The invention relates to a tool head (1, 100, 200, 300, 400) for a piercing tool and/or a turning tool, comprising: a cutting holder part (3); a coolant channel structure (9) with a coolant outlet (12, 36) associated with the cutting holder part (3); a coupling surface (13); and a pipe element (6) protruding from the coupling surface (13) along a central pipe longitudinal axis (5) for the intake of coolant into the coolant channel structure (9), wherein the coupling surface (13) has a rib structure (14, 30, 38) which, at least on both sides of the pipe element (6), defines a pipe-axially measured and overall maximum rib height level (19) of the rib structure (14, 30, 38) and, starting therefrom, extends in the direction towards the pipe element (6) or onto a transverse axis (31) of the pipe element and is formed so as to be continuously lowered below the maximum rib height level (19).
An X-ray rotating anode for generating X-rays has a carrier body and at least one annular focal track coating extending along a focal track on the carrier body. The carrier body is made of Mo or a Mo-based alloy and the at least one annular focal track coating is made of W or a W-based alloy. The focal track coating has a first layer and a second layer lying directly above the first layer in a perpendicular direction to the focal track surface starting from the carrier body. The first layer has a grain structure that differs from the second layer.
A chip breaker body (1, 100, 110, 120, 130) for a cutting tool (3, 300, 310, 320) comprising: a bottom surface (4), a top surface (5), a back surface (6) and a slanted front surface (7), wherein the back surface (6) and the slanted front surface (7) are arranged opposite to each other and are each joined to the bottom surface (4) and top surface (5), wherein the slanted front surface (7) has at least one elongated recess (8), wherein the bottom surface (4) has a groove structure (9) intersecting the elongated recess (8), creating a front groove opening edge (12) within the elongated recess (8), wherein, if the slanted front surface (7) forms one or more rail-like ridges (70), the elongated recess (8) depresses the slanted-front surface (7) independently of the presence of such rail-like ridges (70).
PLANSEE SHANGHAI HIGH PERFORMANCE MATERIAL LTD (China)
PLANSEE SE (Austria)
Inventor
Gao, Zecui
Sun, Yi
Schmidt, Hennrik
Scherer, Thomas
Cheng, Dongji
Abstract
The invention relates to a sputtering target, produced by powder metallurgy, comprising 10 to 20 wt.% molybdenum, balance Ni and inevitable impurities and characterized in that the sputtering target has a saturation magnetization (Ms) equal to or less than 10000 A/m. The invention further relates to a process for producing a NiMo sputtering target via the powder-metallurgical route.
A shouldering insert includes a top surface, a bottom surface and a peripheral surface between the top surface and the bottom surface. A top cutting region is shaped by the peripheral surface and the top surface, and a bottom cutting region is shaped by the peripheral surface and the bottom surface. Within the shouldering insert, the top cutting region is indexable only with the bottom cutting region. A shoulder milling tool having a tool body and at least two shouldering inserts is also provided.
CERATIZIT HARD MATERIAL SOLUTIONS S.A R.L. (Luxembourg)
CERATIZIT LUXEMBOURG S.A.R.L. (Luxembourg)
Inventor
Buono, Robin
Laschiazza, Cecilio
Magin, Michael
Picco, Luca
Abstract
A masonry drill head is made from a sintered cemented carbide. The masonry drill head has an at least section-wise planar joining end for heat induced joining to a shaft, a working end for shattering masonry material under a percussive motion, at least two conveying webs each emerging from the joining end and at least two conveying grooves each extending between two of the conveying webs. A cross-sectional solid material area of the masonry drill head increases towards the joining end, such that a masonry material debris intake of at least one of the conveying grooves increases towards the working end.
B28D 1/14 - Working stone or stone-like materials, e.g. brick, concrete, not provided for elsewhereMachines, devices, tools therefor by boring or drilling
17 - Rubber and plastic; packing and insulating materials
20 - Furniture and decorative products
22 - Rope, netting, tents, awnings, sails and sacks; padding and stuffing materials
24 - Textiles and textile goods
Goods & Services
Medical bedding; incontinence bed pads; mattresses for
medical use; pillows for orthopedic use; cushions for
medical purposes; pillows (soporific -) filled with down;
pillows for sleep disorders; pads for inhibiting snoring;
pressure relief pads and cushions; bolsters for medical or
surgical use; incontinence mattress protectors. Filling and padding material, wholly or mainly consisting of
gum, plastics or of synthetic materials and/or fibres for
furniture, bedding, cushions, bed covers, padded cushions
and clothing. Beds, bedding, mattresses, pillows and cushions; pillows;
neck-supporting pillows; stuffed pillows; neck support
cushions; neckrolls other than for medical or surgical use;
slatted bases for beds; mattress toppers; mattress cushions;
spring assemblies (non-metallic -) for incorporation into
mattresses. Filling and padding material, wholly or mainly consisting of
natural materials for furniture, bedding, cushions, bed
covers, padded cushions and clothing. Bed linen and blankets; bedding articles, namely duvets,
quilted blankets, quilts, four-season blankets; bed
blankets; comforters; bed linen; covers for cushions; bed
pads; sleeping bags; mattress covers; mattress covers; ticks
[mattress covers]; contoured mattress covers; protective
loose covers for mattresses and furniture; covers for
mattresses; textiles and substitutes for textiles; textile
goods, and substitutes for textile goods.
8.
TOOL FOR FRICTION-STIR WELDING AND ADDITIVE MANUFACTURING METHOD FOR SAME USING A MATERIAL MADE OF MO/W AND C/B
The invention relates to a tool (1) for friction-stir welding, wherein at least one active region (20) of the tool (1) consists of a material which comprises a multiplicity of individual powder particles which are melted together by a high-energy beam by means of an additive manufacturing method to form a solid structure of grains (7), and wherein the material contains at least one refractory metal from the group of molybdenum and tungsten or a refractory metal alloy based on molybdenum and/or tungsten and at least one element from the group of carbon and boron, wherein the content of refractory metal or refractory metal alloy is at least 80 at% and the total content of carbon and boron is between 1.0 and 20.0 at%.
B22F 10/28 - Powder bed fusion, e.g. selective laser melting [SLM] or electron beam melting [EBM]
B23K 20/12 - Non-electric welding by applying impact or other pressure, with or without the application of heat, e.g. cladding or plating the heat being generated by frictionFriction welding
B33Y 70/10 - Composites of different types of material, e.g. mixtures of ceramics and polymers or mixtures of metals and biomaterials
B33Y 80/00 - Products made by additive manufacturing
The invention discloses a sputtering target produced by powder metallurgy, the sputtering target containing 0.3-10 wt.% of an oxygen-containing lanthanum compound (La), the remainder being molybdenum (Mo) and unavoidable impurities, characterized in that the sputtering target has an Mo phase and an La phase, an average grain size of the Mo grains in the Mo phase being 1-200 µm, and the sputtering target having an isotropic microstructure.
The invention relates to the use of a thread-cutting region (2) for producing threads on a component (29), comprising at least one pin (25) extending axially along a longitudinal axis (28) and comprising a circumferential wall (26) which surrounds the pin (25) circumferentially and at a radial distance thereto such that a free space (27) is formed between the circumferential wall (26) and the pin (25) and the pin (25) protrudes axially out of the free space (27). The thread-cutting region (2) has a front thread-cutting tooth (3), which protrudes freely in the axial direction at least in some parts, for immersing into the free space (27) in the axial direction.
A method for bar peeling a workpiece (W), wherein, in a tool holder (6), there are disposed at least two uniform cutting plates (1, 1'), on each of which a plurality of roughing cutting sections (2) and a plurality of finishing cutting sections (3) which are different therefrom are formed, wherein, in an installed position, the preceding cutting plate (1) with respect to a machining direction, which cutting plate is provided for roughing machining, is positioned in such a way that it only engages with a roughing cutting section (2), and the following cutting plate (1'), which is provided for finishing machining, is positioned in such a way that it only engages with a finishing cutting section (3).
B23B 27/16 - Cutting tools of which the bits or tips are of special material with exchangeable cutting bits, e.g. able to be clamped
B23B 5/12 - Turning-machines or devices specially adapted for particular workAccessories specially adapted therefor for turning axles, bars, rods, tubes, rolls, i.e. shaft-turning lathes, roll lathesCentreless turning for peeling bars or tubes by making use of cutting bits arranged around the workpiece
12.
SHOULDERING INSERT, MILLING TOOL AND SHOULDER MILLING PROCESS
A shouldering insert (1) having a top surface (2), a bottom surface (3) and a peripheral surface (4) between the top surface (2) and the bottom surface (3), wherein the shouldering insert (1) has a cutting-edge-region (5) on parts of the top surface (2), which is non-indexable with any other regions of the top surface (2) and bottom surface (3) and is shaped by the peripheral surface (4) and the top surface (2), such that the cutting-edge-region (5) has a main cutting-edge (6), a wiping cutting-edge (7), and a ramping cutting-edge (8), wherein the top surface (2) has an asymmetrical outer contour when viewed in a top view.
A milling tool has a milling tool main element which has a first end with an interface for connection to a machine-side tool holder, and a free second end with at least one seat for receiving an exchangeable cutting insert. The following are arranged at the seat: a first support element for supporting a first side face of the cutting insert, which first support element is reversibly fastened to the milling tool main element by a first fastening element, a second support element for supporting a second side face of the cutting insert, which second support element is reversibly fastened to the milling tool main element by a second fastening element, and a third support element for supporting an underside of the cutting insert. The third support element is reversibly fastened to the milling tool main element by a third fastening element.
Plansee Shanghai High Performance Material Ltd. (China)
Plansee SE (Austria)
Plansee Japan Ltd. (Japan)
Inventor
Chen, Chao
Lu, Jiandong
Linke, Christian
Kuniya, Tsutomu
Schmidt, Hennrik
Abstract
A sputtering target includes a tubular backing tube having an axis defined as an axial direction, and a plane in which a radial direction lies perpendicular to the axial direction. At least two cylindrical target segments are juxtaposed along the axial direction on the tubular backing tube and bonding material is placed between the tubular backing tube and the cylindrical target segments. At least two ends of the cylindrical target segments facing each other form a tongue-groove-fit with each other in such a way that at least one tongue at one end is overlapped with at least one groove at a respective other end of two adjacent cylindrical target segments, as viewed in the radial and/or the axial direction. The overlap extends at least along a part of a circumference of the corresponding end. A method for manufacturing a sputtering target is also provided.
