Gas Teh Ltd

Serbie

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Classe IPC
G05D 16/06 - Commande de la pression d'un fluide sans source d'énergie auxiliaire l'élément sensible étant un organe élastique cédant à la pression, p. ex. un diaphragme, un soufflet, une capsule 3
G05D 16/16 - Commande de la pression d'un fluide avec source d'énergie auxiliaire non électrique dérivée du fluide commandé 2
F16K 1/12 - Soupapes ou clapets, c.-à-d. dispositifs obturateurs dont l'élément de fermeture possède au moins une composante du mouvement d'ouverture ou de fermeture perpendiculaire à la surface d'obturation à corps de soupape profilé autour duquel le fluide s'écoule quand la soupape est ouverte 1
F16K 31/365 - Moyens de fonctionnementDispositifs de retour à la position de repos actionnés par un fluide et dans lesquels il y a alimentation constante du moteur à fluide par le fluide provenant de la canalisation le fluide agissant sur un diaphragme 1
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1.

Axial gas pressure regulator

      
Numéro d'application 16469588
Numéro de brevet 11199862
Statut Délivré - en vigueur
Date de dépôt 2017-12-22
Date de la première publication 2019-12-19
Date d'octroi 2021-12-14
Propriétaire GAS TEH LTD. (Serbie)
Inventeur(s) Sadzakovic, Miroljub

Abrégé

Axial gas pressure regulator in which in a housing (01) is axially positioned a balanced nozzle (02), slidingly movably placed in sliding gaskets (23). Nozzle (02) is pressed by spring (10) and extension (03), while a seat (05) with a gasket (07) is mounted opposite to it, which is squeezed between the housing (01) and an outlet flange (04) and in which are performed openings (29). On the upper side of the housing (01) is mounted a carrier (30) of a second housing (21), consisting of a lower part (08) and an upper part (09), between which is squeezed a membrane (22). On the upper and lower side of membrane (22) is placed on each side one plate (33) which are in the central part connected by a support (34) and a tightener (35), and in the center of which the piston (12) is fixed with a performed choking channel (11) in the axis. The piston (12) is by its lower end slidingly movably placed, through a guide (36) and gaskets (24), in lower part (08) of the second housing (21), and by the upper end, through a guide (37) and gaskets (24), it is placed in the upper part (09) of the second housing (21). The piston (12) leans on roller (13) which is by an axle (17) rotatably placed at the end of a first lever (14), which is by its other end articulately connected with a support (30), and by its middle is articulately connected to a second lever (15). The second lever (15) is at its lower end articulately connected to a third lever (16), which is by an axle (18) is slidingly movably placed in the lower part of the carrier (30), while archly bended legs (161) of the third lever (16) comprise the nozzle (02) and, via plates (38), are slidingly movably connected to it.

Classes IPC  ?

  • G05D 16/16 - Commande de la pression d'un fluide avec source d'énergie auxiliaire non électrique dérivée du fluide commandé
  • G05D 16/06 - Commande de la pression d'un fluide sans source d'énergie auxiliaire l'élément sensible étant un organe élastique cédant à la pression, p. ex. un diaphragme, un soufflet, une capsule
  • F16K 31/365 - Moyens de fonctionnementDispositifs de retour à la position de repos actionnés par un fluide et dans lesquels il y a alimentation constante du moteur à fluide par le fluide provenant de la canalisation le fluide agissant sur un diaphragme

2.

