laboratory and research use for testing and analyzing fluids not for medical purposes * none of the aforesaid being for use in the oil, gas and/or mining industries * [ Waste water treatment tanks; septic tanks; ] water purifying apparatus; water purification units; [ recuperators for chemical processing; steamers for chemical processing; steamers for sterilization for use in the food and beverage industry; steamers for pasteurization for use in the food and beverage industry; evaporators for air conditioners; evaporators for sterilization for use in the food and beverage industry; evaporators for pasteurization for use in the food and beverage industry; distillation not for scientific purposes; milk sterilizers; forage drying apparatus; electric deep fryers for commercial use; dish drying machines for commercial use; electric rice cookers for commercial use; electric cooking pots for commercial use; electric roasters for commercial use; cooking ovens for commercial use; tap water faucets; ] sewage sludge treatment apparatus; wastewater treatment apparatus for industrial purposes; purification apparatus for sewage; purification installations for sewage * none of the aforesaid being for use in the oil, gas and/or mining industries *
09 - Appareils et instruments scientifiques et électriques
11 - Appareils de contrôle de l'environnement
Produits et services
Machine tools, power-operated tools; motors and engines, except for land vehicles; machine coupling and transmission components, except for land vehicles; agricultural implements, other than hand-operated hand tools; incubators for eggs; automatic vending machines; loading and unloading machines and apparatus; machines for use in processing and preparation of food; machines for use in processing and preparation of beverages; woodworking machines and apparatus; papermaking machines and apparatus; paper processing machines and apparatus; printing machines and apparatus; bookbinding machines and apparatus; agricultural machines; painting machines and apparatus; coating machines and apparatus; packaging machines and apparatus; wrapping machines and apparatus; plastic processing machines and apparatus; semiconductor manufacturing machines and systems; rubber processing machines; progressing cavity pumps; fluid pumps; food mixing machines for commercial use; food peeling machines for commercial use; food cutting machines for commercial use; food chopping machines for commercial use; food slicing machines for commercial use; dishwashers; machines and apparatus for wax-polishing, electric; electric vacuum cleaners; waste compacting machines; waste crushing machines; pumps; industrial robots; robotic arms for industrial purposes; fluid discharging machines and apparatus for use in the manufacture of precision devices, foods and beverages, semiconductors and automobile parts; fluid dispensers for use in the manufacture of precision devices, foods and beverages, semiconductors and automobile parts; fluid painting and coating machines and apparatus for use in the manufacture of precision devices, foods and beverages, semiconductors and automobile parts; fluid filling machines and apparatus for use in the manufacture of precision devices, foods and beverages, semiconductors and automobile parts; fluid discharging machines and apparatus; fluid painting and coating machines and apparatus; fluid filling machines and apparatus; sewage pulverisers; machines for shredding garbage; machines for crushing garbage; waste crushing machines for night-soil disposal; waste crushing machines for sewage processing; crushing machines for industrial wastewater treatment; machines for shredding chemical feedstock in the manufacture of pharmaceuticals or chemicals; machines for shredding papermaking material for papermaking and paper processing; crushing machines for industrial waste treatment; machines for shredding foods; food processing crushers; waste crushing machines for food residues; disintegrators; crushing machines; disintegrators for chemical processing; garbage disposal machines; shredders [machines] for waste; waste disposal machines; food waste disposal machines; machine tools for removing waste material; food processors; chemical handling machines; machines for removing waste materials during industrial processes; parts and fittings for all the aforesaid goods; none of the aforesaid goods for use on ships or in the offshore field, and none of the aforesaid goods being for use in the oil, gas and/or mining industries. Scientific, nautical, surveying, photographic, cinematographic, optical, weighing, measuring, signalling, checking (supervision), life-saving and teaching apparatus and instruments; apparatus and instruments for conducting, switching, transforming, accumulating, regulating or controlling electricity; apparatus for recording, transmission or reproduction of sound or images; magnetic data carriers, recording discs; compact discs, DVDs and other digital recording media; mechanisms for coin-operated apparatus; cash registers, calculating machines, data processing equipment, computers; computer software; fire-extinguishing apparatus; laboratory apparatus and instruments; ozonisers; electrolysers; egg-candlers; computers and their peripherals; computer programs; fluid discharging machines and apparatus for laboratory and research use; fluid dispensers for laboratory and research use; fluid painting and coating machines and apparatus for laboratory and research use; fluid filling machines and apparatus for laboratory and research use; programmable controllers; programmable logic controllers; parts and fittings for all the aforesaid goods; none of the aforesaid goods being for use in the oil, gas and/or mining industries. Apparatus for lighting, heating, steam generating, cooking, refrigerating, drying, ventilating, water supply and sanitary purposes; waste water treatment tanks; septic tanks; water purifying apparatus; water purification units; desiccating apparatus; drying apparatus and installations; recuperators for chemical processing; steamers; evaporators; distillation apparatus; heat exchangers; milk sterilizers; forage drying apparatus; deep fryers; dish drying machines for commercial use; rice cookers; electric cooking pots; roasters; cooking ovens; tap water faucets; level controlling valves for tanks; pipe line cocks; sewage sludge treatment apparatus; wastewater treatment installations; purification apparatus for sewage; purification installations for sewage; parts and fittings for all the aforesaid goods; none of the aforesaid goods being for use in the oil, gas and/or mining industries.
Chemical processing machines, namely, industrial chemical reactors, blending and emulsifying machines for two liquid curable adhesive and parts and fittings therefor; electric food processing machines and parts and fittings therefor; beverage processing machines and parts and fittings therefor; painting machines and parts and fittings therefor; plastic processing machines and parts and fittings therefor; semiconductor manufacturing machines and parts and fittings therefor; fluid discharging machines for use in the manufacture of precision devices, foods and beverages, semiconductors, automobile parts and parts and fittings therefor; fluid dispensing machines for use in the manufacture of precision devices, foods and beverages, semiconductors, automobile parts and parts and fittings therefor; fluid painting and coating machines for use in the manufacture of precision devices, foods and beverages, semiconductors, automobile parts and parts and fittings therefor; fluid filling machines for use in the manufacture of precision devices, foods and beverages, semiconductors, automobile parts and parts and fittings therefor; the above goods not for use on ships or in the off shore field* none of the aforesaid being for use in the oil, gas and/or mining industries *
09 - Appareils et instruments scientifiques et électriques
11 - Appareils de contrôle de l'environnement
Produits et services
Machines, machine tools, power-operated tools, namely, metalworking machines and metalworking machine tools; machines for use in processing and preparation of food for industrial purposes; machines for use in processing and preparation of beverage; papermaking machines; paper processing machines; printing machines; painting machines; paper coating machines; packaging machines; wrapping machines; plastic processing machines; semiconductor manufacturing machines; rubber processing machines; progressing cavity pumps being machines; fluid pumps being machines; electric food mixing machines for commercial use; pumps for machines; fluid discharging machines for use in the manufacture of precision devices, foods and beverages, semiconductors and automobile parts; fluid dispenser machines for use in the manufacture of precision devices, foods and beverages, semiconductors and automobile parts; fluid painting and coating machines for use in the manufacture of precision devices, foods and beverages, semiconductors and automobile parts; fluid filling machines for use in the manufacture of precision devices, foods and beverages, semiconductors and automobile parts; fluid dispensers being machine tools for use in the manufacture of precision devices, foods and beverages, semiconductors and automobile parts; fluid painting and coating machines; fluid filling machines; waste disposal machines; food waste disposal machines; machine tools for removing waste material; electric food processors; chemical handling machines, namely, dissolving and extracting machines for the chemical process; machines for removing waste materials during industrial processes; parts and fittings for all the aforesaid goods; the above goods not for use on ships or in the off shore field; none of the aforesaid being for use in the oil, gas and/or mining industries Fire-extinguishing apparatus; fluid discharging apparatus for laboratory and research use, namely, fluid handling device used for disposable bioprocessing applications; fluid dispensers for laboratory and research use, namely, dispensers of preset portions of fluids, not for medical use; fluid painting and coating apparatus for laboratory and research use for testing and analyzing fluids, not for medical purposes; fluid filling apparatus for laboratory and research use for testing and analyzing fluids, not for medical purposes; replacement and structural parts and fittings for all the aforesaid goods; none of the aforesaid being for use in the oil, gas and/or mining industries Apparatus for lighting, heating, steam generating, cooking, refrigerating, drying, ventilating, water supply and sanitary purposes, namely, lighting installations, hot water heaters, steam generators, cooking ovens, refrigerators and metered valves for regulating water supply; water purifying apparatus; water purification units; Sewage sludge treatment apparatus; Wastewater treatment installations; purification apparatus for sewage; purification installations for sewage; replacement and structural parts and fittings for all the aforesaid goods; none of the aforesaid being for use in the oil, gas and/or mining industries
A uniaxial eccentric screw pump includes: a stator 32 having a female threaded inner peripheral surface; a rotor 33 configured to be insertable into the stator 32, and formed of a male threaded shaft body; an exterior body 31 configured to be movable between a first position where the exterior body 31 is capable of compressing the stator 32 and a second position where the exterior body 31 at least alleviates a compression state of the stator 32; and guide members 55, 56 configured to restrict a movement of the exterior body 31 in a circumferential direction of the stator while allowing a movement of the exterior body 31 in a radial direction of the stator by guiding an end portion of the exterior body 31.
