Portable inflation device
10626887 ยท 2020-04-21
Assignee
Inventors
Cpc classification
F04F5/48
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04F5/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04F5/50
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A63B29/02
HUMAN NECESSITIES
F04F5/466
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04F5/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04F5/48
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A63B29/02
HUMAN NECESSITIES
A62B33/00
HUMAN NECESSITIES
F04F5/50
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A portable device for inflating at least one envelope includes an inlet for surrounding air (1), at least one nonreturn valve, at least one compressed gas inlet (2), at least one intake chamber (3), at least one connection, such as an acceleration cone (5), with a longitudinal median symmetry axis (X, X), arranged in the extension of at least one intake chamber (3), and connected to at least one inflatable envelope, and an intermediate chamber connecting at least one compressed gas inlet (2) to at least one intake chamber (3). The intermediate chamber and the at least one intake chamber (3) are separated by a wall arranged transversely to the axis (X, X) and connected by at least one orifice located in the transverse wall (8).
Claims
1. A portable device (100) for inflating at least one inflatable envelope (4) during onset of an avalanche, said device (100) built into a backpack and comprising: an inlet for surrounding air (1), at least one non-return valve, at least one compressed gas inlet (2), at least one intake chamber (3), at least one connection located along a longitudinal median symmetry axis (X, X), arranged as an extension of the at least one intake chamber (3), and connected to the at least one inflatable envelope (4), an intermediate chamber (6) connecting at least one compressed gas inlet (2) to the at least one intake chamber (3), wherein the intermediate chamber (6) and the at least one intake chamber (3) are separated by a wall (8) arranged transversely to the axis (X, X) and are connected by at least one orifice (7) located in said wall (8).
2. The device (100) according to claim 1, wherein the wall (8) is formed by an annular peripheral rib, extending to an inner wall (10) of the at least one intake chamber (3).
3. The device (100) according to claim 1, wherein the at least one orifice (7) comprises a passage made by a cutout in a periphery of the wall (8).
4. A device (100) for inflating at least one inflatable envelope (4), said device (100) comprising: an inlet for surrounding air (1); at least one non-return valve; at least one compressed gas inlet (2); at least one intake chamber (3); at least one connection located along a longitudinal median symmetry axis (X, X), arranged as an extension of the at least one intake chamber (3), and connected to the at least one inflatable envelope (4); an intermediate chamber (6) connecting at least one compressed gas inlet (2) to the at least one intake chamber (3); wherein the intermediate chamber (6) and the at least one intake chamber (3) are separated by a wall (8) arranged transversely to the axis (X, X) and are connected by at least one orifice (7) located in said wall (8); and wherein the intermediate chamber (6) comprises an inner side face of a wall joining a side wall (9) of the an inlet for surrounding air (1), an outer lateral face of one wall comprising at least one compressed gas inlet (2), and a transverse face of the wall (8) arranged in an extension of a transverse outer face (16) of an inner wall (10) of the at least one intake chamber (3).
5. The device (100) according to claim 4, wherein the wall (8) comprises an outer peripheral face (11), while the transverse outer face (16) and the inner face of the inner wall (10) form an edge (17) which is assembled at the end against an outer peripheral face (11) of the wall (8).
6. The device (100) according to claim 5, wherein the outer peripheral face (11) has an incline of between 5 and 15 degrees, while the inner face of the inner wall (10) has an incline of between 0 and 15 degrees.
7. The device (100) according to claim 6, wherein the outer peripheral face (11) has an incline of between 9 and 13 degrees, while the inner face of the inner wall (10) has an incline of between 0 and 10 degrees.
8. The device (100) according to claim 5, wherein the at least one orifice (7) is arranged in the wall (8) opening at the edge (17).
9. The device (100) according to claim 1, wherein the intermediate chamber (6) is located at a periphery of the inlet for surrounding air (1).
10. The device (100) according to claim 1, wherein the intermediate chamber (6) is arranged in a rear position of the at least one intake chamber (3).
11. The device (100) according to claim 2, wherein the at least one orifice (7) comprises a passage made by a cutout in a periphery of the wall (8).