A tool (1) made of refractory metal and having a cooling bore (2), wherein a silver-based protective coating (3) is formed at least in some areas of a wall (3) of the cooling bore (2).
A cutting and grooving tool (1, 61, 65) comprising a grooving plate (5), a main body (3) and a channel structure (10) extending at least in portions of the main body (3), wherein the grooving plate (5) is mounted on the main body (3) and has a blade region (6) having a free end cutting edge (7) and a rake face (29) and end-side flank (19) associated therewith, wherein the main body (3) extends from the front on the side of the flank (19) to the rear, along the end cutting edge (7) laterally and from the top on the side of the rake face (29) downwards, wherein the channel structure (10) has a flushing channel (11) which extends so as to be directed laterally next to the grooving plate (5) and extends towards the liquid outlet which is directed forwards at least in terms of components, and which flushing channel is open through a flushing opening (12) laterally next to the grooving plate (5).
A rotor component for a rotary x-ray anode has a carrier body and a spray coating. The carrier body is made from one of the following materials a refractory metal, a refractory metal-based alloy, iron, an iron-based alloy or combinations thereof, and the spray coating contains copper or a copper-based alloy. The carrier body is materially bonded to the spray coating at least in sections at a connecting surface. The rotor component is characterized in that the microstructure of the rotor component has no transition region at the connecting surface between the carrier body and the spray coating.
The invention relates to a cutting insert (1) having a main body portion (2) and at least one cutting-edge portion (3) projecting from the main body portion (2), by means of which cutting-edge portion a rake face (4) is bordered and which has a front cutting edge (4), two lateral cutting edges (5) and two cutting corners (6), which are interconnected by the front cutting edge (4), wherein the front cutting edge (4) and the two lateral cutting edges (5) are straight, seen in each case in a top view, wherein the rake face (4) has a front face edge region (11) connected to the front cutting edge (4) and an inner region (14) which is connected to the front face edge region (11) and is located above the front cutting edge (4), wherein the front face edge region (11) has at least one chip-forming element (23) for groove-like shaping of a chip which passes off-centre over the front cutting edge (4), said front face edge region sinking on both sides of the chip-forming element (23) to a low point (41) under the front cutting edge (4), wherein the inner region (14) has at least one chip-guiding element (21, 22) for guiding the chip shaped by the chip-forming element (23).
17 - Rubber and plastic; packing and insulating materials
20 - Furniture and decorative products
22 - Rope, netting, tents, awnings, sails and sacks; padding and stuffing materials
24 - Textiles and textile goods
Goods & Services
Medical bedding; Incontinence bed pads; Mattresses for medical use; Pillows for orthopedic use; Cushions for medical purposes; Pillows (Soporific -) filled with down; Pillows for sleep disorders; Pads for inhibiting snoring; Pressure relief pads and cushions; Bolsters for medical or surgical use; Incontinence mattress protectors. Filling and padding material, wholly or mainly consisting of gum, plastics or of synthetic materials and/or fibres for furniture, bedding, cushions, bed covers, padded cushions and clothing. Beds, bedding, mattresses, pillows and cushions; Pillows; Neck-supporting pillows; Stuffed pillows; Neck support cushions; Neckrolls other than for medical or surgical use; Slatted bases for beds; Mattress toppers; Mattress cushions; Spring assemblies (Non-metallic -) for incorporation into mattresses. Filling and padding material, wholly or mainly consisting of natural materials for furniture, bedding, cushions, bed covers, padded cushions and clothing. Bed linen and blankets; bedding articles, namely Duvets, Quilted blankets, Quilts, Four-season blankets; Bed blankets; Comforters; Nightdress cases of textile; Bed linen; Covers for cushions; Bed pads; Sleeping bags; Mattress covers; Mattress covers; Ticks [mattress covers]; Contoured mattress covers; Protective loose covers for mattresses and furniture; Covers for mattresses; Textiles and substitutes for textiles; Textile goods, and substitutes for textile goods.
Punch sleeve (1) made from a sintered material comprising the following components: 10 to 35 weight percent tungsten carbide, 50 to 60 weight percent in total of one or more selected from titanium carbide, titanium carbonitride and titanium nitride, 35 to 5 weight percent in total of one or more selected from cobalt and nickel, 1.5 to 0 weight percent chromium, 2.5 to 0 weight percent molybdenum, 1 to 0 weight percent in total of other additions, wherein the sum in weight percentages of said components is 95 to 100 weight percent.
B22F 5/10 - Manufacture of workpieces or articles from metallic powder characterised by the special shape of the product of articles with cavities or holes, not otherwise provided for in the preceding subgroups
B21D 51/26 - Making hollow objects characterised by the use of the objects cans or tinsClosing cans or tins in a permanent manner
C22C 1/051 - Making hard metals based on borides, carbides, nitrides, oxides or silicidesPreparation of the powder mixture used as the starting material therefor
C22C 29/04 - Alloys based on carbides, oxides, borides, nitrides or silicides, e.g. cermets, or other metal compounds, e. g. oxynitrides, sulfides based on carbides or carbonitrides based on carbonitrides
C22C 29/10 - Alloys based on carbides, oxides, borides, nitrides or silicides, e.g. cermets, or other metal compounds, e. g. oxynitrides, sulfides based on carbides or carbonitrides based on carbides, but not containing other metal compounds based on titanium carbide
C22C 29/16 - Alloys based on carbides, oxides, borides, nitrides or silicides, e.g. cermets, or other metal compounds, e. g. oxynitrides, sulfides based on nitrides
C22C 29/00 - Alloys based on carbides, oxides, borides, nitrides or silicides, e.g. cermets, or other metal compounds, e. g. oxynitrides, sulfides
C22C 29/06 - Alloys based on carbides, oxides, borides, nitrides or silicides, e.g. cermets, or other metal compounds, e. g. oxynitrides, sulfides based on carbides or carbonitrides based on carbides, but not containing other metal compounds
The invention relates to a milling tool (100) having a milling tool main element (10) which has a first end (11) with an interface for connection to a machine-side tool holder, and a free second end (12) with at least one seat (13) for receiving an exchangeable cutting insert (1). The following are arranged at the seat (13): a first support element (21) for supporting a first side face of the cutting insert (1), which first support element is reversibly fastened to the milling tool main element (10) by means of a first fastening element (21a), a second support element (22) for supporting a second side face of the cutting insert (1), which second support element is reversibly fastened to the milling tool main element (10) by means of a second fastening element (22a), and a third support element (23) for supporting an underside of the cutting insert (1), which third support element is reversibly fastened to the milling tool main element (10) by means of a third fastening element (23a).
A method for producing a main body composite (1, 11, 16) for a cutting tool, comprising the method steps: a) providing a rear main body (3, 12, 17), b) additively manufacturing a front main body (4, 13, 18) on the rear main body (3, 12, 17), c) removing material from the front main body (4, 13, 18) and the rear main body (3, 12, 17), in each case adjoining an interface (8, 10, 15) formed in step b) between the front main body (4, 13, 18) and the rear main body (3, 12, 17).
B22F 7/06 - Manufacture of composite layers, workpieces, or articles, comprising metallic powder, by sintering the powder, with or without compacting of composite workpieces or articles from parts, e.g. to form tipped tools
B22F 7/08 - Manufacture of composite layers, workpieces, or articles, comprising metallic powder, by sintering the powder, with or without compacting of composite workpieces or articles from parts, e.g. to form tipped tools with one or more parts not made from powder
B22F 10/28 - Powder bed fusion, e.g. selective laser melting [SLM] or electron beam melting [EBM]
B22F 10/66 - Treatment of workpieces or articles after build-up by mechanical means
B23B 27/10 - Cutting tools with special provision for cooling
B23B 27/14 - Cutting tools of which the bits or tips are of special material
A spot-welding electrode cap extends along a longitudinal axis and has an end side with a central cap contact surface and with a transition section connecting directly radially and tangentially to the cap contact surface. The transition section is configured to be convexly curved with a radially outwardly continuously increasing curvature.
Powder-metallurgical sintered body made of a molybdenum alloy having a rhenium content between 25% by weight and 45% by weight and a boron content between 1 ppm and 100 ppm, wherein the complement to 100% by weight is formed by molybdenum and unavoidable impurities, where said impurities are composed of metallic and nonmetallic impurities, wherein a total content of metallic impurities is not more than 1000 ppm and a content of nonmetallic impurities is not more than 50 ppm per element.
A cutting tool has a tool body and a multilayer coating. The multilayer coating protects the tool body against wear during cutting. The multilayer coating has zirconium nitride layers and further nitride layers. The further nitride layers are alternatingly stacked with the zirconium nitride layers, such that each of the further nitride layers carries one of the zirconium nitride layers. The further nitride layers have an atomic composition of (Ti1-x-yAlxMey)Nα, wherein at least one of the zirconium nitride layers is thicker than one of the further nitride layers which carries the thicker zirconium nitride layer.
B23B 27/14 - Cutting tools of which the bits or tips are of special material
C22C 29/02 - Alloys based on carbides, oxides, borides, nitrides or silicides, e.g. cermets, or other metal compounds, e. g. oxynitrides, sulfides based on carbides or carbonitrides
C23C 14/06 - Coating by vacuum evaporation, by sputtering or by ion implantation of the coating forming material characterised by the coating material
C23C 14/54 - Controlling or regulating the coating process
The invention relates to a composite main body for a cutting tool (100), said composite main body comprising: a carrier main body (2) that is made of a steel with a carbon content of 0.2 to 0.65 percent by weight carbon; and a tool head main body (3) that is made of a precipitation-hardened maraging steel and is seamlessly and integrally bonded to the carrier main body (2), wherein the tool head main body (3), with respect to the carrier main body (2), has an HRC Rockwell hardness that is up to 11% greater or up to 11% smaller as measured by the standard Rockwell hardness scale HRC.
B22F 7/08 - Manufacture of composite layers, workpieces, or articles, comprising metallic powder, by sintering the powder, with or without compacting of composite workpieces or articles from parts, e.g. to form tipped tools with one or more parts not made from powder
B22F 10/28 - Powder bed fusion, e.g. selective laser melting [SLM] or electron beam melting [EBM]
B22F 10/64 - Treatment of workpieces or articles after build-up by thermal means
B23P 15/28 - Making specific metal objects by operations not covered by a single other subclass or a group in this subclass cutting tools
A component having a solid structure of an alloy which, as a main component, contains a refractory metal (RM) from the group of molybdenum and tungsten and, as a further component, boron (B) and optionally carbon (C). The solid structure is manufactured additively by laser beam or electron beam, and the solid structure has regions made of the RM or a mixed crystal of the RM and the regions are at least partially delimited by (RM)2B, where B in (RM)2B can be partially replaced by C.