F01C 5/04 - "Machines" ou machines motrices à piston rotatif, avec parois des chambres de travail déformables par résilience au moins partiellement la paroi déformable par résilience faisant partie de l'organe externe, p. ex. du logement
F04C 5/00 - "Machines" ou pompes à piston rotatif avec parois des chambres de travail déformables par résilience au moins partiellement
F03C 2/22 - Moteurs à piston rotatif du type à axe interne, avec mouvement relatif des organes coopérants dans le même sens aux points d'engagement, ou avec l'un des organes coopérants fixe et l'organe interne ayant plus de dents ou de parties équivalentes de prise que l'organe externe
F01C 21/10 - Organes externes coopérant avec des pistons rotatifsCarcasses d'enveloppes
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
F04C 29/00 - Parties constitutives, détails ou accessoires de pompes ou d'installations de pompage spécialement adaptées pour les fluides compressibles non couverts dans les groupes
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04C 18/107 - Pompes à piston rotatif spécialement adaptées pour les fluides compressibles du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
Provided is an accumulator which can surely discharge a collected fluid material in a first-in first-out manner without causing stagnation of the fluid material. The accumulator includes a housing having a temporarily accumulating space configured to change an inner volume thereof in an axial direction. The housing includes a supply port and a discharge port formed at positions spaced apart from each other in the axial direction and communicating with the temporarily accumulating space. The housing also includes a flow passage for uniformly supplying a fluid material into the temporarily accumulating space through the supply port.
B05C 11/10 - Stockage, débit ou réglage du liquide ou d'un autre matériau fluideRécupération de l'excès de liquide ou d'un autre matériau fluide
B05C 5/02 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage à partir d'un dispositif de sortie en contact, ou presque en contact, avec l'ouvrage
F15B 1/24 - Accumulateurs utilisant un coussin de gazDispositifs de remplissage de gazIndicateurs ou flotteurs à cet effet avec des moyens de séparation rigides, p. ex. pistons
F15B 1/26 - Réservoirs d'alimentation ou de pompage
The present invention comprises: a stator 2 that is cylindrical and has a through hole 10, the through hole 10 in the shape of a female screw and being formed at a certain pitch in the flow direction from an inlet to an outlet; and a rotor 3 that is formed in the shape of a male screw, is inserted into the through hole 10 of the stator 2 to form a transport space 11 with the inner circumferential surface of the through hole, and rotates to move a fluid from the inlet to the outlet through the transport space 11 while being inscribed on the inner circumferential surface. The volume of the transport space 11 is reduced toward the flow direction. This prevents, reliably, the occurrence of bubbles from a fluid at a downstream-side when the fluid is transported through the transport space 11 formed between the stator 2 and the rotor 3.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04C 2/08 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés
The present invention is provided with a stator 32 wherein an internal peripheral surface is formed as a female thread, a rotor 33 comprising a male screw shaft body that can be inserted into the stator 32, an external housing 31 capable of movement between a first position capable of compressing the stator 32 and second position in which at least the compression state of the stator 32 is eased, and guide members 55, 56 that guide an end part of the external housing 31 and that are capable of limiting movement of the external housing 31 in a stator peripheral direction while permitting movement of the external housing 31 in a stator radial direction.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
The fluid feeding system includes a feed channel connected to the discharging device, a pump connected to the feed channel, a valve for blocking a flow of the fluid that flows toward the introduction chamber via the feed channel, and a control device for determining a pressure state on the pump side and carrying out an opening-and-closing control of the valve 70 based on the determination result. The control device carries out the opening-and-closing control in which the valve is made into an open state when the control device determines that a pressure P1 on the pump side reaches a pressure state exceeding a given pressure.
B29C 45/18 - Alimentation en matière à mouler de l'appareil de moulage par injection
B05B 7/32 - Appareillages dans lesquels des liquides ou d'autres matériaux fluides en provenance de différentes sources sont mélangés avant de pénétrer dans le dispositif d'évacuation dans lesquels un liquide ou autre matériau fluide est introduit ou attiré, en passant par un orifice, dans un courant de fluide porteur le liquide ou autre matériau fluide introduit étant sous pression
B29B 7/60 - Éléments constitutifs, détails ou accessoiresOpérations auxiliaires pour alimentation, p. ex. pièces de guidage pour la matière à traiter
B29B 7/32 - MélangeMalaxage continu, avec dispositifs mécaniques de mélange ou de malaxage avec dispositifs de mélange ou de malaxage non mobiles
B05B 9/04 - Appareillages de pulvérisation pour débiter des liquides ou d'autres matériaux fluides, n'impliquant pas de mélange avec des gaz ou des vapeurs caractérisés par les moyens d'alimentation en liquide ou en autre matériau fluide comportant un réservoir sous pression ou compressibleAppareillages de pulvérisation pour débiter des liquides ou d'autres matériaux fluides, n'impliquant pas de mélange avec des gaz ou des vapeurs caractérisés par les moyens d'alimentation en liquide ou en autre matériau fluide comportant une pompe
B29C 31/06 - Alimentation, p. ex. chargement d'une cavité de moulage par quantités déterminées
A uniaxial eccentric screw pump includes: a casing; a stator having one end portion thereof connected to the casing and having an inner peripheral surface which is formed into a female threaded shaped; a rotor configured to be insertable into the stator and formed of a shaft body having a male threaded shape; and an end stud connected to the other end portion of the stator. The stator is configured to be expandable and shrinkable in a radial direction.
F01C 1/10 - "Machines" ou machines motrices à piston rotatif d'un type à engrènement extérieur, c.-à-d. avec engrènement des organes coopérants semblable à celui d'engrenages dentés d'un type à axe interne dans lequel l'organe externe a plus de dents ou de parties équivalentes de prise, p. ex. de galets, que l'organe interne
F01C 5/00 - "Machines" ou machines motrices à piston rotatif, avec parois des chambres de travail déformables par résilience au moins partiellement
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
The purpose is to provide a discharge system that adopts an optimal structure for connecting a discharging device to a refilling device in a substantially aligned fashion by moving the discharging device. A discharge system includes a discharging device, a refilling device, a discharge-side coupler, a refill-side coupler, and a manipulator. The discharge-side coupler is connectable to the refill-side coupler by relatively moving the discharge-side coupler in an axial line N direction of the refill-side coupler and fluid can be refilled from the refilling device side to the discharging device side. A coupling position between the manipulator and the discharging device reaches on the axial line N when connecting the refill-side coupler and the discharge-side coupler.