12. A device (100) for inflating at least one envelope (4), said device (100) comprising: an inlet for surrounding air (1); at least one non-return valve; at least one compressed gas inlet (2); at least one intake chamber (3); at least one connection located along a longitudinal median symmetry axis (X, X), provided as an extension of the at least one intake chamber (3), and connected to the at least one inflatable envelope (4); an intermediate chamber (6) connecting at least one compressed gas inlet (2) to the at least one intake chamber (3); wherein the intermediate chamber (6) and the at least one intake chamber (3) are separated by a wall (8) arranged transversely to the axis (X, X) and connected by at least one orifice (7) located in said wall (8), said wall (8) formed by an annular peripheral rib extending to an inner wall (10) of the at least one intake chamber (3); and wherein the intermediate chamber (6) comprises an inner side face of a wall joining a side wall (9) of the inlet for surrounding air (1), an outer lateral face of one wall comprising the at least one compressed gas inlet (2), and a transverse face of the wall (8) arranged in an extension of a transverse outer face (16) of an inner wall (10) of the at least one intake chamber (3).
13. The device (100) according to claim 3, wherein the intermediate chamber (6) comprises an inner side face of a wall joining a side wall (9) of the inlet for surrounding air (1), an outer lateral face of one wall comprising the at least one compressed gas inlet (2), and a transverse face of the wall (8) arranged in an extension of a transverse outer face (16) of an inner wall (10) of the at least one intake chamber (3).
14. The device (100) according to claim 5, wherein the outer peripheral face (11) has an incline of between 9 and 13 degrees, while the inner face of the inner wall (10) has an incline of between 0 and 10 degrees.
15. The device (100) according to claim 6, wherein the at least one orifice (7) is arranged in the wall (8) opening at the edge (17).
16. The device (100) according to claim 7, wherein the at least one orifice (7) is arranged in the wall (8) opening at the edge (17).
17. The device (100) according to claim 2, wherein the intermediate chamber (6) is located at a periphery of an inlet for surrounding air (1).
18. The device (100) according to claim 3, wherein the intermediate chamber (6) is located at a periphery of an inlet for surrounding air (1).
19. The device (100) according to claim 4, wherein the intermediate chamber (6) is located at a periphery of an inlet for surrounding air (1).
Description
(1) Other characteristics and advantages of the invention will become apparent from the description which follows, with reference to the accompanying drawings which are given by way of non-limiting examples.
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(15) Thus, the device (100) according to the invention, as illustrated in
(16) It is understood as an inlet for surrounding air (1), the zone precedes at least one inlet chamber (3). At least one opening, arranged in a lateral position or longitudinally, supplies the air inlet (1) with surrounding air.
(17) A connection, such as an acceleration cone (5), is in some embodiments partitioned into a number of acceleration cones (5).
(18) An intermediate chamber (6) is, according to other embodiments, represented by a number of intermediate chambers (6) advantageously contiguous, advantageously at the periphery of an inlet for surrounding air (1), and fed by a number of compressed gas inlets (2). In the following description, reference will be made to an intermediate chamber (6) for a number of intermediate chambers (6), as explained above.
(19) Note that at least one non-return valve advantageously closes the inlet for surrounding air (1) or each of the openings supplying the latter, namely at least one opening arranged as explained above, and/or an internal part of the device, such as between the junction of at least one intake chamber (3) and one acceleration cone (5), and/or at the inlet of at least one envelope (4).
(20) It should be noted that at least one compressed gas inlet (2) communicates with at least one intake chamber (3) via an intermediate chamber (6).
(21) At least one intake chamber (3) is located in front of one intermediate chamber (6). At least one compressed gas inlet (2) is located at the periphery of one intermediate chamber (6). A canister (20) of compressed gas and a firing pin as a triggering system (15) are connected to at least one compressed gas inlet (2). The triggering system is itself connected to an activation handle (not shown).
(22) It is understood that the front or rear corresponds to the positioning of one part or of one zone, according to the direction of the fluid, for example the inlet for surrounding air (1) is arranged at the back of the intake chamber (3), which is itself located in front of the intermediate chamber (6).
(23) It is also understood that at least one portion of an intermediate chamber (6) and at least a portion of at least one intake chamber (3) are aligned along the same longitudinal axis and advantageously share the same cross section. As previously stated, this cross section is represented by the wall (8) of the intermediate chamber (6).
(24) Thus, the compressed gas is injected by at least one compressed gas inlet (2), passes through an intermediate chamber (6), opens into at least one intake chamber (3) through at least one orifice (7) and creates a depression which causes a suction phenomenon of the surrounding air, via a an inlet for surrounding air (1) by at least one opening, to an acceleration cone (5) for inflating at least one envelope (4). At least one intake chamber (3) thus corresponds to an enriched gas zone.