AXIAL GAS PRESSURE REGULATOR OF DIRECT ACTION OF OUTPUT AND INPUT PRESSURE

      
Numéro d'application RS2018000005
Numéro de publication 2019/098867
Statut Délivré - en vigueur
Date de dépôt 2018-05-03
Date de publication 2019-05-23
Propriétaire GAS TEH LTD (Serbie)
Inventeur(s) Sadzakovic, Miroljub

Abrégé

The invention relates to the axial gas pressure regulator of direct action of output and input pressure, in which, according to the basic variant of perfomance, in housing (01), in sliding bearings (17), is axially movably placed nozzle (03). Opposite of movable balanced nozzle (03), is tightened fixed shutter (04) with gaskets (041), which is double symmetrical. On the left side of housing (01), input connector (14) is attached via coils and gaskets, while on the right side of housing (01), output connector (021) is attached through coils and gaskets. In the body of housing (01) overflow line (01 1) is performed, which connects nozzle (03) to the output connector (021). To housing (01), housing (09) of membrane assembly (10) is connected by screws (091), while by connector (092), impulse tube (093) is connected to output assembly (02), while with connector (094) it is connected to housing (09). In housing (09), in cocoon (08), by axle (07) is reversly articulated lever (05) that is by its lower end, via axle (06), rotatably connected to nozzle (03), while in the upper part lever (05) is rotatably, via axle (103) and roller (104), connected to lower tensioner (102) of membrane (M) of membrane assembly (10), which is by screws 101 fixed between housing (09) and housing (1 1). Regulation spring (12) is supported to membrane assembly (10), and on the other side it is pressed by regulation screw (13) which is curved in cover (132) and is secured by nut (133).

Classes IPC  ?

  • G05D 16/06 - Commande de la pression d'un fluide sans source d'énergie auxiliaire l'élément sensible étant un organe élastique cédant à la pression, p. ex. un diaphragme, un soufflet, une capsule

3.

AXIAL GAS PRESSURE REGULATOR

      
Numéro d'application RS2017000018
Numéro de publication 2018/124907
Statut Délivré - en vigueur
Date de dépôt 2017-12-22
Date de publication 2018-07-05
Propriétaire GAS TEH LTD (Serbie)
Inventeur(s) Sadzakovic, Miroljub

Abrégé

Axial gas pressure regulator in which in a housing (01) is axialy positioned a balanced nozzle (02), slidingly movably placed in sliding gaskets (23). Nozzle (02) is pressed by spring (10) and extension (03), while a seat (05) with a gasket (07) is mounted opposite to it, which is squeezed between the housing (01) and an outlet flange (04) and in which are performed openings (29). On the upper side of the housing (01) is mounted a carrier (30) of a second housing (21), consisting of a lower part (08) and an upper part (09), between which is squeezed a membrane (22). On the upper and lower side of membrane (22) is placed on each side one plate (33) which are in the central part connected by a support (34) and a tightener (35), and in the center of which the piston (12) is fixed with a performed choking channel (11) in the axis. The piston (12) is by its lower end slidingly movably placed, through a guide (36) and gaskets (24), in lower part (08) of the second housing (21), and by the upper end, through a guide (37) and gaskets (24), it is placed in the upper part (09) of the second housing (21). The piston (12) leans on roller (13) which is by an axle (17) rotatably placed at the end of a first lever (14), which is by its other end articulately connected with a support (30), and by its middle is articulately connected to a second lever (15). The second lever (15) is at its lower end articulately connected to a third lever (16), which is by an axle (18) is slidigly movably placed in the lower part of the carrier (30), while archly bended legs (161) of the third lever (16) comprise the nozzle (02) and, via plates (38), are slidingly movably connected to it.

Classes IPC  ?

  • G05D 16/06 - Commande de la pression d'un fluide sans source d'énergie auxiliaire l'élément sensible étant un organe élastique cédant à la pression, p. ex. un diaphragme, un soufflet, une capsule
  • G05D 16/16 - Commande de la pression d'un fluide avec source d'énergie auxiliaire non électrique dérivée du fluide commandé
  • F16K 1/12 - Soupapes ou clapets, c.-à-d. dispositifs obturateurs dont l'élément de fermeture possède au moins une composante du mouvement d'ouverture ou de fermeture perpendiculaire à la surface d'obturation à corps de soupape profilé autour duquel le fluide s'écoule quand la soupape est ouverte