A composite element (1) having a main part (2) made of a molybdenum-based material, on at least portions of which a tungsten-carbide-containing coating (3) is formed, the coating (3) having a microstructure that essentially consists of microcrystalline and/or nanocrystalline tungsten carbide grains.
PLANSEE SHANGHAI HIGH PERFORMANCE MATERIAL LTD (China)
PLANSEE SE (Austria)
Inventor
Thomas, Scherer
Cai, Yongyue
Christian, Linke
Hennrik, Schmidt
Sun, Yi
Abstract
The invention relates to a sputtering target, produced by powder metallurgy comprising tungsten (W), nickel (Ni) and one further metal X selected from the group consisting of group 5 or group 6 of the periodic table, as well as inevitable impurities, wherein the sputtering target has a two-phase microstructure, wherein one phase is pure W and the other phase is a mixed phase selected from the group of NiWX, NiW, NiX and mixtures thereof. The invention further relates to a process for producing a WNiX sputtering target via the powder-metallurgical route.
The invention relates to a target (1) comprising a target material and a supporting element connected thereto, characterized in that the target material is designed as an outer ring (3), wherein the outer ring (3) is divided in the circumferential direction into two or more segments (2), which consist of a brittle material with a plastic elongation at break at 20°C of less than or equal to 2%, wherein the supporting element is designed as an inner ring (4) and consists of copper or a copper alloy, and also relates to a method for producing such a target (1).
Material for additive extrusion-based component production consisting of: a percent by volume of sinterable filler material, b percent by volume of thermoplastic cellulose and c percent by volume of additive material, wherein a is in the range from 20 to 70 and b is in the range from 75 to 30 and c = (100 - a - b).
B22F 1/10 - Metallic powder containing lubricating or binding agentsMetallic powder containing organic material
B22F 10/18 - Formation of a green body by mixing binder with metal in filament form, e.g. fused filament fabrication [FFF]
B28B 1/00 - Producing shaped articles from the material
B28B 3/20 - Producing shaped articles from the material by using pressesPresses specially adapted therefor wherein the material is extruded
B29C 64/118 - Processes of additive manufacturing using only liquids or viscous materials, e.g. depositing a continuous bead of viscous material using filamentary material being melted, e.g. fused deposition modelling [FDM]
D01F 2/00 - Monocomponent artificial filaments or the like of cellulose or cellulose derivativesManufacture thereof
D01F 8/02 - Conjugated, i.e. bi- or multicomponent, man-made filaments or the likeManufacture thereof from cellulose, cellulose derivatives, or proteins
C04B 35/584 - Shaped ceramic products characterised by their compositionCeramic compositionsProcessing powders of inorganic compounds preparatory to the manufacturing of ceramic products based on non-oxides based on borides, nitrides or silicides based on silicon nitride
32.
SPUTTERING TARGET AND PROCESS FOR PRODUCING THE SAME
PLANSEE SHANGHAI HIGH PERFORMANCE MATERIAL LTD (China)
PLANSEE SE (Austria)
Inventor
Cai, Yongyue
Sun, Yi
Hennrik, Schmidt
Thomas, Scherer
Abstract
The present disclosure provides a sputtering target and a manufacturing method thereof, wherein the sputtering target contains 55%to 80%by weight of Ni, a balance of W, and normal impurities, and wherein the sputtering target contains a W phase, a Ni (W) solid solution phase, no pure Ni phase and no or less than 5%by area on average of intermetallic phases measured at a cross section of the target material.
B22F 3/18 - Manufacture of workpieces or articles from metallic powder characterised by the manner of compacting or sinteringApparatus specially adapted therefor by using pressure rollers
C22C 1/04 - Making non-ferrous alloys by powder metallurgy
C22C 1/047 - Making non-ferrous alloys by powder metallurgy comprising intermetallic compounds
B22F 3/24 - After-treatment of workpieces or articles
B22F 3/105 - Sintering only by using electric current, laser radiation or plasma
B22F 3/17 - Manufacture of workpieces or articles from metallic powder characterised by the manner of compacting or sinteringApparatus specially adapted therefor by forging
B22F 3/04 - Compacting only by applying fluid pressure
C22C 19/03 - Alloys based on nickel or cobalt based on nickel
C22F 1/10 - Changing the physical structure of non-ferrous metals or alloys by heat treatment or by hot or cold working of nickel or cobalt or alloys based thereon
C22F 1/18 - High-melting or refractory metals or alloys based thereon
Plansee Shanghai High Performance Material Ltd. (China)
Plansee SE (Austria)
Plansee Japan Ltd. (Japan)
Inventor
Chen, Chao
Lu, Jiandong
Linke, Christian
Kuniya, Tsutomu
Schmidt, Hennrik
Abstract
A sputtering target includes a tubular backing tube which has an axis which is defined as an axial direction, and a plane in which a radial direction lies is perpendicular to the axial direction. A cylindrical target segment is arranged on the tubular backing tube extends along the axial direction through at least 90% of length of the cylindrical target segment. A bonding material is arranged between the tubular backing tube and the target segment. The sputtering target includes a stop member for a target segment adjacent to the stop member, the stop member is monolithically formed with and radially protruding along the tubular backing tube at an axial end region of the tubular backing tube and extending along a part of a circumference of the tubular backing tube. A circumferential sealing member is inserted between the stop member and the target segment to prevent leakage of the bonding material.
The invention relates to a gas passage module for installation in a radiation shield (3) of a high-temperature furnace (1), wherein the gas passage module (2) has a plurality of planar guiding devices (6) which are spaced apart from one another and extend at least in part between two opposing walls (7, 72), wherein at least some of the guiding devices (6) form, with at least part of the walls (7, 72), at least one channel (K) through which gas (G) can flow along a longitudinal axis (L) of the gas passage module (2) at least temporarily and/or at least in sections, wherein the guiding devices (6) extend, at least temporarily and/or at least in sections, obliquely to the longitudinal axis (L) so as to substantially prevent direct passage of radiation through the gas passage module (2).
A brake disc, also referred to as a rotor, for a disc brake has the function of interacting with a brake lining as a friction partner in the disc brake. The brake disc is formed at least in part of a material having a molybdenum content of ≥50 wt. %.
A superalloy target wherein the superalloy target has a polycrystalline structure of random grain orientation, the average grain size in the structure is smaller than 20 μm, and the porosity in the structure is smaller than 10%. Furthermore, the invention includes a method of producing a superalloy target by powder metallurgical production, wherein the powder-metallurgical production starts from alloyed powder (s) of a superalloy and includes the step of spark plasma sintering (SPS) of the alloyed powder (s).
C22C 1/04 - Making non-ferrous alloys by powder metallurgy
B22F 3/087 - Compacting only using high energy impulses, e.g. magnetic field impulses
B22F 3/105 - Sintering only by using electric current, laser radiation or plasma
B22F 5/04 - Manufacture of workpieces or articles from metallic powder characterised by the special shape of the product of turbine blades
B22F 9/04 - Making metallic powder or suspensions thereofApparatus or devices specially adapted therefor using physical processes starting from solid material, e.g. by crushing, grinding or milling
B32B 15/00 - Layered products essentially comprising metal
B32B 15/01 - Layered products essentially comprising metal all layers being exclusively metallic
C22C 1/047 - Making non-ferrous alloys by powder metallurgy comprising intermetallic compounds
C22C 19/03 - Alloys based on nickel or cobalt based on nickel
C22C 19/07 - Alloys based on nickel or cobalt based on cobalt
C23C 14/00 - Coating by vacuum evaporation, by sputtering or by ion implantation of the coating forming material
C23C 14/02 - Pretreatment of the material to be coated
C23C 28/00 - Coating for obtaining at least two superposed coatings either by methods not provided for in a single one of main groups , or by combinations of methods provided for in subclasses and
C23C 28/02 - Coating for obtaining at least two superposed coatings either by methods not provided for in a single one of main groups , or by combinations of methods provided for in subclasses and only coatings of metallic material
C23C 28/04 - Coating for obtaining at least two superposed coatings either by methods not provided for in a single one of main groups , or by combinations of methods provided for in subclasses and only coatings of inorganic non-metallic material
C23C 30/00 - Coating with metallic material characterised only by the composition of the metallic material, i.e. not characterised by the coating process
F01D 5/28 - Selecting particular materialsMeasures against erosion or corrosion
F01D 25/00 - Component parts, details, or accessories, not provided for in, or of interest apart from, other groups
22522222253253326543225325332535432253325322, in addition to unavoidable impurities, wherein the content of the silicon in the target material amounts to 1-30 at%. The invention also relates to a method for producing an evaporation source of this kind.
C04B 35/58 - Shaped ceramic products characterised by their compositionCeramic compositionsProcessing powders of inorganic compounds preparatory to the manufacturing of ceramic products based on non-oxides based on borides, nitrides or silicides
38.
SPUTTERING TARGET AND METHOD FOR MANUFACTURING THE SAME
PLANSEE SHANGHAI HIGH PERFORMANCE MATERIAL LTD. (China)
PLANSEE SE (Austria)
PLANSEE JAPAN LTD. (Japan)
Inventor
Chen, Chao
Lu, Jiandong
Linke, Christian
Schmidt, Hennrik
Kuniya, Tsutomu
Abstract
A sputtering target includes a tubular backing tube having an axis defined as an axial direction, and a plane in which a radial direction lies perpendicular to the axial direction. At least two cylindrical target segments are juxtaposed along the axial direction on the tubular backing tube and bonding material is placed between the tubular backing tube and the cylindrical target segments. At least two ends of the cylindrical target segments facing each other form a tongue-groove-fit with each other in such a way that at least one tongue at one end is overlapped with at least one groove at a respective other end of two adjacent cylindrical target segments, as viewed in the radial and/or the axial direction. The overlap extends at least along a part of a circumference of the corresponding end. A method for manufacturing a sputtering target is also provided.
