Connection structure for cartridge and gas consumption device
US-2024337353-A1 · Oct 10, 2024 · US
US9677715B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9677715-B2 |
| Application number | US-201314433266-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 1, 2013 |
| Priority date | Oct 2, 2012 |
| Publication date | Jun 13, 2017 |
| Grant date | Jun 13, 2017 |
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The invention relates to a residual pressure valve device comprising a shut-off member ( 1 ) that is able to move in the body ( 9 ) relative to a seat ( 2 ), a return member ( 5 ) that urges the shut-off member ( 1 ) by default towards the seat ( 2 ), the shut-off member ( 1 ) comprising an internal duct ( 6 ) having a first end in communication with the gas inlet ( 3 ) and a second end that leads, via a calibrated orifice ( 8 ), into a control chamber ( 7 ) that is closed by the shut-off member ( 1 ) such that, when the gas pressure in the control chamber ( 7 ) reaches a predetermined threshold, this pressure causes the shut-off member ( 1 ) to move away from the seat ( 2 ), the body of the shut-off member ( 1 ) comprising a first portion ( 11 ) that forms a male element which is able to move in translation in a female passage of the body ( 9 ) with a predetermined fit forming a restriction ensuring partial and progressive opening of the passage for the gas between the inlet ( 3 ) and the outlet ( 4 ).
Opening claim text (preview).
The invention claimed is: 1. A residual pressure valve device comprising: a body, a shut-off member that is movable in the body in relation to a seat in order in a selective manner to permit or interrupt a flow of gas between a fluid inlet and a fluid outlet, a return member which, by default, urges the shut-off member toward the seat toward its position interrupting the flow, the shut-off member comprising an internal duct having a first end which communicates with the gas inlet and a second end which opens out, via a calibrated aperture, into a pilot chamber, the pilot chamber being reclosed in a tight manner by a downstream end of the shut-off member such that, when the gas pressure in the pilot chamber reaches a specified threshold, said pressure induces a displacement force of the shut-off member in opposition to the force of the return member in order to move the shut-off member away from the seat and thus to permit a gas flow between the fluid inlet and the fluid outlet, the body of the shut-off member comprising, between the seat and the downstream end of the shut-off member, a first portion which forms a male element which can be moved in translation in a female passage of the body with a specified fit forming a restriction which ensures a partial, progressive opening of the passage for the gas between the inlet and the outlet, wherein the first portion has an outside diameter, wherein between the first portion and the downstream end of the shut-off member, the body of the shut-off member further comprises a second portion with a reduced outside diameter in relation to the outside diameter of the first portion, in order to form an enlarged passage defining an opening for the gas between the inlet and the outlet. 2. The device as of claim 1 , wherein the dimensions of the opening which is delimited by the seat differ by more than 30% in relation to the dimensions of the outside diameter of the first portion of the shut-off member. 3. The device of claim 2 , wherein the opening which is delimited by the seat is circular and has a diameter of between three and six millimeters inclusive and differs by more than 1 mm in relation to the diameter of the first portion of the shut-off member which is cylindrical. 4. The device of claim 1 , wherein the shut-off member can be moved in translation in the body along an upstream/downstream direction, the first portion has a length along the upstream/downstream direction of between two and eight millimeters inclusive. 5. The device of claim 1 , wherein the calibrated aperture has a diameter of between 0.01 mm and 0.50 mm in order to control the speed of pressure build-up in the pilot chamber, said speed of pressure build-up being a function moreover of the gas pressure at the inlet and of the volume of said pilot chamber. 6. A valve of a pressurized gas cylinder, comprising a tapping circuit having an upstream end which is intended to be connected to a storage volume of a pressurized gas cylinder and a downstream end which is intended to be connected to a device consuming gas withdrawn from the cylinder, the tapping circuit comprising a shut-off valve and a residual pressure valve device, arranged in series upstream between the upstream end and the downstream end, wherein the residual pressure valve device complies with claim 1 . 7. A pressurized gas cylinder, wherein said cylinder comprises a valve as claimed in claim 6 .
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in direct contact with the pressure vessel · CPC title
by maintaining residual pressure · CPC title
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