B05C 11/10 - Stockage, débit ou réglage du liquide ou d'un autre matériau fluideRécupération de l'excès de liquide ou d'un autre matériau fluide
B05B 12/14 - Aménagements de commande de la distributionAménagements de réglage de l’aire de pulvérisation pour fournir à un orifice de pulvérisation unique, un liquide ou un autre matériau fluide choisi parmi plusieurs
B05C 5/02 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage à partir d'un dispositif de sortie en contact, ou presque en contact, avec l'ouvrage
F16L 37/34 - Accouplements du type à action rapide avec moyens pour couper l'écoulement du fluide avec un obturateur dans chaque extrémité de tuyau avec deux clapets dont l'un au moins est ouvert automatiquement au moment de l'accouplement au moins un des clapets étant du type à manchon, c.-à-d. un manchon étant mobile autour d'un corps cylindrique fixe
B05B 13/04 - Moyens pour supporter l'ouvrageDisposition ou assemblage des têtes de pulvérisationAdaptation ou disposition des moyens pour entraîner des pièces les têtes de pulvérisation étant déplacées au cours de l'opération
The purpose is to provide a discharge system that can reduce an adhered amount of fluid to a coupler on a discharging device side to be smaller than an adhered amount of the fluid to a coupler on a refilling device side during a refilling operation of the fluid to the discharging device. A discharge system includes a discharging device capable of discharging the fluid and a refilling device capable of refilling the discharging device with the fluid. A refill-side coupler provided to the refilling device side and a discharge-side coupler provided to the discharging device side is fitted and connected to refill the discharging device side with the fluid from the refilling device side.
B05C 11/10 - Stockage, débit ou réglage du liquide ou d'un autre matériau fluideRécupération de l'excès de liquide ou d'un autre matériau fluide
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
B05C 5/02 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage à partir d'un dispositif de sortie en contact, ou presque en contact, avec l'ouvrage
A single-axis eccentric screw pump is provided with: a stator 9 having an inner surface formed in a female screw-thread shape; a rotor 10 capable of being inserted through the stator 9 and comprising a shaft body having a male screw-thread shape; an outer cover body 8 capable of moving between a first position which is on the outer peripheral side of the stator 9 and a second position at which the outer cover body 8 compresses the stator 9; and a movement means 7 for moving the outer cover body 8 between the first position and the second position. As a result of this configuration, the contact pressure of the stator 9 on the rotor 10 is stabilized, and fluid is discharged at a desired discharge pressure.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
57.
Fluid application system and fluid application method
A fluid application system includes: an application apparatus that discharges a fluid to a workpiece; a movement apparatus that moves the application apparatus and the workpiece; and a control apparatus. At the time of adjusting the output of a power source to thereby vary the discharge amount of the fluid from the nozzle by a target variation amount F1, the control apparatus sets the output of the power source to a value beyond a theoretical output N1 of the power source obtained from the target variation amount F1 of the discharge amount, and then sets the output of the power source to the theoretical output N1 such that the change amount of the internal pressure of the nozzle is coincident with an amount P1 by which the internal pressure of the nozzle needs to change, the amount P1 being obtained from the target variation amount F1 of the discharge amount.
B05B 12/12 - Aménagements de commande de la distributionAménagements de réglage de l’aire de pulvérisation sensibles à l'état du liquide ou d'un autre matériau fluide expulsé, du milieu ambiant ou de la cible sensibles à l'état du milieu ambiant ou de la cible, p. ex. à l'humidité, à la température
B05B 13/04 - Moyens pour supporter l'ouvrageDisposition ou assemblage des têtes de pulvérisationAdaptation ou disposition des moyens pour entraîner des pièces les têtes de pulvérisation étant déplacées au cours de l'opération
B05B 9/04 - Appareillages de pulvérisation pour débiter des liquides ou d'autres matériaux fluides, n'impliquant pas de mélange avec des gaz ou des vapeurs caractérisés par les moyens d'alimentation en liquide ou en autre matériau fluide comportant un réservoir sous pression ou compressibleAppareillages de pulvérisation pour débiter des liquides ou d'autres matériaux fluides, n'impliquant pas de mélange avec des gaz ou des vapeurs caractérisés par les moyens d'alimentation en liquide ou en autre matériau fluide comportant une pompe
B05D 1/02 - Procédés pour appliquer des liquides ou d'autres matériaux fluides aux surfaces réalisés par pulvérisation
B05C 5/02 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage à partir d'un dispositif de sortie en contact, ou presque en contact, avec l'ouvrage
B05C 11/10 - Stockage, débit ou réglage du liquide ou d'un autre matériau fluideRécupération de l'excès de liquide ou d'un autre matériau fluide
B05D 1/26 - Procédés pour appliquer des liquides ou d'autres matériaux fluides aux surfaces par application de liquides ou d'autres matériaux fluides, à partir d'un orifice en contact ou presque en contact avec la surface
B05B 12/08 - Aménagements de commande de la distributionAménagements de réglage de l’aire de pulvérisation sensibles à l'état du liquide ou d'un autre matériau fluide expulsé, du milieu ambiant ou de la cible
The present invention comprises: a stator 2 that is cylindrical and has a through hole 10, the through hole 10 in the shape of a female screw and being formed at a certain pitch in the flow direction from an inlet to an outlet; and a rotor 3 that is formed in the shape of a male screw, is inserted into the through hole 10 of the stator 2 to form a transport space 11 with the inner circumferential surface of the through hole, and rotates to move a fluid from the inlet to the outlet through the transport space 11 while being inscribed on the inner circumferential surface. The volume of the transport space 11 is reduced toward the flow direction. This prevents, reliably, the occurrence of bubbles from a fluid at a downstream-side when the fluid is transported through the transport space 11 formed between the stator 2 and the rotor 3.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
A uniaxial eccentric screw pump for rotating a rotor about its axis and revolving the rotor without involving complicated operations and control is provided. The uniaxial eccentric screw pump includes a rotor drive mechanism capable of revolving a rotor while rotating the rotor about its axis. The rotor drive mechanism includes a rotation power transmission member rotatable about a predetermined center axis, and a revolution track formation member capable of revolving a proximal shaft portion of the rotor while allowing rotation of the proximal shaft portion about its axis. The rotor drive mechanism distributes power output from the same motor in parallel and transmit the power to the rotation power transmission member and the revolution track formation member, enabling the rotation power transmission member and the revolution track formation member to rotate about their axes while being synchronized mechanically, and enabling the rotor to revolve while rotating about its axis.
F01C 1/10 - "Machines" ou machines motrices à piston rotatif d'un type à engrènement extérieur, c.-à-d. avec engrènement des organes coopérants semblable à celui d'engrenages dentés d'un type à axe interne dans lequel l'organe externe a plus de dents ou de parties équivalentes de prise, p. ex. de galets, que l'organe interne
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
This dispenser device (10) includes a support member (45) that is movable relative to and along a work plane (1), a positive displacement dispenser (11) that is supported by the support member (45), a travel amount detecting means (first rolling member (52)) capable of detecting the travel amount of the dispenser (11) relative to the work plane (1), and a driving means (power transmission mechanism (58)) actuating a pump mechanism (12) of the dispenser (11) in accordance with the travel amount.