A ceramic holding element for a high-temperature furnace includes at least one fastening portion formed on a part of the holding element surface for mechanically connecting the holding element to a supporting structure. At least one heat conductor receiving portion on a part of the holding element surface receives a heat conductor. At least one groove is formed on a peripheral part of the surface of the holding element between the fastening portion and the heat conductor receiving portion. The groove extends substantially over the entire periphery of the peripheral part and at least one imaginary path between the fastening portion and the heat conductor receiving portion along the holding element surface crosses the groove. The groove has an aspect ratio, formed by a depth to width ratio of the groove, being greater than or equal to 1.5.
A tool main body (1) produced by powder metallurgy for a rotational tool, comprising a cutting portion (2) and a shaft portion (3), wherein the circumference of the tool main body (1) is machined at least in sections, with a recess (4) which is formed on the shaft portion (3), is designed at least in sections as a functional face of a pull-out and/or twist guard, and the surface of which is at least partially covered by a sintered surface.
A cutting element has a cutting head and a shaft. The cutting head is carried by the shaft and protrudes over the shaft transversely relative to a longitudinal extent of the shaft. The cutting head has a cutting edge, the cutting edge follows a circle segment with a circle center at a side of the shaft located in a virtual cutting head plane and is constructed symmetrically, when viewed in a direction perpendicular to the cutting head plane, with respect to a virtual cutting edge axis of symmetry which is contained in the cutting head plane. The cutting head has a chip guiding structure. The chip guiding structure is associated with the cutting edge, has a chip guiding groove and a plurality of chip guiding elements. Each chip guiding element has a longitudinal rib and a transverse rib.
The invention relates to an X-ray rotating anode for generating X-rays, comprising a carrier body and at least one annular focal track coating extending along a focal track on the carrier body, wherein the carrier body is made of Mo or a Mo-based alloy and the at least one annular focal track coating is made of W or a W-based alloy, characterised in that the focal track coating has a first layer and a second layer lying directly on same in a perpendicular direction to the focal track surface starting from the carrier body, wherein the first layer has a grain structure that differs from the second layer.
The invention relates to a method for turning in a processing machine with a tool (100) which has a tool holder (1) held in a machine-side receptacle with an exchangeable cutting insert (1) fastened thereon which has at least one cutting edge section (22; 22'; 22"), which can be used for turning a workpiece (W) rotating about a rotational axis and has at least one rounded cutting corner region (22a) and at least one straight first cutting edge region (22b) adjacent thereto, such that an angle of incidence (κ) enclosed by the first cutting edge region (22b) with the rotational axis (Z) of the workpiece (W) is varied by way of a rotation of the tool holder (1) about its longitudinal axis (L) or an axis parallel thereto. Correction data (Δx, Δy, Δz, Δr), which represent tolerance-related position deviations of the cutting edge portion (22; 22'; 22"), are measured individually for a plurality of different angles of incidence (κ) and a controlling of the tool (1) during turning is corrected based on the correction data (Δx, Δy, Δz, Δr) depending on the angle of incidence (K).
B23B 27/16 - Cutting tools of which the bits or tips are of special material with exchangeable cutting bits, e.g. able to be clamped
B23Q 17/22 - Arrangements for indicating or measuring on machine tools for indicating or measuring existing or desired position of tool or work
G05B 19/402 - Numerical control [NC], i.e. automatically operating machines, in particular machine tools, e.g. in a manufacturing environment, so as to execute positioning, movement or co-ordinated operations by means of programme data in numerical form characterised by control arrangements for positioning, e.g. centring a tool relative to a hole in the workpiece, additional detection means to correct position
G05B 19/404 - Numerical control [NC], i.e. automatically operating machines, in particular machine tools, e.g. in a manufacturing environment, so as to execute positioning, movement or co-ordinated operations by means of programme data in numerical form characterised by control arrangements for compensation, e.g. for backlash, overshoot, tool offset, tool wear, temperature, machine construction errors, load, inertia
A shouldering insert (1) having a top surface (2), a bottom surface (2a) and a peripheral surface (9) between the top surface (2) and the bottom surface (2a), characterized in that a top cutting region (200) is shaped by the peripheral surface (9) and the top surface (2) and in that a bottom cutting region (200a) is shaped by the peripheral surface (9) and the bottom surface (2a), wherein within the shouldering insert (1) the top cutting region (200) is indexable only with the bottom cutting region (200a).
A component formed of a refractory metal has a surface that is at least partially coated with a layer of yttria. There is also described a method of manufacturing a coated component, and the application of Y2O3 as a release agent in high temperature applications.
A component formed of a refractory metal has a surface that is at least partially coated with a layer of titanium diboride. There is also described a method of manufacturing the component and the application of TiB2 as a release agent in high-temperature applications.
The invention relates to a supporting frame for holding a radiation shield (2, 110) for a high-temperature furnace (100), wherein the supporting frame (1) is designed to connect the radiation shield (2, 110) to a wall (3, 120) of the high-temperature furnace and to space the radiation shield (2, 110) from the wall (3, 120) at a normal distance (n), and the supporting frame (1) has at least one holding element (4) which is inclined in relation to a normal distance direction (N) at an angle (α) at least in sections between the radiation shield (2, 110) and wall (3, 120) and is designed to be rotatable and/or flexible at least in sections in such a way that a lateral expansion of the radiation shield (2, 110) brings about an increase in the angle (α) and therefore a reduction in the normal distance (n).
CERATIZIT HARD MATERIAL SOLUTIONS S.À R.L. (Luxembourg)
CERATIZIT LUXEMBOURG S.À.R.L. (Luxembourg)
Inventor
Buono, Robin
Laschiazza, Cecilio
Magin, Michael
Picco, Luca
Abstract
characterized in thatcharacterized in that the masonry drill head has an at least section-wise planar joining end for heat induced joining to a shaft, a working end (104) for shattering masonry material under a percussive motion, at least two conveying webs (101a, 101b) each emerging from the joining end and at least two conveying grooves each extending between two of the conveying webs (101a, 101b), wherein a cross-sectional solid material area of the masonry drill head increases towards the joining end, such that a masonry material debris intake of at least one of the conveying grooves increases towards the working end (104).
B28D 1/14 - Working stone or stone-like materials, e.g. brick, concrete, not provided for elsewhereMachines, devices, tools therefor by boring or drilling
06 - Common metals and ores; objects made of metal
Goods & Services
Components of refractory metals with anti-oxidation coatings for high-temperature applications, namely, wrought, semi-wrought and shaped pieces made of refractory metals, bars, rods, slabs, billets, ingots, sheets, plates, tubes, rings, pipes, strips and foils, metal screws, metal nuts, metal rivets, metal nozzles and metal discs; components for equipment used in the glass industry, air and space travel, and furnace construction, namely, refractory furnace linings of metal, metal furnace grates and screens, reinforcement materials of refractory metal, glass melting electrodes, stirrers and plungers, throat protection, cross wall protection, bubbler protection, furnace components, namely shielding, hot zones, and heating conductors, tools for aircraft and aerospace construction.
A side milling cutter includes a main body extending along an axis from a first end with an interface for connection to a rotational drive to a free second end, receiving a bearing face for a disc-shaped cutter holder. The cutter holder is fastened to the second end and supported with a first main surface, facing the main body, on the bearing face, having an outer circumference projecting radially from the main body and a central through opening penetrating the cutter holder axially. Coolant feed channels feeding coolant to the second end are in the main body. Coolant distributing channels feeding coolant to the outer circumference of the cutter holder are in the cutter holder. At least two coolant distributing channels branch off from a common coolant distributing chamber between the main body and the cutter holder and into which at least two of the coolant feed channels open.
A tool for cutting processing has a base member which has a rotation axis about which the tool rotates during operation, a seat which is formed on the base member for receiving a replaceable cutting insert, a securing screw for securing the cutting insert to the seat, and a cutting insert which is secured to the seat. The seat has a base face for supporting a lower side of the cutting insert, a first lateral abutment face which supports the cutting insert in a radially inward direction, and a second lateral abutment face which supports the cutting insert axially and in a radially outward direction and a hole for receiving the securing screw is formed in the base face. The hole has with spacing from the base face a threaded hole and closer in the direction of the base face a thread-free hole portion.
The invention relates to an X-ray rotating anode analysis system (54) for analysing a used X-ray rotating anode (33) having a circumferential focal track (40) on a surface section thereof. The X-ray rotating anode analysis system (54) has a positioning device (56) for the X-ray rotating anode (33), an imagine-capturing unit (58), and a data processing unit (64) coupled to the image-capturing unit (58). The positioning device (56) and the image-capturing unit (58) are designed in such a way that the X-ray rotating anode (33) can be positioned as an individual component in a predetermined position relative to the image-capturing unit (58). The image capturing unit (58) and the data processing unit (64) are designed in such a way that a three-dimensional elevation profile of a surface section of the X-ray rotating anode (33) in the region of its focal track (40) can be detected by the image-capturing unit (58) and the data processing unit (64), and, from the detected three-dimensional elevation profile or from a part thereof, an expected radiant power or a characteristic variable for same of the X-ray rotating anode (33) can be determined by the data processing unit (64).
A high-temperature forming tool is formed at least partly of a molybdenum-based alloy having a fraction of molybdenum of ≥90 wt. %. The molybdenum-based alloy is in a pressed-and-sintered state and in the pressed-and-sintered state has a thermal shock resistance of at least 250 K. The thermal shock resistance is defined as the quotient of ReH/(α·E), where ReH is the yield point at room temperature in MPa, a is the thermal expansion coefficient in 1/K and E is the elasticity modulus in MPa.
B21B 25/00 - Mandrels for metal tube rolling mills, e.g. mandrels of the types used in the methods covered by group Accessories or auxiliary means therefor
The invention relates to a milling tool (100) having a milling tool main element (10) which has a first end (11) with an interface for connection to a machine-side tool holder, and a free second end (12) with at least one seat (13) for receiving an exchangeable cutting insert (1). The following are arranged at the seat (13): a first support element (21) for supporting a first side face of the cutting insert (1), which first support element is reversibly fastened to the milling tool main element (10) by means of a first fastening element (21a), a second support element (22) for supporting a second side face of the cutting insert (1), which second support element is reversibly fastened to the milling tool main element (10) by means of a second fastening element (22a), and a third support element (23) for supporting an underside of the cutting insert (1), which third support element is reversibly fastened to the milling tool main element (10) by means of a third fastening element (23a).