(25) The injection of compressed gas is accelerated by the venturi effect, which increases the suction phenomenon of the surrounding air. This following process allows the inflation of at least one envelope (4) with a relatively small volume of compressed gas.
(26) An orifice (7) is advantageously represented by any means allowing a sectional narrowing of an intermediate chamber (6) at a transverse wall (8), allowing acceleration of the compressed gas in at least one intake chamber (3).
(27) According to one embodiment, as illustrated in
(28) Thus, the section of the device being preferably cylindrical, reference will be made, in particular for an intermediate chamber (6), to a wall or an inner side face for a wall or a face of a smaller section, and a wall or an outer side face for a wall or a face of larger section, arranged on the periphery of that of smaller section.
(29) More generally, reference will be made to the terms inside and outside, for elements or parts of elements, near and distant, respectively to the axis (X, X).
(30) Reference will also be made to a wall or a lateral face for a wall, or a face at the periphery of the axis (X, X), a longitudinal axis for an axis parallel to the axis (X, X), and a wall or a transverse face for a wall, or a face arranged perpendicularly to the axis (X, X).
(31) According to embodiments, as illustrated in
(32) According to embodiments, as illustrated in
(33) According to the embodiment illustrated in
(34) It is understood that the transverse face of the wall (8) and the transverse outer face (16) can be inclined. It is also understood that the inclines of the different faces may be different. For the sake of brevity, an inclined wall (8) is considered as being transverse in the description, without departing from the scope of the invention.
(35) It should be added that according to one embodiment, the outer peripheral face (11) and the inner peripheral face (12) are advantageously complementary and arranged in opposition. In other words, at least one orifice (7) consists of a passage made by a cutout at the outer peripheral face (11) of the transverse wall (8), said cutout crossing the transverse wall (8) and opening out towards the periphery, but it could be otherwise, at least one orifice (7) is advantageously made in the full transverse wall (8) of the intermediate chamber (6).
(36) According to some embodiments, these open cutouts, namely the orifices (7) are advantageously regularly spaced on the projecting rib, and advantageously comprise between 1 and 20, preferably between 1 and 12.
(37) According to some preferred embodiments, as illustrated in
(38) According to one of the preceding preferred embodiments, as illustrated in
(39) At least one orifice (7) represented by a narrowing ending in a small diameter section is advantageously achieved by a partial drilling method, as illustrated in
(40) More specifically, the slope of the outer peripheral face (11) is between 5 and 15 degrees, preferably between 9 and 13 degrees, while the slope of the inner face of the inner wall (10) is between 0 and 15 degrees, preferably between 0 and 10 degrees, more preferably composed of a first rear portion at 0 degrees, namely arranged parallel to the axis (X, X) and a second portion at between 0 and 10 degrees, as illustrated in
(41) These particular configurations make it possible to obtain a significant inflating power, creating an inflation push-off strength that is significantly greater than existing devices.
(42) The device (100) according to the invention, preferably consists of different interlocking parts, as illustrated in
(43) The interlocking of the parts is advantageously carried out by sliding or screwing into each other.
(44) The various parts advantageously comprise threading and tappings, or interlocking parts, adapted to their cooperation.
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(46) Parts (13, 14), according to the embodiment illustrated in
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(49) Note that a portion of the inner peripheral surface (12) corresponds to the outer portions of the orifices (7).
(50) Thus, at least one orifice (7) allowing acceleration of the compressed gas, by venturi effect, is advantageously located at the junction of these two parts (13, 14), preferably represented by at least one clearance at the outer peripheral surface (11) of the rear piece (13), but as has already been pointed out, it could be otherwise, at least one orifice (7) is advantageously made in the full wall (8).
(51) At least one orifice (7) is advantageously represented by a clearance in the form of a rectilinear passage or by a narrowing ending in a small diameter section.
(52) According to one embodiment, as shown in
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(55) The device also comprises, according to this latter embodiment, an additional part comprising the compressed gas inlet (2) and the triggering system (15). The compressed gas inlet (2) partitions the intermediate chamber (6) at the outer portion of the rear piece (13). A complementary piece advantageously fits at the end of the rear end of the rear piece (13), keeping in contact the various parts assembled by interlocking, as illustrated in
(56) The compressed gas is advantageously any gas commonly compressed in a canister (20) or a cartridge, such as carbon dioxide, nitrogen, argon and air.