B05C 5/00 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage
B05B 9/06 - Appareillages de pulvérisation pour débiter des liquides ou d'autres matériaux fluides, n'impliquant pas de mélange avec des gaz ou des vapeurs caractérisés par les moyens d'alimentation en liquide ou en autre matériau fluide comportant un réservoir sous pression ou compressibleAppareillages de pulvérisation pour débiter des liquides ou d'autres matériaux fluides, n'impliquant pas de mélange avec des gaz ou des vapeurs caractérisés par les moyens d'alimentation en liquide ou en autre matériau fluide comportant une pompe le débit étant fonction du mouvement d'un véhicule, p. ex. avec une pompe entraînée par une roue d'un véhicule
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
[Problem] The purpose of the present invention is to provide a uniaxial eccentric screw pump which is compact in the length direction and is less likely to suffer from such problems as stick slippage and damage to a shaft joint. [Solution] The uniaxial eccentric screw pump (10) has: a driving force transmission part (72) which is rotated by driving force of a driving machine (80); a rotor (60) which is constituted by a male screw shaft body; a stator (50) in which the rotor (60) can be inserted, said stator (50) having an inner circumferential surface (52) that is formed into a female screw ; and a shaft joint (76) which joins the driving force transmission part (72) with the rotor (60) in an eccentrically rotatable manner such that the rotor (60) revolves along the inner circumferential surface (52) of the stator (50) while rotating inside the stator (50). The shaft joint (76) is constituted by a flexible shaft joint and has elasticity in the axial direction.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
F16D 3/74 - Accouplements extensibles, c.-à-d. avec moyens permettant le mouvement entre parties accouplées durant leur entraînement avec pièces d'accouplement reliées par un ou plusieurs organes intermédiaires avec des fixations aux pièces d'accouplement axialement espacées l'organe ou les organes intermédiaires étant en caoutchouc ou faits d'un autre matériau flexible
These playing cards are each provided with a tactile identification area that makes possible the identification of the card type, even by a sight-impaired individual, and the tactile identification area is furthermore easily formed. The marked surface on one side of each card has a symbol area (4), comprising the suit (6) and the rank (7), labeled thereon in addition to a tactile identification area (5) corresponding to the suit (6) and the rank (7) formed thereon. The tactile identification area (5) comprises a protruding area (10) constituted with a translucent material. The symbol area (4) and the background on the marked surface (2) on the one side are configured to be identifiable by individuals with reduced vision.
[Problem] The objective is to provide a pumping device which has good maintainability and with which a constant quantity of a fluid can be transferred without pulsation. [Solution] This pumping device (10) has a pump mechanism portion (20) that is provided with a uniaxial eccentric screw pump mechanism (25) formed by combining a stator (22) and a rotor (24). Furthermore, the pumping device (10) has a support structure portion (60) that can support the pump mechanism portion (20) in a state of being immersed in a fluid that is being stored in a storage tank (15), and a discharge path (100) that is connected directly or indirectly to the stator (22) and leads the fluid discharged from the stator (22) to the exterior of the storage tank (15). The pumping device (10) can assemble and disassemble the pump mechanism portion (20) by moving the rotor (24) in the axial direction in relation to the stator (22) which is being supported by the support structure portion (60).
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
[Problem] The purpose of the present invention is to provide a fluid supply system that can supply a fluid such that internal pressure fluctuations in an introduction chamber that is provided to a discharge device can be suppressed to a minimum and such that defects in the discharge of the fluid can be suppressed to a minimum, and to provide a molding system that is provided with the fluid supply system. [Solution] A fluid supply system (50) that has a supply path (60) that is connected to a discharge device (20), a pump (80) that is connected to the supply path (60), a valve (70) that can cut off the flow of a fluid that flows toward an introduction chamber (28) via the supply path (60), and a control device (100) that determines the pressure state on the pump (80) side and controls the opening/closing of the valve (70) on the basis of the determination results. When the pressure state is determined to be such that a pressure (P1) on the pump (80) side exceeds a prescribed pressure, the control device (100) performs opening/closing control such that the valve (70) is open.
B29C 31/06 - Alimentation, p. ex. chargement d'une cavité de moulage par quantités déterminées
B05B 7/32 - Appareillages dans lesquels des liquides ou d'autres matériaux fluides en provenance de différentes sources sont mélangés avant de pénétrer dans le dispositif d'évacuation dans lesquels un liquide ou autre matériau fluide est introduit ou attiré, en passant par un orifice, dans un courant de fluide porteur le liquide ou autre matériau fluide introduit étant sous pression
The adhesion of a fluid to a connecting device for connecting a discharge device and a filling device to each other so as to fill the fluid into the discharge device is suppressed. A discharge system includes a discharge device capable of being filled with a fluid for discharge and discharging the fluid, a filling device for filling the fluid into the discharge device, a connecting device for connecting the discharge device and the filling device to each other in a separable manner, and a control device. The control device of the discharge system controls an operation speed during a separating operation of separating the discharge device from the filling device to be equal to or less than an operation speed during a connecting operation of connecting the discharge device to the filling device.
B05C 11/10 - Stockage, débit ou réglage du liquide ou d'un autre matériau fluideRécupération de l'excès de liquide ou d'un autre matériau fluide
B05C 5/02 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage à partir d'un dispositif de sortie en contact, ou presque en contact, avec l'ouvrage
B05C 5/00 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage
66.
NOZZLE, APPLICATION DEVICE, AND METHOD FOR APPLYING FLUID
The purpose of the present invention is to provide a nozzle, application device, and method for applying a fluid such that sufficient application quality is obtained even when applying a fluid with high viscosity. A nozzle (30) is provided with a discharge means (100) provided with a wide discharge opening (50) opened such that a fluid can be discharged to an application target in a band shape and applied thereto and a cut-off means (120) for cutting off the fluid discharged from the discharge opening (50). The cut-off means (120) for the nozzle (30) can cut off the fluid by means of a wire (64) made movable from one side to another side of the opening region forming the discharge opening (50).
B05C 5/02 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage à partir d'un dispositif de sortie en contact, ou presque en contact, avec l'ouvrage
B05C 11/06 - Appareils pour étaler ou répartir des liquides ou d'autres matériaux fluides déjà appliqués sur une surfaceRéglage de l'épaisseur du revêtement comportant un soufflage de gaz ou vapeur
B05D 1/26 - Procédés pour appliquer des liquides ou d'autres matériaux fluides aux surfaces par application de liquides ou d'autres matériaux fluides, à partir d'un orifice en contact ou presque en contact avec la surface
B05D 3/12 - Traitement préalable des surfaces sur lesquelles des liquides ou d'autres matériaux fluides doivent être appliquésTraitement ultérieur des revêtements appliqués, p. ex. traitement intermédiaire d'un revêtement déjà appliqué, pour préparer les applications ultérieures de liquides ou d'autres matériaux fluides par des moyens mécaniques
A uniaxial eccentric screw pump comprises a casing (1), a stator (2) one end of which is connected to the casing (1) and the inner circumferential wall of which is formed to be a female screw, a rotor (3) that can be inserted into the stator (2) and that comprises a male-screw shaft, and an end stud (4) that is connected to the other end of the stator (2). The stator (2) comprises a stator body (10), and an outer cylinder (9) removably disposed around the exterior of the stator body. A closed structure to prevent at least the penetration of external foreign matter is provided in the connecting portion of the stator body (10) and the casing (1) and the connecting portion of the stator body (10) and the end stud (4).