A casting insert includes a casting insert wall formed substantially of a liquid-phase-sintered refractory metal alloy, a cavity formed by the casting insert wall, and at least one cooling duct, which is different from the cavity and which is formed at least partly within the cavity and/or which is formed at least partly within the casting insert wall. The casting insert wall has a wall thickness which can be defined as a normal distance between a point of the casting insert wall which faces the cavity and a point on an outer surface of the casting insert wall. The wall thickness is, at least in sections, less than 25% of a diameter of the casting insert.
B22D 17/22 - DiesDie platesDie supportsCooling equipment for diesAccessories for loosening and ejecting castings from dies
B22D 17/20 - AccessoriesPressure die casting or injection die casting, i.e. casting in which the metal is forced into a mould under high pressure Details
The invention relates to a rotor component for a rotary x-ray anode, said component having a carrier body and a spray coating, wherein the carrier body is made from one of the following materials, consisting of refractory metal, a refractory metal-based alloy, iron, an iron-based alloy or combinations thereof, and the spray coating consists of copper or a copper-based alloy, wherein the carrier body is materially bonded to the spray coating at least in sections at a connecting surface, characterised in that the microstructure of the rotor component has no transition region at the connecting surface between carrier body and spray coating.
The invention provides a cutting tool (100), comprising a main body (1), which extends along a longitudinal axis (L) and has a first end (11) for connection to a tool receptacle and a free second end (12), the main body (1) having a clamping groove (13) which extends from the second end (12) over a part of the axial length toward the first end (11) and extends, in a section perpendicular to the longitudinal axis (L), over an angular range (α) of less than 180°, such that a remaining rib region (14) of the main body (1) extends over an angular range (θ) of more than 180°, a seat (15) being formed at the second end (12), adjacently to the clamping groove (13), for receiving an exchangeable cutting insert (50) in such a way that the latter protrudes from the second end (12) in an axial direction and in a radial direction, and a damping mechanism (20) being arranged in the rib region (14) of the main body (1) at the axial height of the seat (15), in a recess (16), and having a spring-mounted and dampingly mounted mass body (21).
A high-temperature component made of a refractory metal or a refractory metal alloy, includes a coating for increasing thermal emissivity. The coating is formed substantially of tungsten and rhenium, i.e. of at least 55 wt. % rhenium and at least 10 wt. % tungsten, and has a Re3W phase of at least 35 wt. %. A process for producing a high-temperature component having a coating for increasing thermal emissivity, is also provided.
C23C 24/00 - Coating starting from inorganic powder
H01J 1/142 - Solid thermionic cathodes characterised by the material with alkaline-earth metal oxides, or such oxides used in conjunction with reducing agents, as an emissive material
H01J 9/04 - Manufacture of electrodes or electrode systems of thermionic cathodes
H01J 61/073 - Main electrodes for high-pressure discharge lamps
A milling tool includes a cutting insert, a holder, a fastener and a shim. The fastener forms a first channel cooperatively with the cutting insert. The first channel is configured to direct coolant towards a top side of the insert. In order to better prevent thermal fatigue of the cutting insert under milling conditions, the shim includes a second channel configured to direct coolant towards a clearance side of the cutting insert. A method of using a milling tool and a milling process are also provided.
The invention relates to a spot-welding electrode cap which extends along a longitudinal axis and has an end side with a central cap contact surface and with a transition section connecting directly radially and tangentially to the cap contact surface, wherein the transition section is designed to be convexly curved with a radially outwardly continuously increasing curvature.
1‐x‐yxyαα, wherein at least one of the zirconium nitride layers (4) is thicker than one of the further nitride layers (5) which carries said thicker zirconium nitride layer (4).
C23C 28/04 - Coating for obtaining at least two superposed coatings either by methods not provided for in a single one of main groups , or by combinations of methods provided for in subclasses and only coatings of inorganic non-metallic material
C23C 14/06 - Coating by vacuum evaporation, by sputtering or by ion implantation of the coating forming material characterised by the coating material
C23C 28/00 - Coating for obtaining at least two superposed coatings either by methods not provided for in a single one of main groups , or by combinations of methods provided for in subclasses and
C23C 30/00 - Coating with metallic material characterised only by the composition of the metallic material, i.e. not characterised by the coating process
C23C 14/32 - Vacuum evaporation by explosionVacuum evaporation by evaporation and subsequent ionisation of the vapours
A cutting insert, for producing a V-shaped profile in a workpiece by radial piercing relative to an axis of rotation of the workpiece, includes a reference plane and a V-shaped insertion region. The V-shaped insertion region includes, inter alia, two cutting edges in the reference plane, a rake face and a plurality of elongated chip-guiding depressions in the rake face, each extending in parallel with a depression axis of extent or extension axis in the reference plane, providing improved chip formation compared to the prior art. The depression axes of extent or extension axes each extend at a recess chip-guiding angle in a region of 0° to 45°. A method of using the cutting insert and the workpiece at a standstill and a machining method are also provided.
A cobalt-free, tungsten carbide-based cemented carbide material includes 70-97 wt % of hard substance particles formed at least predominantly by tungsten carbide, and 3-30 wt % of a metallic binder which is an iron-nickel-based alloy. The iron-nickel-based alloy includes at least iron, nickel and chromium, with a ratio of Fe to (Ni+Fe) of 0.70≤Fe/(Fe+Ni)≤0.95; a Cr content of 0.5 wt %≤Cr/(Fe+Ni+Cr) and (i) for the range 0.7≤Fe/(Fe+Ni)≤0.83: Cr/(Fe+Ni+Cr)≤(−0.625*(Fe/(Fe+Ni))+3.2688) wt %; (ii) for the range 0.83≤Fe/(Fe+Ni)≤0.85: Cr/(Fe+Ni+Cr)≤(−27.5*(Fe/(Fe+Ni))+25.575) wt %; and (iii) for the range 0.85≤Fe/(Fe+Ni)≤0.95: Cr/(Fe+Ni+Cr)≤2.2 wt %; an optional Mo content, an optional V content, and unavoidable impurities up to in total not more than 1 wt % of the cemented carbide material.
C22C 29/08 - Alloys based on carbides, oxides, borides, nitrides or silicides, e.g. cermets, or other metal compounds, e. g. oxynitrides, sulfides based on carbides or carbonitrides based on carbides, but not containing other metal compounds based on tungsten carbide
C22C 1/051 - Making hard metals based on borides, carbides, nitrides, oxides or silicidesPreparation of the powder mixture used as the starting material therefor
C22C 29/00 - Alloys based on carbides, oxides, borides, nitrides or silicides, e.g. cermets, or other metal compounds, e. g. oxynitrides, sulfides
C22C 38/44 - Ferrous alloys, e.g. steel alloys containing chromium with nickel with molybdenum or tungsten
C22C 38/46 - Ferrous alloys, e.g. steel alloys containing chromium with nickel with vanadium
65.
Machining tool and method for indexing a cutting insert
A machining tool includes a tool carrier with at least one seat receiving an exchangeable, indexable cutting insert. A fastening screw fastening cutting insert to seat has a head section for support on the cutting insert and a shaft section at least regionally having an external screw thread. The seat has a contact face supporting an underside of the cutting insert and at least one lateral bearing face supporting a side surface of the cutting insert. A through-hole is formed in the contact face, through which the shaft portion of the fastening screw extends. A clamping element is disposed on the tool carrier on the rear side of the contact face of the seat, in which an internal screw thread is formed, cooperating with the external screw thread of the fastening screw. The fastening screw and the clamping element can be jointly displaced in a displacement direction.
