This application is a 371 of International PCT Application PCT/FR2014/052196 filed Sep. 5, 2014, which claims priority to French Patent Application No. 1359018 filed Sep. 19, 2013, the entire contents of which are incorporated herein by reference.
The present invention relates to a device for supplying gas.
The invention relates more particularly to a device for supplying gas comprising a support frame housing a plurality of pressurized-gas cylinders connected to a fluid circuit for withdrawing from or filling the cylinders, said circuit comprising a first connection end connected to the cylinders via a first isolation valve to allow filling of and withdrawing from the cylinders and a second connection end which is distinct and is connected to the cylinders via a second isolation valve and a pressure regulator so as to allow fluid to be withdrawn, the support frame comprising, on one of its faces, an interface panel comprising at least one opening providing a user access to the circuit.
The invention notably relates to gas supply devices sometimes referred to as “frames”.
Such a device is described for example in documents DE20103682U1, GB2007348 A1 or DE102011014065 A1.
Such devices generally use an array of cylinders storing gas at high pressures, for example 200 bar, 300 bar or above.
These devices need to meet various, and often conflicting, requirements, for example: a cylinder filling circuit compatible with high flow rates and pressures and allowing satisfactory mixing of gas (in terms of homogeneity and/or filling time in particular), a withdrawing circuit that offers safety of use for the user, ergonomic use and prevents incorrect handling.
One object of the present invention is to alleviate all or some of the prior art disadvantages listed above.
To this end, the device for supplying gas according to the invention, in other respects in accordance with the generic definition given thereof in the above preamble, is essentially characterized in that the device comprises a control member for manually operating the second isolation valve and comprising a pivoting lever, and in that the interface panel comprises a slot providing access to the lever, said lever being mobile through the slot between a first position in which the lever is situated in the plane of the interface panel or set back therefrom within the frame volume and a second position in which at least part of the lever projects with respect to the interface panel toward the outside of the frame and through the slot.
Moreover, some embodiments of the invention may include one or more of the following features:
The invention may also relate to any alternative device or method including any combination of the features listed hereinabove or hereinbelow.
Other specifics and advantages will become apparent from reading the description hereinafter, given with reference to the figures in which:
The gas supply device 1 illustrated in
For example, the cylinders 3 are arranged in an array vertically on a bottom (sixteen cylinders 3 in this nonlimiting example). The orifices of the cylinders 3 are connected to a fluid circuit 4, 5 for withdrawing from or filling the cylinders 3.
The circuit 4, 5 comprises a first connection end 6 connected to the cylinders 3 via a first isolation valve 7 to allow filling of and withdrawing from the cylinders 3. The circuit comprises a distinct second connection end 8 connected to the orifices of the cylinders 3 via a second isolation valve 9 and a pressure regulator 10.
As illustrated by way of example in
The support frame 2 comprises on one of its faces, referred to as the “front face”, an interface panel 20 for a user and comprising at least one opening for accessing the circuit 4, 5.
The device comprises a control member 16 for manual operation of the second isolation valve 9 comprising a pivoting lever. For example, although this is nonlimiting, the control lever 16 and its associated valve may have all or some of the features of the devices described in the documents FR2735209A1, FR2828922A1 or FR2970314A1.
In addition, the interface panel 20 comprises a slot 21 for accessing the lever 16. The lever 16 can rotate at one of its ends on a valve body or tap body. The lever 16 is notably able to move through the slot 21 between a first position in which the lever 16 is situated in the plane of the interface panel 20 or set back therefrom within the volume of the frame 2 (cf.
What that means to say is that, in its first position, the lever 16 can be in the plane of the interface panel 20 or set back therefrom inside the volume of the frame 2. In its second position, the terminal end at least of the lever 16 projects with respect to the panel 20 toward the outside of the frame 2.
The first position preferably corresponds to a command to close the first isolation valve 7 whereas in the second position, the lever commands the opening of the first isolation valve 7.
This configuration provides the user with visual information regarding the open/closed status of the isolation valve 9 (visible from a distance of several meters).
As illustrated in
Of course, the lever 16 may have any other suitable shape.
For preference, the slot 21 has an overall shape corresponding to the shape of the outline of the lever 16 (with, for example, a clearance of a few millimeters or centimeters between the edge of the lever 16 and the edge of the slot 21.
As illustrated in
The guarantee seal 22 has, for example, the form of a flat tab and comprises an end for manual grasping.
In its first configuration corresponding to
The seal 22 is fixed to the panel 20 and to the lever by elastic deformation or bonding or any other appropriate manner.
The seal 22 may comprise a rupture zone configured to place the seal 22 manually in a removed second configuration in which the connection attaching the seal 22 to the interface panel 20 and/or to the lever 16 is broken. What that means to say is that in its second configuration, the lever 16 can be moved. For preference, removal of the seal 22 brings about irreversible disruption of the integrity thereof. What that means to say is that the seal 22 is broken and can no longer be positioned back in the first configuration.
Advantageously, the lever 16 may comprise a zone of weakness such as a local reduction in thickness to make it easier to break in the event of a knock and to limit the force transmitted to the second valve 9 (notably in the event that the lever is in its second position).
This zone of weakness of the lever 16 may notably allow the lever 16 to break in the event of a lateral impact when the corresponding valve 9 is open, without affecting the integrity of the device. After breakage, the lever 16 may maintain a residual length that allows it to be manipulated in downgraded mode (by hand or using a tool).
As visible in
Likewise, the second connection end 8 may have a withdrawing coupling 18 situated facing a second opening 24 of the panel 20. This withdrawing coupling is intended to accept a complementary coupling of a withdrawing hose 17 (cf.
The panel 20 may comprise at least one mobile cover 27 (for example a sliding or pivoting cover) to allow access to the first connection end 6 or second connection end 8 to be opened (cf.
The circuit preferably comprises a pressure gauge 26 which can be situated facing a third opening 25 of the panel 20.
As illustrated by way of example in
The safety relief valve 11 is rated for example to open a gas passage to the atmosphere when subjected to a threshold pressure of between 50 and 310 bar (or 4500 psi) and preferably of between 150 and 200 bar.
It will therefore be readily understood that the device, while being of a simple and inexpensive structure, allows the user easily to identify the various components and interfaces (couplings, valves, etc.) and to use these very ergonomically and with a high level of safety.
In particular, the interface panel 20 may clearly separate the filling and withdrawing parts of the circuit. This makes it possible to limit the risk of confusion in the connecting and actuating of the valves. To this end, the interface panel 20 may comprise zones bearing text, symbols and colors in order to make use even easier.
The cover 27 makes it possible to limit access to the filling coupling. This cover 27 limits the risk of accidental use of the first isolation valve 7. This access may be had through a deliberate action on the part of the user in the event of his having a specific requirement for a pressure or flow rate higher than the regulated-pressure valve can offer. Risks of damage and soiling are also reduced.
The interface panel 20 has the advantage, in the case of maintenance and after it has been removed, of allowing access to all of the elements involved in the use of pressurized gas thus making them easier for the operator to dismantle without him having to adopt an uncomfortable pose that is prejudicial to his limbs for example.
Number | Date | Country | Kind |
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13 59018 | Sep 2013 | FR | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/FR2014/052196 | 9/5/2014 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2015/040303 | 3/26/2015 | WO | A |
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Entry |
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French Search Report for FR1359018 mailed Jul. 14, 2014. |
International Search Report and Written Opinion for PCT/FR2014/052196 mailed Nov. 14, 2014 (with English translation). |
Number | Date | Country | |
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20160230935 A1 | Aug 2016 | US |