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Staubli Faverges
Staubli Faverges_20100121

Staubli Faverges patents


Recent patent applications related to Staubli Faverges. Staubli Faverges is listed as an Agent/Assignee. Note: Staubli Faverges may have other listings under different names/spellings. We're not affiliated with Staubli Faverges, we're just tracking patents.

ARCHIVE: New 2018 2017 2016 2015 2014 2013 2012 2011 2010 2009 | Company Directory "S" | Staubli Faverges-related inventors


Quick coupling

This coupling (r) includes a male element (a) including a male body (2) provided with a locking relief (22), a purging ring (4) movable between a rear position, in which the purging ring closes off a purging passage of the male body, and a forward position, and a female element (b) including a female body (12, 14), a ball-retainer (23) carrying locking balls (18) of the male body, in a housing between a first position, in which they are able to oppose the removal of the locking relief, and a second position, in which the locking balls allow the removal of the locking relief, a valve body (25) secured to the ball-retainer, including coupling balls (27) suitable for securing the valve body and the female body in translation, an inner ring (29) suitable, in a retaining position, for keeping the valve body and the female body coupled by the coupling balls when the female element is uncoupled from the male element. In a first coupling configuration, the locking balls have crossed the locking relief of the male element; in a second coupling configuration, the inner ring has reached a position in which it no longer keeps the valve body and the female body coupled by the coupling balls; in a third coupling configuration, the female body keeps the locking balls in their first position; and in a fourth coupling configuration, the valve body has reached a position that allows fluid to pass between the two conduits. ... Staubli Faverges

Coupling and hydraulic braking circuit for cycle incorporating such a coupling

This coupling (r) comprises a male element (a) with a stepped outer groove (20), a female element (b) with locking balls (7), a locking ring (9) provided with a front inner notch and a rear inner notch axially separated by an inner rim, a spring that pushes the locking ring (9) back into the forward position, and a valve movable in the female element (b) and pushed by a spring (14) back to the closed position. The male element (a) comprises a valve movable in an inner channel (200) of the male element (a) and a spring (48) that pushes the valve of the male element (a) back toward a closed position of the inner channel (200).. ... Staubli Faverges

Coaxial fluid connector

A fluid connector for removably joining two lines includes a male element and a complementary female element, which each include a body defining an inner passage and an outer passage, a male drawer, which is axially movable inside the outer passage between an uncoupled position of the connector, where it tightly closes off a distal mouth of the outer passage, and a coupled position, where it does not oppose the passage of fluid in the mouth and wherein the male or female body delimits a connecting passage between the outer passage of the female element and the outer passage of the male element during the coupling of the elements and which connecting passage extends between at least one distal opening and at least one proximal opening, which each emerge in one or the other of the outer passages.. . ... Staubli Faverges

Female element for a fluid coupling and fluid coupling including such an element

Female element for a fluid coupling and fluid coupling including such an element this fluid coupling (r) element (200) comprises a body (202) for receiving a complementary end-piece (100), this body being centered on a longitudinal axis (x2) and defining a fluid circulation channel (204) within the body on the one hand, and a sealing chamber (208) in which a sealing gasket able to cooperate with the end-piece (100) inserted in the body (202) is housed, on the other hand. The sealing chamber is defined by an outer radial wall (2082) and a rear wall (2088). ... Staubli Faverges

Quick coupling for the disconnectable connection of pipelines of fluid under pressure

The invention relates to a quick coupling for the disconnectable connection of pipelines for a pressurized fluid, this coupling comprising a plug element and a socket element (100) intended to be coupled with one another, the socket element including a hollow cylindrical body (102) centered on a central axis (x100) and including an inner radial surface and an outer radial surface and defining a radial opening (104), and a locking element (118), comprising a translatable member (118a), along a radial translation axis relative to the central axis, inside the radial opening (104), which is able to guide the member (118a) between a first position, in which the member protrudes inward relative to the inner radial surface, and a second position, in which the member protrudes outward relative to the outer radial surface and in which the member (118a) does not protrude inward relative to the inner radial surface, the plug element comprises a locking ring that is axially movable between a locking position, in which it surrounds the peripheral groove, and an unlocked position, in which it does not surround the peripheral groove. The locking element (118) being able to drive the locking ring from its locking position toward its unlocked position when its member (118a) is in its second position. ... Staubli Faverges

Male or female quick coupling element and quick coupling including such an element

This male or female quick coupling element (4; 6) is intended to be coupled to a pressurized fluid pipe (c4; c6). It comprises a body (42; 62) defining at least one pressurized fluid passage (441, 643, 681), a front face and a longitudinal axis (x4; x6) of the coupling element. ... Staubli Faverges

Socket element for a quick connector and quick connector comprising such a socket element

This socket element (1) for a quick connector, for joining two fluid pipes (c1, c2), comprises a socket body (2) that is able to receive a plug element inserted along a rear direction (d2), a pushing ring (40), which is mounted translatably inside the socket body, an elastic return element (78) for the pushing ring, and a primary sealing gasket (64) housed in a housing (59) of the socket element and able to cooperate with the plug element inserted into the socket body. According to the invention, the socket element (1) further comprises a slide-ring (42) arranged around the pushing ring (40) and forming a bottom and a front wall (56) of the housing (59), the pushing ring forms a rear wall (57) of the housing (59), and the pushing ring (40) being translatable relative to the slide-ring (42).. ... Staubli Faverges

Shedding mechanism comprising a level adjustment device and weaving machine including said mechanism

A weaving machine (1) equipped with a level adjustment device (8) for a plurality of oscillating levers (26), the oscillating levers being provided with cam followers (42) and mounted on a shaft (28) of the levers, the shaft of the levers being movable between a weaving configuration, where the cam followers of the oscillating levers bear against cams (18) of the shedding mechanism, and a level adjustment configuration, where the cam followers of the oscillating levers are separated from the cams of the shedding mechanism. The level adjustment device comprises a level adjustment picking cam member secured to the shaft of the levers. ... Staubli Faverges

Method for controlling an automated work cell

The invention relates to a method for controlling an automated work cell (2) including at least one robot arm (4) with at least three degrees of freedom (a1-a6), a programmable logic controller (6) suitable for developing a trajectory order (om) based on an instruction to perform a trajectory of an application programmed in the programmable logic controller, a robot controller (10), suitable for steering the movement of the robot arm (4), and a communication bus (5) between the programmable logic controller (6) and the robot controller (10). The method comprises steps consisting of a) developing, in the programmable logic controller (6), a trajectory order (om) including parameters for executing a trajectory defined at least between a departure point and an arrival point; b) transmitting the trajectory order (om) developed in step a) to a computing unit (11) of the robot (10); c) developing, in the computing unit (11) of the robot controller (10) and based on the trajectory order (om) transmitted in step b), elementary movement instructions for steering the robot arm (4) on the trajectory defined by the trajectory order (om).. ... Staubli Faverges








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