01 - Chemical and biological materials for industrial, scientific and agricultural use
06 - Common metals and ores; objects made of metal
07 - Machines and machine tools
08 - Hand tools and implements
35 - Advertising and business services
Goods & Services
Chemicals used in industry, science and photography, as well
as in agriculture, horticulture and forestry; unprocessed
artificial resins, unprocessed plastics; fertilizers; fire
extinguishing compositions; tempering and soldering
preparations; chemical substances for preserving foodstuffs;
tanning substances; adhesives for industrial purposes;
compositions for the manufacture of technical ceramics;
thallium; oxides; metallic oxides; cobalt oxides for
industrial purposes; aluminium oxides (alumina); titanium
oxides; tungsten oxides; thallium oxides; ceramic
compositions for sintering (granules and powders); ceramic
materials in granule form for use in industry; chemical
reagent mixtures other than for medical or veterinary use;
carbides; tungsten carbide; ceramic frits; wear resistant
ceramic compounds; compositions for the manufacture of
industrial or technical ceramics and of carbides; chemical
materials for the manufacture of ceramic materials; ceramic
materials in granule form, in paste form or in the form of
powder, for use in industry. Common metals and their alloys; building materials of metal,
buildings, transportable, of metal; railway material of
metal; non-electric cables and wires of common metal;
ironmongery, small items of metal hardware; pipes of metal;
safes; ores of metal; hard metals and hard metal alloys;
cermet; laminated composite materials produced from
superimposing layers of metal or metal alloys; extruded hard
metal shanks; mandrels of extruded hard metal; cobalt, raw;
tungsten; tungsten ores; aluminium; titanium; semi-worked
products made of metal, of metal alloys, of composite layers
of metal or of metal alloys, of cermet; sintered hard
metals; balls of metal; balls of cemented carbide and of
cemented carbide; balls of reinforced metal alloys; balls
for bearings; metal billets; pipes and tubes of metal, and
couplings of metal for tubing; boards and sheets of metal
for use in the industry or in manufacturing; nozzles of
metal; bolts of metal; frameworks of metal; brads and tacks
of metal; threads of metal; washers of metal; steel in
sheet, rod, bar and billet form; bars for metal railings;
metal grinding rods; extruded hard metal rods. Machine tools; motors, other than for land vehicles; machine
coupling and transmission components (except for land
vehicles); agricultural implements other than hand-operated;
cutting machines and machine tools and power tools for
turning, milling and drilling metal, wood and plastic;
machines tools and power tools for working with wood or with
stone, as part of crushing machines and/or machines for
repair purposes; drills (power tools); stamping machines and
presses [machines]; parts of sawing machines, namely, power
saw blades; paper machines, papermaking machines; moulds
(parts of machines used for processing metals); wearing
parts (parts of tools and aforesaid machine tools) made of
hard metals, of cermet made of ceramic materials or of very
hard materials like tungsten; tool holders for machines and
for machine tools; paper cutting machines; tool sets (other
than hand tools) for machines and machine tool sets, also
automated; clamping devices as part of machine tools and/or
workpieces; all the aforesaid goods being machine parts;
machine tools and power tools for processing materials, in
particular turning tools, plug-in tools, thread cutting
tools, borers, milling machines, milling cutters, saws,
friction tools, sink tools and cutting machines; parts for
the aforesaid tools, in particular replaceable cutters of
high-speed steel, hard metal, cermet, synthetic, ceramic or
other cutting materials; cutting inserts (parts of
machines); wear plates for machines; wear segments for
crushers; casing rings (parts of machines); cemented carbide
tips; brake linings other than for vehicles; gear-hobbing
machines; spray nozzles (parts of machines); nozzles being
parts of power-operated sprayers; drilling rods; engine
rods; piston rods; bearing end rods; connecting rods for
machines, motors and engines; blanking presses; electric
knives; knife blades for electric knives; knives (parts of
machines); cutter bar knives (parts of machines). Hand tools and implements (hand-operated); cutlery; side
arms, other than firearms; razors; knives (hand tools);
choppers; trimming knives; trimmers [hand tools];
hand-operated abrading tools; abrasive grinding wheels
(parts of hand-operated tools); hand-operated scissors and
knife sharpeners; hand-operated reamers; borers; picks (hand
tools); cutter bars; crow bars; bush hammers [hammers for
dressing stone]; steel brushes (hand-operated tools);
graving tools; scissors; shears; metal cutting scissors (tin
shears); spanners; stone crushers; wire and tube cutters;
glass cutters; cutting discs, being hand-operated tools or
parts of hand-operated tools; drill bits for use with hand
tools; milling cutters (hand tools); countersinking tools
for hand-operated tools; claws (hand tools); engravers and
engraving needles; broadaxes, axes; harpoons; blades, namely
shear blades, razor blades, saw blades, hacksaw blades,
crosscut saw blades, jigsaw blades; files (tools); metal
vice jaws; expanders (hand tools); drill chucks and
self-centering chucks (parts of hand-operated tools);
hammers, mallets and sledge hammers; stone hammers
(hand-operated tools); bits (part of hand tools); sharpening
wheels (hand tools); mortars and pestles; boring tools
(hand-operated tools); cutting, drilling, grinding,
sharpening and surface treatment hand tools; planing tools,
namely, planes, plane irons and planing blades; nippers
(hand-operated tools); punches (hand tools); planes, rasps
(hand tools); spatulas (hand tools); cutting inserts for use
with hand tools; abrasive discs (parts for hand-operated
tools); polishing discs (being hand-operated tools or parts
of hand-operated tools). Advertising; business management; business administration;
office functions; publicity columns preparation;
dissemination and distribution of advertising matter
(leaflets, pamphlets, printed matter, samples); document
reproduction; distribution of samples; business organization
consultancy; updating of advertising material; dissemination
of advertising matter; publication of publicity texts;
online advertising on a computer network; advertising by
mail order; radio advertising; business management
assistance; public relations; business inquiries; television
advertising; bill-posting; demonstration of goods;
organization of exhibitions for commercial or advertising
purposes; organization of trade fairs for commercial or
advertising purposes; presentation of goods on communication
media, for retail purposes; retail sale services and
wholesale services (also provided online) in relation to the
sale of hand operated tools, of cutting tools, of tools and
machines for turning, milling and drilling, of parts and
wearing parts of machines and tools, of knifes, scissors,
blades, metals, metal alloys, composite materials,
semi-worked products of metal for use in industry, of
chemicals used in industry, of oxides and ceramic materials,
tips for ballpoint pens, housings for watches and clocks and
small items made of metal and metal alloys for use in
industry; dissemination of commercial information; providing
online commercial information directories through the
Internet; commercial information and advice for consumers
(consumer advice shop); business management in the field of
transport and delivery of goods.
A rotating X-ray anode for generating X-radiation has an annular main body made of carbon-based material, an annular focal track covering, which is arranged on a focal track side of the main body, and a metal connection component, which is arranged radially inside relative to the main body. A radially outer portion of the connection component is formed by a tubular metal adapter. The radial outside surface of the adapter is at least partly joined, face to face and integrally, to at least a portion of the radial inside surface of the main body. An integral joining zone between the main body and the adapter extends over at least 75 percent of the area of the radial inside surface of the main body.
A focusing tube is configured to focus a high-pressure liquid jet containing abrasive particles. The focusing tube has a focusing duct portion and an exit opening for the free discharge of the liquid jet from the focusing duct portion. A center point of the discharge opening coincides with the longitudinal axis of the focusing duct portion. The focusing duct portion is delimited by a liquid-impermeable channel wall, extends from the discharge opening at a focusing taper angle and is tapered toward the discharge opening. The focusing taper angle lies in a range from 0.05° to 1°. This allows the service life of the focusing tube to be increased in a way that is simple in terms of design.
B24C 1/04 - Methods for use of abrasive blasting for producing particular effectsUse of auxiliary equipment in connection with such methods for treating only selected parts of a surface, e.g. for carving stone or glass
The invention relates to a milling tool (100) having: a main tool body (10) which has a rotational axis (Z) about which the milling tool rotates in a predefined rotation direction (R) during operation and a plurality of seats (1) for receiving cutting inserts (6). The seats (1) are arranged at irregular angular intervals (α, ß, y) from one another around the circumference of the main tool body (10). The main tool body (10) has chip spaces (2) assigned to each of the seats (1), outer faces (3) arranged behind the respective seats (1) in the circumferential direction in relation to the rotation direction (R), and intermediate faces (4) arranged in the circumferential direction between the outer faces (3) and the chip space (2) of the seat (1) following in the rotation direction. The intermediate faces (4) each extend along the surface of a shaping face (F). The shaping face (F) of an intermediate face (4) can be brought, by rotation through predefined angles (α', ß', y') on a path around the rotational axis (R), to bear against the respective other intermediate faces (4) such that the latter extend along the surface of said shaping face (F). The predefined angles (α', ß', y') are different from the angular intervals (α, ß, y).
PLANSEE SHANGHAI HIGH PERFORMANCE MATERIAL LTD (China)
PLANSEE SE (Austria)
PLANSEE JAPAN LTD. (Japan)
Inventor
Chen, Chao
Lu, Jiandong
Linke, Christian
Kuniya, Tsutomu
Schmidt, Hennrik
Abstract
Provided are a sputtering target and a method for manufacturing the sputtering target. The sputtering target comprises: a tubular liner tube, an axis thereof being defined as an axial direction, and a plane where a radial direction is located being perpendicular to the axial direction; at least two cylindrical target sections, provided on the tubular liner tube side by side in the axial direction; and a binding material, provided between the tubular liner tube and the at least two cylindrical target sections, at least two ends of the at least two cylindrical target sections facing each other forming tongue-groove fit with each other in the following manner: when observing in the radial direction and/or the axial direction, at least one tongue of one end overlaps with at least one groove of the other end of two adjacent target sections, and the overlap extends at least around a part of the circumference of the corresponding end.
PLANSEE SHANGHAI HIGH PERFORMANCE MATERIAL LTD (China)
PLANSEE SE (Austria)
PLANSEE JAPAN LTD. (Japan)
Inventor
Chen, Chao
Lu, Jiandong
Linke, Christian
Kuniya, Tsutomu
Schmidt, Hennrik
Abstract
Provided is a sputtering target, comprising: a tubular liner, the axis of which is defined as the axial direction, the plane where the radial direction is located being perpendicular to the axial direction; at least one cylindrical target segment disposed on the tubular liner extending along the axial direction through at least 90% of the total length of the at least one cylindrical target segment; and a bonding material disposed between the tubular liner and the cylindrical target segment. The sputtering target also comprises: a stop member for a target segment adjacent to the stop member, the stop member being formed integrally with the tubular liner at an end region of the tubular liner in the axial direction and protruding in the radial direction along the tubular liner, and extending around at least a part of the circumference of the tubular liner, and a circumferential sealing member inserted into the stop member and the adjacent target segment to prevent the leakage of the bonding material.
A rotary x-ray anode with an integrated liquid metal bearing outer shell has an anode disc made of Mo or a Mo-based alloy formed with a hole, which is formed centrally in the region of the axis of rotation and extends in the axial direction at least through part of the anode disc, and a bearing bushing made of Mo or a Mo-based alloy. The bearing bushing is connected to the anode disc via a material bond and its inner wall extends the hole in the anode disc. At least an axial portion of an inner wall of the hole in the anode disc and at least an axial portion of an inner wall of the bearing bushing are formed circumferentially as a liquid metal bearing running surface and they form at least a part of a liquid metal bearing outer shell. There is also described a corresponding production method.
