A DEVICE FOR DELIVERING A PRESSURIZED MATERIAL
20190299041 · 2019-10-03
Inventors
Cpc classification
B65D83/34
PERFORMING OPERATIONS; TRANSPORTING
B65D83/643
PERFORMING OPERATIONS; TRANSPORTING
A62C35/023
HUMAN NECESSITIES
B05B7/0006
PERFORMING OPERATIONS; TRANSPORTING
B65D83/50
PERFORMING OPERATIONS; TRANSPORTING
A62C13/22
HUMAN NECESSITIES
B05B9/0838
PERFORMING OPERATIONS; TRANSPORTING
B05B9/0844
PERFORMING OPERATIONS; TRANSPORTING
International classification
A62C13/22
HUMAN NECESSITIES
B65D83/50
PERFORMING OPERATIONS; TRANSPORTING
B05B7/00
PERFORMING OPERATIONS; TRANSPORTING
B05B9/08
PERFORMING OPERATIONS; TRANSPORTING
B65D83/34
PERFORMING OPERATIONS; TRANSPORTING
A62C35/02
HUMAN NECESSITIES
Abstract
A device for dispensing a pressurized material, includes a body defining a pressurizing chamber containing a gas generator, a tank for containing the material that is to be delivered, and a piston, the gas generator being configured so that when it is triggered it causes the device to pass from a material-storage, first configuration to an end-of-material-dispensing, second configuration. In the first configuration, the piston is held in position in the body by an elastically deformable holder element extending axially, that is secured to the first end wall. The piston is held stationary relative to the first end wall by a holding force from the holder element. When the gas generator is triggered, it exerts a force on the piston that opposes the holding force to enable the piston to move by releasing the first end wall and thus causing the device to pass from the first to second configuration.
Claims
1. A device for dispensing a pressurized material, the device comprising a first end wall a second end wall provided with an outlet port, and a body extending axially between the first end wall and the second end wall, the body defining a pressurizing chamber containing a gas generator fastened to the first end wall, and a tank for containing the material that is to be delivered and that is defined by the second end wall, the device further comprising a piston configured to move inside the body, the piston separating the pressurizing chamber from the tank, the gas generator being configured so that when the gas generator is triggered the gas generator causes the device to pass from a material-storage, first configuration to an end-of-material-dispensing, second configuration, wherein, in the first configuration, the piston is held in position in the body by an elastically deformable holder element extending axially, said holder element being secured to the first end wall and the piston being held stationary relative to the first end wall by a holding force provided by the holder element, the holder element exerting a clamping force that results from its contact with the piston and/or with a zone secured to the first end wall, the clamping force resulting from the elasticity of the holder element, and wherein the gas generator is configured so that when triggered the gas generator exerts a force on the piston that opposes the holding force so as to enable the piston to move by releasing the first end wall and thus causing the device to pass from the first configuration to the second configuration.
2. A device according to claim 1, wherein, in the first configuration, the piston has a housing co-operating with the holder element, the clamping force being exerted in said housing.
3. A device according to claim 1, wherein the holder element is a split tube.
4. A device according to claim 1, wherein, when the device is in the first configuration, a first portion of the holder element is fastened directly to the gas generator and a second portion of the holder element is fastened directly to the piston.
5. A device according to claim 1, wherein, when the device is in the first configuration, a first portion of the holder element is fastened directly to the first end wall, and a second portion of the holder element is fastened directly to the piston.
6. A device according to claim 2, wherein the piston includes a pressure application portion extending transversely relative to the axis of the body, the housing being present in said pressure application portion.
7. A device according to claim 5, wherein the piston is provided with a skirt extending towards the first end wall, the second portion of the holder element being fastened directly to the skirt.
