IP Library Granted Patent US 10,801,673
Granted Patent B2
US 10,801,673 · App. 16/212,233 · Granted Oct 13, 2020

Valve and pressurized fluid cylinder

Inventors: Aurélien Ferre (Antony, FR); Philippe Rudnianyn (Antony, FR); Celestin Batut (Antony, FR)
Assignee: L'Air Liquide, Société Anonyme pour l'Etude et l'Exploitation des Procédés Georges Claude
F17C13/04F16K17/02F17C2201/032F17C2201/056F17C2201/058F17C2205/013F17C2205/0326F17C2205/0329F17C2205/0338F17C2205/0394F17C2221/011F17C2223/0123F17C2223/036F17C2250/032F17C2250/034F17C2250/043F17C2250/0473F17C2250/0478F17C2250/0626F17C2250/0636F17C2260/026F17C2265/04F17C2270/02
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Quick Facts
Patent No.
US 10,801,673
App. No.
16/212,233
Granted
Oct 13, 2020
Kind
B2
Abstract

Valve for a pressurized fluid cylinder, comprising a sensor for sensing the position of the control member, said sensor being configured to generate an electric signal indicative of the position or of the fluid flow rate and/or pressure set by a regulating member for regulating flow rate/pressure, the sensor ( 9 ) for sensing the position of the control member comprising a conductive circuit having a given electrical resistance, a member for measuring an electric variable of the conductive circuit and a wiper, the conductive circuit and the wiper being movable relative to one another during the movement of the control member with respect to the body of the valve into different configurations in which the wiper modifies the shape and/or area of the conductive circuit measured by the measuring member.

Claims (7)

1. A valve for a pressurized fluid cylinder, comprising a body provided with an end configured to connect to an orifice of the pressurized fluid cylinder, the body of the valve ( 1 ) accommodating a withdrawing circuit ( 3 ) comprising a first, upstream end ( 24 ) configured to communicate with a storage volume of the pressurized fluid cylinder and a second, downstream end ( 23 ) configured to connect to a consumer of a withdrawn gas, the withdrawing circuit ( 3 ) comprising a regulating member ( 4 ) for regulating the flow rate and/or the pressure of a withdrawn fluid between the upstream end ( 24 ) and downstream end ( 23 ), the valve ( 1 ) comprising a control member ( 5 ) for manually controlling the regulating member ( 4 ), the control member ( 5 ) configured to move relative to the body of the valve ( 1 ) and cooperating with the regulating member ( 4 ) to control the flow rate and/or the pressure of fluid allowed to circulate from the upstream end ( 24 ) to the downstream end ( 23 ) depending on the position of the control member ( 5 ) with respect to the body of the valve ( 1 ), the valve ( 1 ) comprising a sensor ( 9 ) for sensing the position of the control member ( 5 ), said sensor ( 9 ) being configured to generate an electric signal indicative of the position of the latter or of the fluid flow rate and/or pressure set by the regulating member ( 4 ), the sensor ( 9 ) for sensing the position of the control member ( 5 ) comprising a conductive circuit ( 19 ) having a given electrical resistance, a measuring member ( 11 ) for measuring an electric variable of the conductive circuit ( 19 ) and a wiper ( 29 ), wherein the conductive circuit ( 19 ) and the wiper ( 29 ) are movable relative to one another during the movement of the control member ( 5 ) with respect to the body of the valve ( 1 ) into different configurations in which the wiper ( 29 ) modifies the shape and/or area of the conductive circuit ( 19 ) measured by the measuring member ( 11 ),

wherein the conductive circuit ( 19 ) is situated next to a flexible conductive zone ( 12 ) disposed in a manner spaced apart from the conductive circuit ( 19 ), and wherein, in a plurality of active positions of the control member ( 5 ), the wiper ( 29 ) bears against the flexible conductive zone ( 12 ) and elastically deforms this conductive zone ( 12 ) locally so as to form localized electrical contact between the conductive zone ( 12 ) and the conductive circuit ( 19 ).

2. The valve according to claim 1 , wherein the flexible conductive zone ( 12 ) is deposited on or integrated in a flexible first support ( 26 ), the conductive circuit ( 19 ) being deposited on or integrated in a second support ( 13 ), the sensor also comprising a set of spacer(s) ( 15 ) disposed between the two supports ( 26 , 13 ) and ensuring the spacing of the conductive zone ( 12 ) with respect to the conductive circuit ( 19 ), the two supports ( 26 , 13 ) and the set of spacer(s) ( 15 ) delimiting a housing.

3. The valve according to claim 2 , wherein the housing is covered with or enclosed in a flexible protective membrane ( 16 ).

4. The valve according to claim 2 , wherein at least one of the conductive circuit ( 19 ) and the conductive zone ( 12 ) comprises a layer of conductive material deposited on or integrated in a surface of an electrically insulating support.

5. The valve according to claim 1 , wherein the conductive circuit ( 19 ) and the conductive zone ( 12 ) have different electrical resistances.

6. The valve according to claim 1 , wherein at least one of the conductive zone ( 12 ) and the conductive circuit ( 19 ) is covered with or enclosed in a protective membrane ( 16 ).

Priority Claims (1)
FR 17 62416 · Dec 19, 2017 · national
Continuity (1)
Related Publication 20190186696A1 · Jun 20, 2019