40 - Treatment of materials; recycling, air and water treatment,
35 - Advertising and business services
37 - Construction and mining; installation and repair services
42 - Scientific, technological and industrial services, research and design
Goods & Services
Provide multiple user access to the Internet; provide multiple user access to data on the Internet in the field of application areas for refractory metals Recycling of metals; recycling services; recycling of scrap/valuable materials; material treatment in connection with recycling; recycling as compensation for C02 emissions; providing information on recycling of metallic waste; upcycling in the nature of waste recycling; contract manufacturing of prototypes of new products for third parties; reprocessing of metal components; recycling of metal components Providing consumer product information via the Internet; advertising in periodicals, brochures and newspapers; online advertising and promotional services; organization and conducting of product presentations; electronic processing of orders for others; cost accounting services, namely, preparation and processing of cost accounts; sales management; advertising on the Internet, online advertising, online marketing, online trade directory services in the fields of metals, metal goods, machinery and parts thereof, especially refractory metal-based electrical and electronic goods and parts thereof, lighting equipment and parts thereof, medical equipment and thermal parts thereof, physical and chemical equipment and parts thereof; marketing services related to goods and services Repair of fabricated metal products, especially refractory metal-based metal products Inspection of metallic components, namely refractory metal-based components, for quality control purposes; quality control for others; quality control of goods, raw materials and semi-finished products; quality control for third parties; product quality testing services; laboratory services; scientific laboratory research; chemical and scientific laboratory services; performing scientific laboratory analysis and scientific laboratory testing; Laboratory research in the fields of chemistry and physics; scientific laboratory testing consulting services; chemical and metallurgical laboratory services; materials laboratory testing; metallurgical laboratory research; metallurgical laboratory analysis; design and testing for new product development; product research and development; metallurgical product chemical and physical evaluation services, namely, test method development; industrial process development; scientific research and development; technical research, development and testing in the field of metallurgy; new product research and development; measurement and test method development in the field of metallurgy; test and analysis method design and development in the field of metallurgy; metallurgical product research and development services
37 - Construction and mining; installation and repair services
38 - Telecommunications services
40 - Treatment of materials; recycling, air and water treatment,
42 - Scientific, technological and industrial services, research and design
Goods & Services
Product information / presentation and advertising of various goods and services in brochures / catalogs and other media / especially in electronic media; processing of product and price inquiries and of orders for goods; preparation and processing of cost accounts; presentation of goods and services on the Internet and other media; sales management; advertising on the Internet / online advertising / online marketing in the fields of: Metals/ metal goods/ machinery (or parts thereof), especially refractory metal-based / electrical and electronic goods (or parts thereof) / lighting equipment (or parts thereof) / medical equipment and thermal (or parts thereof) / physical and chemical equipment (or parts thereof); marketing related to goods and services; online wholesales services related to: sheets, rods, electrodes, welding consumables, ribbons, wires, evaporator boats, standard and furnace components, targets, other semi-finished metal products made of metal, especially refractory metal-based / lighting equipment (or parts thereof) made of metal / medical equipment and thermal (or parts thereof) made of metal / physical and chemical equipment (or parts thereof) made of metal, all the above-mentioned services with the exception of building materials and building elements in road, bridge or building construction. Repair of fabricated metal products, especially refractory metal-based metal products, with the exception of building materials and building elements in road, bridge or building construction. Provide user access to Internet platforms, provide user access to information on the Internet.. Recycling of metals, recycling services , recycling of scrap/valuable materials, treatment and processing of metals for recycling purposes; recycling as compensation for CO2 emissions, providing information on recycling of metallic waste, upgrading of recycled waste products (upcycling), customized contract manufacturing of components; reprocessing of metal components, recycling of metal components; all the above-mentioned services with the exception of building materials and building elements in road, bridge or building construction. Quality inspection, quality assessment, quality control, certification (quality control), performing quality checks/quality audits, quality control services, quality assurance services, performing quality testing, quality control of goods/raw materials/semi-finished products, quality control for third parties, evaluation of results of quality testing of goods, quality control services for certification purposes, technical testing and quality control, laboratory services, laboratory research, chemical/analytical/scientific laboratory services, performing laboratory analysis/laboratory testing, laboratory research and analysis, Laboratory testing consulting services, Chemical/metallurgical laboratory services, Analytical testing laboratory services, Materials laboratory testing, Metallurgical laboratory research, Metallurgical laboratory analysis, New product development, Product research and development, Test method development, Industrial process development, Scientific research and development, Technical research, development and testing, New product research and development, Measurement and test method development, Test and analysis method design and development, Metallurgical research and development services; all the above-mentioned services with the exception of building materials and building elements in road, bridge or building construction.
A tool system includes a machine-proximal shank configured to be introduced into a driven tool receptacle and containing a device for transferring a rotating movement to be picked up from the driven tool receptacle. A tool-proximal shank is configured as a tool holder or to have a tool holder releasably connected thereto. A gear mechanism disposed between the machine-proximal shank and the tool-proximal shank is configured to transfer a rotating movement transmitted by the device in a reduced manner to the tool-proximal shank. At least one insert seat configured on the tool holder for receiving an interchangeable cutting insert is provided on an end face of the tool holder extending transversely to a longitudinal axis of the tool holder. A method for machining a workpiece is also provided.
A cutting element is configured such that it may be used to cut grass stalks or other organic stalk materials in a vegetation area. The cutting element has a main body formed from a main body material and cutting bodies formed on opposite sides of the main body which have a longer service life in the region of the cutting body relative to the prior art. At least one of the cutting bodies is formed by a cutting body material which is distinct from the main body material, is sintered and is harder than the main body material. The sintered cutting body material is formed by a hard metal or cermet and the higher hardness thereof is based on hard material particles present therein.
A cutting element, which is configured for the machining of a non-metallic composite material composed of a matrix and particles held together by the matrix, has a flank face, a rake face and a cutting edge which is coated with an edge coating and via which the flank face and the rake face are connected to one another, with which the non-metallic composite material can be machined in an improved fashion. The cutting edge within a cutting edge section thereof is curved in such a way that the cutting edge immediately beneath the edge coating in a section in a section plane that is perpendicular to the cutting edge has, at every point of the cutting edge section, a local radius of curvature which is greater than or equal to 10 μm and less than or equal to 80 μm.
A tungsten-carbide-based hard material includes the following components: tungsten carbide with an average particle size of 0.1-1.3 μm; 1.0-5.0 wt. % (Co+Ni), with a ratio of Co/(Co+Ni) in wt. % of 0.4≤Co/(Co+Ni)≤0.95; 0.1-1.0 wt. % Cr, with a ratio of Cr to (Co+Ni) in wt. % of 0.05 Cr/(Co+Ni) 0.20; 0.01-0.3 wt. % Mo; and 0.02-0.45 wt. % Me, where Me represents one or more elements from the group Ta, Nb, Hf and Ti, preferably Ta and/or Nb; and wherein 0.01≤Me/(Co+Ni)≤0.13.
C22C 29/08 - Alloys based on carbides, oxides, borides, nitrides or silicides, e.g. cermets, or other metal compounds, e. g. oxynitrides, sulfides based on carbides or carbonitrides based on carbides, but not containing other metal compounds based on tungsten carbide
A cutting tool for severing a non-metallic material includes a holding element and a cutting element held on the holding element for cutting contact with the non-metallic material. A boundary region adjoins a holding material region of the holding element and a cutting material region of the cutting element. The precise severing of, for example, bone materials of human or animal origin, is possible in that a deformation resistance against an elastic deformation of the holding material region is greater than a deformation resistance against an elastic deformation of the cutting material region.
A holding arrangement for securing of at least one heating element (400) for a high-temperature furnace, the holding arrangement (100) comprising at least one carrier element (230) made of a metallic material having a melting point of greater than 1200°C, at least one heater holder (110) made of a metallic material having a melting point of greater than 1200°C, wherein the heater holder (110) and/or the carrier element (230) includes at least one elastically deformable spring element (120), and the heater holder (110) and the carrier element (230) are designed to adopt a fixing position under force-fitting action or a locking position under form-fitting action relative to one another with at least temporary elastic deflection of the at least one spring element (120).
F27D 99/00 - Subject matter not provided for in other groups of this subclass
H05B 3/32 - Heating elements having extended surface area substantially in a two-dimensional plane, e.g. plate-heater non-flexible heating conductor mounted on insulators on a metallic frame
The invention relates to a ceramic holding element for a high-temperature furnace, said holding element comprising: at least one fastening portion (200) formed on a part of a surface (3) of the holding element (1) for mechanically connecting the holding element (1) to a supporting structure (210); at least one heat conductor receiving portion (300) formed on a part of the surface (3) of the holding element (1) for receiving a heat conductor (310), wherein at least one groove (4) having a depth (t) and a width (b) is formed on a peripheral part of the surface (3) of the holding element (1), said peripheral part being located between the fastening portion (200) and the heat conductor receiving portion (300), which groove (4) extends substantially over the entire periphery of the peripheral part of the surface (3), and at least one imaginary path between the fastening portion (200) and the heat conductor receiving portion (300) crosses the at least one groove (4) along the surface (3) of the holding element (1), wherein a groove (4) has an aspect ratio, formed by the ratio of the depth (t) to the width (b), of greater than or equal to 1.5.
Disclosed herein are methods for electrolessly coating copper onto a chromium metal powder, the method comprising adding a nickel-coated chromium powder to an aqueous electroless copper plating bath comprising a source of copper cations, a copper-cation complexing agent, a copper-cation reducing agent, and a first base, thereby forming a copper- coated chromium metal powder. Also disclosed are copper-coated chromium metal powders prepared by a disclosed method.
A cutting element (1) having a cutting head (2) and having a stem (3), wherein the cutting edge (4) of the cutting head (2) follows a segment of a circle with a circle centre (5) facing the stem (3), is located in a virtual cutting-head plane (6) and, as seen in a viewing direction perpendicular to the cutting-head plane (6), is formed symmetrically in relation to a virtual cutting-edge axis of symmetry (7) contained within the cutting-head plane (6), wherein the cutting head (2) has a chip-guiding structure (8), the chip-guiding structure (8) being assigned to the cutting edge (4), and also has a chip-guiding groove (9) and a plurality of chip-guiding elements (10), wherein each chip-guiding element (10) has a respective longitudinal ridge (11) and a transverse ridge (12), wherein, in each chip-guiding element (10), the transverse ridge (12), as seen in a viewing direction perpendicular to the cutting-head plane (6), projects beyond the ridge crest (13) in a direction transverse to the longitudinal extent of the ridge crest (13).
06 - Common metals and ores; objects made of metal
09 - Scientific and electric apparatus and instruments
Goods & Services
Refractory metals and their alloys; Metals and alloys based on molybdenum; Metallic composite materials comprising a refractory metal; Non-ferrous metals and their alloys; High-temperature forming tools made of the above-mentioned materials, in particular molybdenum or molybdenum-based alloy, in particular piercing plug; Semi-finished goods made of above-mentioned materials as far as not contained in other classes, namely, semi-finished metals and alloys based on molybdenum; Wrought products made from molybdenum or molybdenum-based alloys, namely, wires, rods, sheets, plates, bars, strips, tubes, foils and rings for use in further manufacture; Standard metal fastener parts, namely, metal screws, metal nuts, metal rivets and metal discs from molybdenum or molybdenum-based alloy as far as not contained in other classes; Granulate from metal; Granulate from molybdenum and molybdenum-based alloy Components for chemical apparatus, namely, sputter targets, evaporator coils, back contact in thin-film solar cells, microelectronic components and components for glass manufacturing installations as far as not contained in other classes, namely, glass melting electrodes; Components for physical apparatus, namely, electrodes for magnetrons, welding electrodes, electrodes for electron tubes, shieldings for non-medical and medical purposes, particularly against nuclear radiation and X-radiation, namely, protective isotope containers, compensating and centrifugal weights for gyro compasses, electronic navigation instruments, weights for centrifugal governors, and balancing mass; Semiconductor chips; Components for semiconductor equipment, namely, support plates for electronics, semiconductor base plates, heat sinks, substrate supports for electronic and electric elements, and microelectronic components; Components for lithography equipment, namely, electronic transistors and microelectronic components; Apparatus and instruments for conducting, switching, transforming, storing, regulating or controlling the distribution or use of electricity, namely, capacitor wires for electric purposes, electrodes, electrical contacts, cathodes and anodes, electrical capacitors, electrical switches, electrical connectors, current leads, electrodes, electrical core wires, electrical support wires, electrical conducting pins, electrical conductors, and electrical crimp connections
The invention relates to a brake disc for a disc brake, the brake disc (1) consisting at least in part of a material having a molybdenum content of ≥ 50 wt.%.