8. A device according to claim 1, having a plurality of holder elements distributed around the axis of the body.
9. An extinguisher including a device for dispensing a pressurized material according to claim 1, the tank of said device containing an extinguishing agent.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Other characteristics and advantages of the present invention appear from the following description made with reference to the accompanying drawings, which show embodiments having no limiting character. In the figures:
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
DETAILED DESCRIPTION OF THE INVENTION
[0027]
[0028] In the example shown, the pyrotechnic gas generator 130 fastened to the first end wall 120 comprises a pyrotechnic charge 131 that, on combustion, generates gas for pressurizing the pressurizing chamber 160. The gas generator 130 has an opening 132 (
[0029] The second end wall 140 of the device 100 is provided with an outlet port 142, which in the example shown is constituted by a through hole formed in the second end wall 140. In the first configuration shown herein, the outlet port 141 is obstructed by a membrane 142 that is configured to break when a determined pressure threshold in the tank 170 is exceeded in order to deliver the material pressurized in that way.
[0030] The piston 150 is of cylindrical shape, and comprises a pressure application portion 151 in the form of a disk that extends transversely relative to the axis A, together with a cylindrical skirt 152 that extends from the portion 151 towards the first end wall 120. The portion 151 has a groove 153 containing a toroidal gasket 154 that provides sealing between the pressurizing chamber 160 and the tank 170.
[0031] The device 100 also has a plurality of holder elements that are constituted by split tubes 180 in the example shown. Such a split tube 180 is shown in perspective in
[0032] Each split tube 180 extends along an axis parallel to the axis A of the body 110 of the device 100. In the first configuration of the presently-described device, the split tubes 180 present a degree of resilience and they exert a clamping force in the housings 133 and 155. These clamping forces serve to hold the piston 150 in position in the device 100 in the first configuration, and together they define a holding force that opposes any movement of the piston 130 in the body 110. The connections between each split tube 180 and the piston 150, and between each split tube 180 and the gas generator 130 are reversible, i.e. each split tube 180 can be removed from a housing 133 or 155 by exerting a force on the split tube 180 that opposes the clamping force associated with each of the housings 133 and 155. When assembling the device 100, the split tubes 180 may be inserted by force into the housings 133 and 155. In the example shown, in the first configuration, the portion 151 of the piston 150 and the gas generator 130 are not in contact with each other, i.e. the split tubes 180 are of such a size as to leave a gap between the portion 151 and the gas generator 130 so as to further reduce any risk of the piston 150 striking the gas generator 130 in the event of impacts or vibration.
[0033]
[0034]
[0035] In a variant that is not shown, each split tube 180 could remain fastened to the piston 150 after the gas generator 130 has been triggered. Under such circumstances, the clamping force between each split tube 180 and the corresponding housing 155 in the piston 150 is strictly greater than the clamping force that exists between each split tube 180 and the corresponding housing 133 in the gas generator 130.
[0036]
[0037] In the presently-described example, the piston 250 when in the first configuration is held in position in the body 210 by three split tubes 280 (only one tube 180 is visible in the section shown). In the above-described device 100, the holder elements constituted by the split tubes 180 connect the piston 150 indirectly to the first end wall 120, i.e. via another part that is secured to the first end wall 120 and that is constituted specifically by the gas generator 130. In the example of
[0038] It should be observed that the invention is not limited to the two embodiments described above. In particular, the holder elements may be of shapes other than that shown, so long as they extend generally in the direction given by the axis of the body of the device, i.e. providing they present a non-zero component along that axis. By way of example, each holder element may present two ends, each of which is parallel to the axis of the body, together with a portion between the two ends that is not parallel to the axis of the body.
[0039] The invention may also apply to a device comprising a body having a shape that is other than cylindrical, or that includes a piston without a skirt.
[0040] In an embodiment that is not shown, one or more holder elements may be fastened directly to the first end wall of the device at one end and to the pressure application portion of the piston at another end. In yet other embodiments that are not shown, the holder element may be integral with the piston, with the first end wall, or with the pyrotechnic gas generator, i.e. it may form a portion in relief on the piston, on the first end wall, or on the gas generator, that is to co-operate with a housing so as to hold the piston while the device is in the first configuration.