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
A uniaxial eccentric screw pump comprises a casing (1), a stator (2) one end of which is connected to the casing (1) and the inner circumferential wall of which is formed to be a female screw, a rotor (3) that can be inserted into the stator (2) and that comprises a male-screw shaft, and an end stud (4) that is connected to the other end of the stator (2). The stator (2) can expand and contract in the radial direction.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
The purpose of the present invention is to be able to minimize wear, even when repeatedly coupling and separating in order to replenish a discharging device with a fluid, of a coupling portion between the discharging device and a replenishing device that is caused by particulate matter contained in the fluid. A discharging system (10) comprises a discharging device (20) that can discharge a fluid and a replenishing device (100) that can replenish the discharging device (2) with the fluid, and the system can supply the fluid from the replenishing device (100) side to the discharging device (20) side by coupling the devices by inserting a discharge-side coupler (80) provided on the discharging device (20) side into a replenish-side coupler (134) provided on the replenishing device (100) side. The clearance (d) formed between the discharge-side coupler (80) and the replenish-side coupler (134) is set on the basis of the particle size distribution of particulate matter that constitutes the fluid.
B05C 11/10 - Stockage, débit ou réglage du liquide ou d'un autre matériau fluideRécupération de l'excès de liquide ou d'un autre matériau fluide
F16L 37/42 - Accouplements du type à action rapide avec moyens pour couper l'écoulement du fluide avec un obturateur dans une seule des deux extrémités de tuyau avec un clapet dont l'ouverture se fait automatiquement au moment de l'accouplement le clapet comportant un canal axial communiquant avec des trous radiaux
B05C 5/00 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage
The purpose of the present invention is to reduce the amount of fluid adhering to a coupler on the side of a discharging device in comparison to the amount of fluid adhering to a coupler on the side of a replenishing device when replenishing the discharging device with the fluid. A discharging system (10) comprises a discharging device (20) that can discharge a fluid and a replenishing device (100) that can replenish the discharging device (20) with the fluid, and the system can supply the fluid from the replenishing device (100) side to the discharging device (20) side by coupling the devices by inserting a replenish-side coupler (134) provided on the replenishing device (100) side into a discharge-side coupler (82) provided on the discharging device (100) side.
B05C 11/10 - Stockage, débit ou réglage du liquide ou d'un autre matériau fluideRécupération de l'excès de liquide ou d'un autre matériau fluide
F16L 37/42 - Accouplements du type à action rapide avec moyens pour couper l'écoulement du fluide avec un obturateur dans une seule des deux extrémités de tuyau avec un clapet dont l'ouverture se fait automatiquement au moment de l'accouplement le clapet comportant un canal axial communiquant avec des trous radiaux
B05C 5/00 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage
The purpose of the present invention is to couple a discharging device and a replenishing device in a substantially straight orientation while moving the discharging device. A discharging system (10) comprises a discharging device (20), a replenishing device (100), a discharge-side coupler (82), a replenish-side coupler (134), and a manipulator (90), and the system can supply the fluid from the replenishing device (100) to the discharging device (20) by coupling the discharge-side coupler (82) and the replenish-side coupler (134) by moving the discharge-side coupler (82) relative to the axial line (N) direction of the replenish-side coupler (134). When coupling the discharge-side coupler (82) and the replenish-side coupler (134), the location where the manipulator (90) and the discharging device (20) are connected is on a location on the axial line (N).
B05C 11/10 - Stockage, débit ou réglage du liquide ou d'un autre matériau fluideRécupération de l'excès de liquide ou d'un autre matériau fluide
F16L 37/42 - Accouplements du type à action rapide avec moyens pour couper l'écoulement du fluide avec un obturateur dans une seule des deux extrémités de tuyau avec un clapet dont l'ouverture se fait automatiquement au moment de l'accouplement le clapet comportant un canal axial communiquant avec des trous radiaux
B05C 5/00 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage
The present invention is provided with: a casing (6) having a first locking receiving section; a stator (8) joined to the casing (6) and of which the inner peripheral surface is formed in an internally threaded shape; a rotor (9) comprising a shaft body having a male threaded shape and that can be threaded to the stator (8); an end stud (10) that has a second locking receiving section and that is joined to the stator (8) at the reverse side from the casing (6); and a holder (23) that holds the stator (8) between the casing (6) and the end stud (10). The holder (23) is provided with: a first locking section (38) that locks to the first locking receiving section of the casing (6); a second locking section (39) that locks to the second locking receiving section of the end stud (10); and an adjustment section (37) that can adjust the gap between the first locking section (38) and the second locking section (39).
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
73.
DISCHARGE SYSTEM AND METHOD FOR REPLENISHING FLUID
Provided are a discharge system, which can suppress leakage of a fluid when the discharge device and a replenishment device are connected, that leakage being caused by pressure acting on the replenishment device side from a supply device side for the fluid when the discharge device and replenishment device are connected for replenishing fluid in the discharge device, and a method for replenishing the fluid. A discharge system (10) has a discharge device (20) capable of replenishment and discharging of a fluid for discharging, a replenishment device (100) for replenishing the fluid in the discharge device (20), a fluid supply device (160) that can feed the fluid under pressure, a control device (170), and a connection state detecting means. The control device (170) puts a valve (106) into an open state conditioned upon a connection between the discharge device (20) and the replenishment device (100) being connected and allows fluid to be supplied by the supply device (160).
B05C 11/10 - Stockage, débit ou réglage du liquide ou d'un autre matériau fluideRécupération de l'excès de liquide ou d'un autre matériau fluide
F16L 37/42 - Accouplements du type à action rapide avec moyens pour couper l'écoulement du fluide avec un obturateur dans une seule des deux extrémités de tuyau avec un clapet dont l'ouverture se fait automatiquement au moment de l'accouplement le clapet comportant un canal axial communiquant avec des trous radiaux
B05C 5/00 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage
74.
FLUID APPLICATION SYSTEM AND FLUID APPLICATION METHOD
A fluid application system (10) is provided with: an application device (20) that discharges a fluid onto a workpiece; a transfer device (30) that transfers the application device (20) and the workpiece relative to each other; and a control device (11) that controls the application device (20). When the amount of fluid discharged from a nozzle (23) is varied by a target variation (F1) by adjusting an output for a mechanical power source (22), the control device (11) sets the output of the mechanical power source (22) to a value that temporarily exceeds a theoretical output (N1) for the mechanical power source (22) found from the target variation (F1) for the amount of discharge such that the variation in internal pressure of the nozzle (23) is an amount (P1) that should be varied in the internal pressure of the nozzle (23) found from the target variation (F1) for the amount of discharge, and thereafter sets the same to the theoretical output (N1). Thus, when the amount of discharge of the fluid from the nozzle (23) per unit time is varied, response delay in the amount of discharge can be suppressed.
B05C 11/10 - Stockage, débit ou réglage du liquide ou d'un autre matériau fluideRécupération de l'excès de liquide ou d'un autre matériau fluide
B05C 5/00 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage
B05D 1/26 - Procédés pour appliquer des liquides ou d'autres matériaux fluides aux surfaces par application de liquides ou d'autres matériaux fluides, à partir d'un orifice en contact ou presque en contact avec la surface
B05D 3/00 - Traitement préalable des surfaces sur lesquelles des liquides ou d'autres matériaux fluides doivent être appliquésTraitement ultérieur des revêtements appliqués, p. ex. traitement intermédiaire d'un revêtement déjà appliqué, pour préparer les applications ultérieures de liquides ou d'autres matériaux fluides
75.
MADE-TO-ORDER SYSTEM FOR COSMETICS, AND COMPOUNDING SYSTEM
A made-to-order system (10) for cosmetics is provided with: a color detection means (12) for detecting the color of an object to be detected; an input means for inputting the color of a cosmetic to be compounded; a blending ratio setting means (14) for generating a blending ratio for compounding, from multiple kinds of cosmetic compositions, a cosmetic which will assume the color inputted by the input means; and a cosmetic compounding device (20) for compounding a cosmetic by discharging each of the multiple kinds of cosmetic compositions via a positive-displacement-type pump and mixing the discharged cosmetic compositions so that the blending ratio generated by the blending ratio setting means (14) is achieved. This makes it possible to efficiently supply a cosmetic that conforms to the color desired by a customer. It is preferable that the made-to-order system 10) for cosmetics is further provided with a display means for displaying the color detected by the color detection means (12).