The invention relates to a side-milling cutter (100), having: a main body (10) which extends along a predefined axis of rotation (R) from a first end (11), having an interface for connection to a rotary drive, to a free second end (12), on which a support face (14) for a disc-shaped blade carrier (20) is formed; and a disc-shaped blade carrier (20), which is fastened on the second end (12) and rests on the support face (14) by means of a first main surface (21) facing the main body (10), and the outer circumference of which protrudes radially from the main body (10) and which has a central through-opening (23) which axially penetrates the disc-shaped blade carrier (20). A plurality of coolant supply channels (60) are formed in the main body (10) to supply coolant to the second end (12) of the main body (10). A plurality of coolant distribution channels (50) are formed in the disc-shaped blade carrier (20) to supply coolant to the outer circumference of the blade carrier (20). At least two of the plurality of coolant distribution channels (50) branch off from a shared coolant distribution chamber (70; 55, 61, 62), which is formed between the main body (10) and the disc-shaped blade carrier (20) and into which at least two of the plurality of coolant supply channels (60) open.
06 - Common metals and ores; objects made of metal
09 - Scientific and electric apparatus and instruments
Goods & Services
Refractory metals and their alloys; Materials from molybdenum; Metals and alloys based on molybdenum; Metallic composite materials; Non-ferrous metals and their alloys; High-temperature forming tools made of the above-mentioned materials, in particular molybdenum or molybdenum-based alloy, in particular piercing plug; Semi-finished goods made of above-mentioned materials as far as not contained in other classes; Plates, sheets, foils, wires, tubes, rods, rings, standard parts, screws, nuts, rivets, pivots, and discs from metal as far as not contained in other classes; Plates, sheets, foils, wires, tubes, rods, rings, standard parts, screws, nuts, rivets, pivots, and discs from molybdenum or molybdenum-based alloy as far as not contained in other classes; Granulate from metal; Granulate from molybdenum or molybdenum-based alloy. components for chemical apparatus; components for physical apparatus; semiconductor elements; components for semiconductor equipment; components for lithography equipment; apparatus and instruments for conducting, switching, transforming, storing, regulating or controlling the distribution or use of electricity.
A tool system for machining includes a tool body that has a first end for connecting to a machine tool and a second end having an end face on which a seat for an interchangeable cutting insert is formed. The cutting insert has an underside formed as an abutment surface, a top side formed as a rake face, and an encircling side face formed as a flank, and a cutting edge is formed at a transition from the top side to the encircling side face. The cutting insert is arranged on the seat such that the top side extends perpendicularly to the longitudinal axis of the tool body and the cutting edge protrudes beyond the outer circumference of the end face of the tool body in a radial direction with respect to the longitudinal axis with two usable cutting corners and cutting-corner portions adjoining the latter on both sides.
A tool (100) for machining, with a main body (1) which has a rotational axis (R), about which the tool rotates during operation, at least one seat (2) which is configured on the main body (1) for receiving an exchangeable cutting tool insert (3), a fastening screw (5) for fastening the cutting tool insert (3) to the seat (2), and a cutting tool insert (3) which is fastened to the seat (2). The seat (2) has a base surface (21) for supporting a lower side (33) of the cutting tool insert (3), a first lateral bearing surface (22) which supports the cutting tool insert (3) radially inwards, and a second lateral bearing surface (23) which supports the cutting tool insert (3) axially, and radially outwards, and a bore (4) for receiving the fastening screw (5) is configured in the base surface (21). The bore (4) has a threaded bore (41) spaced apart from the base surface (21), and a thread-free bore section (42) closer towards the base surface (21). The fastening screw (5) has a threaded section (51) for interacting with the threaded bore (41), a head section (53) for supporting in a through hole (36) of the cutting tool insert (3), and a thread-free shank section (52) between the threaded section (51) and the head section (53). The thread-free shank section (52) has a smaller cross section than the thread-free bore section (42). The cutting tool insert (3) is fastened to the seat (2) in such a way that the head section (53) of the fastening screw (5) is supported on the through hole (36) of the cutting tool insert (3), the threaded section (51) of the fastening screw (5) interacts with the threaded bore (41), and the head section (53) of the fastening screw (3) is deflected elastically in such a way that the thread-free shank section (52) is supported, in a viewing direction perpendicularly with respect to the base surface (21), in a second quadrant (Q2), situated radially on the outside and axially in the direction of a free end (12) of the tool, on the thread-free bore section (42).
A double-sided cutting insert for milling has a first cutting edge formed at a transition from a top side to a circumferential lateral surface and a second cutting edge formed at a transition from a bottom side to the circumferential lateral surface. A reference plane (R) runs normal to an axis of symmetry (S). The cutting edges have main cutting edge portions and face cutting edge portions arranged in alternation, which extend between raised cutting corners and lowered cutting corners. The circumferential lateral surface has face free surfaces, which extend along the face cutting edge portion and which approach the axis of symmetry (S) with increasing distance from the associated face cutting edge portion. The circumferential lateral surface has main free surfaces, which extend along the main cutting edge portion and which move farther away from the axis of symmetry with increasing distance from the associated main cutting edge portion.
H01J 37/00 - Discharge tubes with provision for introducing objects or material to be exposed to the discharge, e.g. for the purpose of examination or processing thereof
H01L 27/00 - Devices consisting of a plurality of semiconductor or other solid-state components formed in or on a common substrate
A clamping device is configured to clamp a cutting insert onto a holder of a cutting tool. The clamping device contains a clamping bolt and a locking bolt, wherein the clamping bolt is configured to be inserted into each of the cutting insert and the holder. The locking bolt is configured to be inserted into the holder, such that the locking bolt pre-strains the clamping bolt into clamping the cutting insert onto the holder. The clamping bolt is configured rotatable about a longitudinal clamping axis of the clamping bolt relative to each of the cutting insert and the locking bolt, such that the clamping bolt wedge engages with the locking bolt during a clamping bolt rotation about the longitudinal clamping axis.
B23B 27/16 - Cutting tools of which the bits or tips are of special material with exchangeable cutting bits, e.g. able to be clamped
B23C 5/22 - Securing arrangements for bits or teeth
B23Q 11/00 - Accessories fitted to machine tools for keeping tools or parts of the machine in good working condition or for cooling workSafety devices specially combined with or arranged in, or specially adapted for use in connection with, machine tools
B23B 27/10 - Cutting tools with special provision for cooling
A shielding module for a high-temperature furnace has a packet of interconnected shielding plates. The packet of interconnected shielding plates is mounted to a common base body. The base body has fixing points for fixing to base bodies of other shielding modules of the same kind.
The invention relates to a casting insert (1), comprising: - a wall (2), which is formed substantially of a liquid-phase-sintered refractory metal alloy; - a cavity (3), which is formed by the wall (2); - at least one cooling channel (4), which is different from the cavity (3) and which is formed at least partly within the cavity (3) and/or which is formed at least partly within the wall (2), wherein the wall (2) has a wall thickness (t), which wall thickness (t) can be defined as the normal distance between a point of the wall (2) which faces the cavity (3) and a point on an outer surface (A) of the wall (2), and wherein the wall thickness (t) is, at least in some parts, less than 25% of a diameter (D) of the casting insert (1).
B22F 5/10 - Manufacture of workpieces or articles from metallic powder characterised by the special shape of the product of articles with cavities or holes, not otherwise provided for in the preceding subgroups
B22F 7/08 - Manufacture of composite layers, workpieces, or articles, comprising metallic powder, by sintering the powder, with or without compacting of composite workpieces or articles from parts, e.g. to form tipped tools with one or more parts not made from powder
B33Y 80/00 - Products made by additive manufacturing
B22C 9/10 - CoresManufacture or installation of cores
B22D 15/00 - Casting using a mould or core of which a part significant to the process of high thermal conductivity, e.g. chill castingMoulds or accessories specially adapted therefor
B22D 17/22 - DiesDie platesDie supportsCooling equipment for diesAccessories for loosening and ejecting castings from dies
B22F 5/00 - Manufacture of workpieces or articles from metallic powder characterised by the special shape of the product
C22C 1/04 - Making non-ferrous alloys by powder metallurgy
B22F 3/24 - After-treatment of workpieces or articles
B22C 3/00 - Selection of compositions for coating the surfaces of moulds, cores, or patterns
B22F 5/00 - Manufacture of workpieces or articles from metallic powder characterised by the special shape of the product
B22F 7/00 - Manufacture of composite layers, workpieces, or articles, comprising metallic powder, by sintering the powder, with or without compacting
B22F 7/06 - Manufacture of composite layers, workpieces, or articles, comprising metallic powder, by sintering the powder, with or without compacting of composite workpieces or articles from parts, e.g. to form tipped tools
B22F 7/08 - Manufacture of composite layers, workpieces, or articles, comprising metallic powder, by sintering the powder, with or without compacting of composite workpieces or articles from parts, e.g. to form tipped tools with one or more parts not made from powder
C23C 14/16 - Metallic material, boron or silicon on metallic substrates or on substrates of boron or silicon
H01J 9/02 - Manufacture of electrodes or electrode systems
H01J 61/073 - Main electrodes for high-pressure discharge lamps
H05B 3/12 - Heating elements characterised by the composition or nature of the materials or by the arrangement of the conductor characterised by the composition or nature of the conductive material
99.
Additively manufactured refractory metal component, additive manufacturing process and powder
A component has a matrix phase composed of at least one material selected from the group molybdenum, a molybdenum-based alloy, tungsten, a tungsten-based alloy and a molybdenum-tungsten-based alloy. The component is manufactured using a laser or electron beam in an additive manufacturing process. The molybdenum content, the tungsten content or the total content of molybdenum and tungsten is more than 85 at %, and the component contains particulates having a melting point above the melting point of the matrix phase.
C22C 32/00 - Non-ferrous alloys containing at least 5% by weight but less than 50% by weight of oxides, carbides, borides, nitrides, silicides or other metal compounds, e.g. oxynitrides, sulfides, whether added as such or formed in situ