Provided are a variable discharge width unit with which the discharge width of a fluid can be adjusted with good precision and a discharge device provided with said variable discharge width unit. The variable discharge width unit (100) comprises an outer tube (112) with an outer tube circumferential surface opening (116), and an inner tube (130) with an inner tube circumferential surface opening (138) and is configured so that: the width of the communication region (148) formed by the overlap of the outer tube circumferential surface opening (116) and the inner tube circumferential surface opening (138) is changed by rotating the outer tube (112) relative to the inner tube (130); and a fluid introduced in a fluid-pooling section (142) can be discharged through the communication region (148). A nozzle (150) is provided on the outer tube circumferential surface opening (116). Partitions (152) for dividing off the open area of the nozzle (150) so that multiple divided areas (154) form a row in a direction that intersects with the direction of relative movement are provided on the nozzle (150).
B05C 5/02 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage à partir d'un dispositif de sortie en contact, ou presque en contact, avec l'ouvrage
B05C 11/10 - Stockage, débit ou réglage du liquide ou d'un autre matériau fluideRécupération de l'excès de liquide ou d'un autre matériau fluide
B05D 1/26 - Procédés pour appliquer des liquides ou d'autres matériaux fluides aux surfaces par application de liquides ou d'autres matériaux fluides, à partir d'un orifice en contact ou presque en contact avec la surface
[Problem] To provide a uniaxial eccentric screw pump having a simple and compact device configuration, and which enables a rotor to be rotated and revolved without a complicated operational control. [Solution] A uniaxial eccentric screw pump (10) is equipped with a rotor drive mechanism (50) capable of causing a rotor (20) to rotate and to revolve. The rotor drive mechanism (50) has a rotation drive force transmission member (52) capable of rotating around a fixed central axis (C1), and a revolution orbit formation member (56) capable of causing the base shaft portion (54) of the rotor (20) to revolve while allowing this base shaft portion to rotate. The rotor drive mechanism (50) is able to distribute and transmit driving force (output from a motor (80)) in parallel to the rotation drive force transmission member (52) and the revolution orbit formation member (56), thereby causing the rotation drive force transmission member (52) and the revolution orbit formation member (56) to rotate while mechanically synchronized, and causing the rotor (20) to revolve while rotating.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
When a discharge device and a filling device are coupled in order to fill the discharge device with fluid, the present invention suppresses contamination of the fluid by air, and suppresses discharge problems associated with the contamination by air. This discharge system (10) has: a discharge device (20) which is capable of being filled with and discharging a fluid for discharging; a filling device (100) which fills the discharge device (20) with the fluid; a coupling device (140) which detachably couples the discharge device (20) and the filling device (100); an enclosed space forming body (132) which forms an enclosed space (135); and a decompression device (148) which brings about a state of negative pressure inside the enclosed space (135). The discharge system (10) is capable of a coupling operation which couples the discharge device (20) and the filling device (100), said operation occurring inside the enclosed space (135) in which a state of negative pressure has been brought about by the decompression device (148).
The present invention suppresses adhesion of fluid to a coupling device which couples a discharge device and a filling device in order to fill the discharge device with the fluid. This discharge system (10) has: a discharge device (20) which is capable of being filled with and discharging a fluid for discharging; a filling device (100) which fills the discharge device (20) with the fluid; a coupling device (140) which detachably couples the discharge device (20) and the filling device (100); and a control device (170). The control device (170) of the discharge system (10) controls the operating speed of a separating operation, by which the discharge device (20) is separated from the filling device (100), in order that said speed does not exceed the operating speed of a coupling operation, by which the discharge device (20) is coupled to the filling device (100).
[Problem] The objective of the present invention is to provide a tactile printer which has a simple configuration and operation and allows for selection of a wide range of curable liquids and workpieces on which a plot of Braille lettering or a tactile graphic is to be formed. [Solution] This tactile printer (10) is provided with an input device (20), a dispenser (40) which functions as an output device (30), a robot arm (72) which functions as a movement mechanism (70), and a control device (80) for performing operation control. The control device (80) is provided with a conversion engine (85) which converts character information or graphical information which has been input by the input device (20) into a formation pattern for a plot (P) of Braille lettering or a tactile graphic. The tactile printer (10) subjects words inputted via the input device (20) to conversion processing in the conversion engine (85) and causes the dispenser (40) and the robot arm (72) to operate on the basis of the conversion results of the same, thereby allowing Braille lettering or a tactile graphic to be depicted upon the workpiece (W).
B41J 3/32 - Machines à écrire ou mécanismes d'impression ou de marquage sélectif caractérisés par le but dans lequel ils sont construits pour l'impression en Braille ou avec des claviers spécialement adaptés aux aveugles ou aux handicapés
B05C 5/02 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage à partir d'un dispositif de sortie en contact, ou presque en contact, avec l'ouvrage
G09B 21/00 - Moyens d'enseignement ou de communication destinés aux aveugles, sourds ou muets
[Problem] To provide a coating agent reference apparatus: with which a plurality of coating agent compositions such as paints, pigments, dyes or coloring agents of various colors can be intuitively and accurately mixed at a predetermined preparation ratio; and with which a coloring coating agent having a desired colors can be prepared. [Solution] A coating agent reference apparatus (10) is capable of forming a coloring coating agent by preparing a plurality of types of coating agent compositions such as paints, pigments or dyes. The coating agent reference apparatus (10) is provided with material discharge pumps (40), which are provided for each coating agent composition; a preparation ratio setting means (120) with which a preparation ratio for coating agent compositions can be set; and a discharge quantity control means (130) for controlling the discharge quantities of coating agent compositions in each material discharge pump (40) in accordance with the preparation ratio set by the preparation ratio setting means (120).
[Problem] To provide a food preparation apparatus with which a plurality of food constituent materials can be prepared as if cooked by consumers, enabling food to be prepared in line with the preferences or tastes of consumers; and with which the flavor of a food can be adjusted or controlled with good accuracy without depending on rules of thumb. [Solution] A food preparation apparatus (10) is capable of forming a food by preparing a plurality of types of food constituent materials comprising ingredients or seasonings constituting the food. The food preparation apparatus (10) is provided with material discharge pumps (40), which are provided for each food constituent material; a preparation ratio setting means (120) with which a preparation ratio for the food constituent materials can be set; and a discharge quantity control means (130) for controlling the discharge quantities of the food constituent materials in each material discharge pump (40) in accordance with the preparation ratio set by the preparation ratio setting means (120).
A23L 1/48 - Compositions d'aliments ou leur traitement non prévus par les sous-groupes précédents
A47J 43/00 - Instruments pour préparer ou recevoir les aliments, non prévus dans les autres groupes de la présente sous-classe
G07F 11/70 - Appareils déclenchés par des pièces de monnaie pour distribuer ou délivrer d'une façon analogue, des articles d'une façon discontinue dans lesquels les articles sont formés dans l'appareil à partir de composants, d'ébauches ou d'éléments constitutifs
G07F 13/00 - Appareils déclenchés par pièces de monnaie pour commander la distribution de fluides, de produits semi-liquides ou de produits granuleux contenus dans des réservoirs
G07F 13/06 - Appareils déclenchés par pièces de monnaie pour commander la distribution de fluides, de produits semi-liquides ou de produits granuleux contenus dans des réservoirs avec distribution sélective de différents fluides ou matériaux ou de mélanges de ceux-ci
A23G 9/28 - Détails, éléments constitutifs ou accessoires d'appareils dans la mesure où ils ne sont pas spécifiques à un seul des groupes précédents pour partager ou débiter
This three-dimensional structure modeling apparatus is provided with a material discharge pump, which is equipped with a uniaxial eccentric screw pump mechanism, and a table that is positioned facing the material discharge pump and is capable of being moved in a horizontal direction by a table moving device. By configuring the three-dimensional structure modeling apparatus such that the material discharge pump and a light illumination device are attached to the tip of a robot arm, and the material discharge pump and the table are moved relative to each other by the robot arm and table moving device, the degree of freedom of modeling three-dimensional structures is improved, and a wide variety of three-dimensional structures can be created in a short period.
[Problem] To provide a flavoring preparation apparatus with which a plurality of preparation materials can be prepared as if cooked by consumers, enabling flavorings to be prepared in line with the preferences or tastes of consumers; and with which the aroma of flavorings can be adjusted or controlled with good accuracy without depending on rules of thumb. [Solution] A flavoring preparation apparatus (10) is capable of forming a flavoring by preparing a plurality of types of preparation materials constituting the flavoring. The flavoring preparation apparatus (10) is provided with material discharge pumps (40), which are provided for each preparation material; a preparation ratio setting means (120) with which a preparation ratio for the preparation materials can be set; and a discharge quantity control means (130) for controlling the discharge quantities of the preparation materials in each material discharge pump (40) in accordance with the preparation ratio set by the preparation ratio setting means (120).
G05D 11/02 - Commande du rapport des débits de plusieurs matériaux fluides ou fluents
A61L 9/14 - Désinfection, stérilisation ou désodorisation de l'air utilisant des substances vaporisées ou pulvérisées
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04C 14/24 - Commande, surveillance ou dispositions de sécurité pour "machines" ou pompes ou installations de pompage caractérisées par l'utilisation des soupapes pour commander la pression ou le débit, p. ex. soupapes de décharge
A uniaxial eccentric screw pump enabling a stator to be easily separated into an outer cylinder and a lining member, and being capable of solving problems such as a positional shift and deformation of the lining member, and an occurrence of uneven wear and an unstable discharge amount associated with the positional shift and deformation. The stator includes a liner portion having a cylindrical shape and being integrally formed so as to have an inner peripheral surface of an internal thread type and an outer cylinder portion. The liner portion includes, at both end portions thereof, flange portions protruding radially outward, and an outer cylinder mounting portion is provided between the flange portions. The outer cylinder portion is mounted in a non-bonded state on the outer cylinder mounting portion, and both end portions of the outer cylinder portion abut on the flange portions, respectively.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
86.
REMOTE MONITORING SYSTEM OF UNIAXIAL ECCENTRIC SCREW PUMP
[Problem] The purpose of this invention is to make it possible to monitor the operation state of multiple uniaxial eccentric screw pumps by means of a remotely installed monitoring means. [Solution] In this remote monitoring system (1), it is possible to send and receive operation state detection information in a communication network (N) constructed from wireless intercommunication means (10) provided in the uniaxial eccentric screw pumps (100). Further, operation state detection information aggregated by a coordinator (10a) can be sent over the internet via internet connection means (30). By this means, a state is achieved in which the operation state of uniaxial eccentric screw pumps (100) can be monitored by the monitoring means (50) connected to the internet.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
[Problem] To provide a single-shaft eccentric screw pump with which a flexible rod and a rotor can easily be connected without producing backlash, and with which problems such as fretting wear, breaking of the shaft due to the concentration of stress, and corrosion due to the infiltration of fluids can be prevented. [Solution] In a single-shaft eccentric screw pump, a flexible rod (62) and a rotor (30) are connected via a connecting structural part (100). The connecting structural part (100) is formed by inserting and screwing a threaded shaft (104), which is provided on the tip of the flexible rod (62), into a shaft insertion hole (110) provided in the end face (112) of the rotor (30). A flange part (102) on the flexible rod (62) side makes surface contact with the end face on the rotor (30) side in the connecting structural part (100).
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F16B 7/18 - Assemblages de barres ou assemblages de tubes, p. ex. de section non circulaire, y compris les assemblages élastiques utilisant des éléments filetés
F16B 7/20 - Assemblages de barres ou assemblages de tubes, p. ex. de section non circulaire, y compris les assemblages élastiques utilisant des assemblages à baïonnette
[Problem] The purpose is to provide a uniaxial eccentric screw pump allowing for easy separation of a stator into an outer tube and a lining member, and for easy adjustment of the tightening margin. [Solution] The stator (20) has an outer tube (24) and a tubular liner (22) integrally formed so that the inner circumferential surface thereof has an internal thread. Flanges (26, 26) extending diametrically outward are provided at both ends of the liner (22), and an outer-tube mounting unit (28) is provided between the flanges. The outer tube (24) is mounted in a non-bonded state in the outer-tube mounting unit (28), and both ends thereof abut against the flanges (26, 26). The tightening tolerance can be adjusted by inserting or removing a shim (25) between the liner (22) and the outer tube (24).
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
89.
DEVICE WITH VARIABLE DISCHARGE WIDTH AND APPLICATION DEVICE
The present invention is configured in such a manner that, even if the width of discharge is changed, the pressure of the discharge hardly changes. A device (100) having a variable discharge width has: a hollow outer tube section (112), the inside and outside of which are connected through a discharge opening (116); and an inner tube section (130) adapted so that the inner tube section (130) can rotate within the outer tube section (112) along the circumferential wall thereof. The inner tube section (130) is configured so that a fluid object can be introduced therein, and the inner tube section (130) has a circumferential opening (138) formed in the circumferential wall (136) so as to connect the inside and outside of the inner tube section (130). The circumferential opening (138) is formed in such a manner that the width of the opening thereof changes in the circumferential direction of the inner tube section. The device (100) having a variable discharge width is adapted so that the device (100) can discharge from a communication region (148) a fluid object which is introduced into the inner tube section (130), the communication region (148) being formed when the circumferential opening (138) and the discharge opening (116) are superimposed on each other.
A rotor drive mechanism 25 is configured to transfer rotation of a driving shaft 38 to an external screw type rotor 22 of a uniaxial eccentric screw pump 23 via a connecting shaft 39, the driving shaft 38 being rotated such that the center thereof is located at a fixed position. The rotor drive mechanism 25 is configured such that: the driving shaft 38 includes an inner space 46 which is open toward the rotor 22; the connecting shaft 39 is inserted in the inner space 46; and a first seal portion 55 seals between an inner peripheral surface of an opening of the driving shaft 38, the opening being open toward the rotor 22, and an outer peripheral surface of the rotor shaft 37 connected to the rotor 22 configured to carry out an eccentric rotational movement.
Provided is a uniaxial eccentric screw pump in which a stator can be readily separated into an outer cylinder and a lining member, and in which problems such as position deviation and deformation of the lining member and the accompanying offset abrasion and unstable discharge amount can be eliminated. A stator (20) comprises: a one-piece cylindrical liner part (22) having a female thread on the inner circumferential surface thereof; and an outer cylinder part (24). Flange parts (26, 26) are provided protruding radially outward at both end parts of the liner part (22), and an outer cylinder fitting part (28) is provided between the flange parts (26, 26). The outer cylinder part (24) is fitted to the outer cylinder fitting part (28) in a non-adhesive state, and both parts of the outer cylinder part (24) are brought into contact with the flange parts (26, 26).
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
92.
BUFFERING MEMBER, SHAFT COUPLED STRUCTURE, AND A UNIAXIAL ECCENTRIC SCREW PUMP
Disclosed is a buffering member which is capable of easily linking an output shaft and a passive shaft so as not to cause misalignment or looseness of the shaft centers, and which is capable of suppressing outside forces working directly from one of the shafts towards the other of the shafts and of suppressing the effects caused by thermal conductivity and thermal expansion; also disclosed is a uniaxial eccentric screw pump provided with said buffering member. By being interposed between an output shaft (70a) and a drive shaft (56), a buffering member (82) is capable of linking both shafts. The buffering member (82) is made from a resin, and has a tubular buffering member main body (84) and a coupling means (90). By being inserted into a buffering member insertion area (56a) disposed on the end of the drive shaft (56), the buffering member main body (84) assumes a state in which said buffering member main body (84) is fitted in and coupled with the drive shaft. Further, by inserting an output shaft (70a) into an insertion area (88) disposed on the buffering member main body (84) and engaging with a key seat (70b) a key (92) which forms a coupling means, the output shaft (70a) and the buffering member main body (84) assume a linked state.
F16D 3/12 - Accouplements extensibles, c.-à-d. avec moyens permettant le mouvement entre parties accouplées durant leur entraînement adaptés à des fonctions particulières spécialement adaptés à un emmagasinage de l'énergie pour absorber les chocs ou vibrations
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
F16D 3/50 - Accouplements extensibles, c.-à-d. avec moyens permettant le mouvement entre parties accouplées durant leur entraînement avec pièces d'accouplement reliées par un ou plusieurs organes intermédiaires
F16F 15/12 - Suppression des vibrations dans les systèmes rotatifs par utilisation d'organes mobiles avec le système lui-même utilisant des organes élastiques ou des organes amortisseurs de friction, p. ex. entre un arbre en rotation et une masse giratoire montée dessus
93.
BRANCHED DUCT CONSTRUCT, AND UNIAXIAL ECCENTRIC SCREW PUMP SYSTEM
Disclosed is a branched duct construct that branches a fluid into a desired number of branches, can dispose the discharge section of each branched duct at a desired position, and can equalize the discharge pressure and discharge quantity at each branched duct. Further disclosed is a uniaxial eccentric screw pump system provided with said branched duct construct. The branched duct (Bn) of the branched duct construct has n relay sections (Rn) so as to correspond to each of n discharge sections (Fn), and has: n systems of introduction-to-relay section ducts (SRn) that connect an introduction section (S) to the relay sections (Rn); and n systems of relay-to-discharge section ducts (RFn) that connect the aforementioned n relay sections (Rn) and discharge sections (Fn). Also, with the branched duct construct, the relay sections (Rn) are disposed at positions corresponding to n points that divide the circumference of an imaginary circle centered around a point on a vertical line passing through the center axis of the introduction section (S), and the branched duct (Bn) is formed in a manner so that the lengths of the n systems of relay-to-discharge section ducts (RFn) are each the same.
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04B 53/16 - Carcasses d'enveloppeCylindresChemises de cylindre ou culassesConnexions des tubulures pour fluide
F04C 14/00 - Commande, surveillance ou dispositions de sécurité pour "machines" ou pompes ou installations de pompage
94.
ROTOR DRIVE MECHANISM AND PUMP DEVICE PROVIDED WITH THE SAME
Provided is a rotor drive mechanism wherein the dimension of a pump device in the longitudinal direction thereof is decreased and the volume of a fluid storage space within a casing is decreased; and the accuracy of a discharge rate can be improved. In a rotor drive mechanism (25) for transmitting the rotation of a drive shaft (38) which is rotated about a predetermined position to an external thread-type rotor (22) of a uniaxial eccentric screw pump (23) via a connecting shaft (39), the drive shaft (38) has an inner space (46) which opens toward the rotor (22); the connecting shaft (39) is inserted to the inner space (46); the rear end of the connecting shaft (39) is connected to the drive shaft (38) via a second joint (48), and the front end of the connecting shaft (39) is connected to the rotor (22) via a first joint (47); and a space between the inner peripheral surface of the drive shaft (38) which opens toward the rotor (22), and the outer peripheral surface of a rotor shaft (37) coupled to the rotor (22) which eccentrically rotates, is sealed by a first seal portion (55).
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04C 13/00 - Adaptations des "machines" ou pompes pour utilisation particulière, p. ex. pour très hautes compressions
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
95.
COVER-EQUIPPED STATOR FOR UNIAXIAL ECCENTRIC SCREW PUMP, AND UNIAXIAL ECCENTRIC SCREW PUMP
A cover-equipped stator for a uniaxial eccentric screw pump is configured such that a condensate liquid accumulated between the outer surface of a stator and the inner surface of the cover when a high-temperature fluid is caused to flow in an inner hole in the stator is discharged to the outside of the cover. The configuration extends the life of the stator and enhances the accuracy of a discharge flow rate. A cover-equipped stator (27) of a uniaxial eccentric screw pump (17) in which a male screw stator (3) is fitted in an inner hole (4a) in a rubber female screw stator (4) and in which a cover (18) is mounted to the outer surface of the stator (4), wherein the cover-equipped stator comprises a first discharge passage (22) for discharging a condensate liquid (15) to the outside of the cover (18). The condensate liquid (15) is a liquid resulting from condensation of water vapor (13) evaporated from a liquid which flows in the inner hole (4a) in the stator (4), transmitted through the stator (4), and condensed and accumulated between the outer surface of the stator (4) and the inner surface of the cover (18).
F04C 2/107 - Machines ou pompes à piston rotatif du type à engrènement extérieur, c.-à-d. avec un engagement des organes coopérants semblable à celui d'engrenages dentés du type à axe interne, l'organe externe ayant plus de dents ou de parties équivalentes de prise, p. ex. de rouleaux, que l'organe interne avec des dents hélicoïdales
F04B 19/12 - Dispositifs de puisage du type à hélice ou à vis
F04C 15/00 - Parties constitutives, détails ou accessoires des "machines", des pompes ou installations de pompage non couverts par les groupes
96.
NOZZLE WITH REPLACEMENT FUNCTION, NOZZLE DEVICE WITH REPLACEMENT FUNCTION, AND APPLICATION DEVICE WITH NOZZLE DEVICE WITH REPLACEMENT FUNCTION
A nozzle moving drive mechanism has, beside a function of moving a desired nozzle of nozzles to a discharge position and applying fluid to an application surface, a function as a nozzle replacing drive mechanism for rotationally moving the desired nozzle. A nozzle device with replacement function comprises; a nozzle (22) with replacement function, the nozzle (22) being provided with a rotation section (27) having first to third nozzles (23) and also with a base section (28) for holding the rotation section (27), the nozzle (22) rotationally moving a desired nozzle (23) of the first to third nozzles to a discharge position (T) in order to cause the nozzle (23) to discharge fluid supplied from the base section (28) side; an engaging section (47) provided to the rotation section (27); and a catch section (48) provided to a mounting table (50). The base section (28) is moved by a robot arm, with the engaging section (47) engaged with the catch section (48), to rotationally move the desired nozzle (23) to the discharge position (T).
B05C 5/00 - Appareillages dans lesquels un liquide ou autre matériau fluide est projeté, versé ou répandu sur la surface de l'ouvrage
B05B 1/16 - Buses, têtes de pulvérisation ou autres dispositifs de sortie, avec ou sans dispositifs auxiliaires tels que valves, moyens de chauffage avec des orifices de sortie multiplesBuses, têtes de pulvérisation ou autres dispositifs de sortie, avec ou sans dispositifs auxiliaires tels que valves, moyens de chauffage avec des filtres placés dans ou à l'extérieur de l'orifice de sortie comportant des sorties de section réglable
B05B 12/00 - Aménagements de commande de la distributionAménagements de réglage de l’aire de pulvérisation