Thermal Protection Device for a Quick Coupling Connector
20240123927 ยท 2024-04-18
Assignee
Inventors
Cpc classification
F16L59/11
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K1/04
PERFORMING OPERATIONS; TRANSPORTING
F16L59/188
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L59/145
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A thermal protection device includes a cover including a wall, according to a longitudinal axis, with a rear portion adapted to be mounted on the connector so as to surround it at least partially and with a front portion adapted to be mounted on the tubular element and to hold it by a mechanical connection.
Claims
1. A thermal protection device for a quick coupling connector with at least one tubular element comprising a cover comprising a wall provided, according to a longitudinal axis, with a first portion adapted to be mounted on the connector so as to surround it at least partially and with a second portion adapted to be mounted on the tubular element and to hold it by a mechanical connection, wherein in the mounted state, the distance separating the wall of the cover and the connector and/or the tubular element is different from zero in order to create a spacing air gap and in that the second portion internally supports a clipping member adapted to be mounted on the tubular element and to hold it by a clipping mechanical connection.
2. The device according to claim 1, wherein the wall of the cover has, according to a transverse section, a U-like general shape open downwards.
3. The device according to claim 1, wherein the clipping member is made integrally in one-piece with the wall of the cover.
4. The device according to claim 1, wherein the clipping member has a clamp-like general shape.
5. The device according to claim 1, wherein the clipping member extends internally at a spacing distance from the wall of the cover.
6. The device according to claim 1, wherein the clipping member comprises a clamp with an omega-like general shape with a top portion extending downwards by two clamp branches and is connected by a material bridge by its top portion to the wall of the cover.
7. The device according to claim 6, wherein the clipping member is obtained by folding a material strip extending longitudinally from one edge of the wall of the cover, the material strip delimiting a proximal portion configured to form the material bridge and a distal portion configured to form the clipping member, the strip being folded in two in the proximal portion so as to bring the distal portion opposite an internal surface of the wall of the cover and the distal portion being folded like a clamp.
8. The device according to claim 1, wherein the cover is made of a material essentially comprising stainless steel or surface-treated steel.
9. The device according to claim 1, wherein the cover is molded into one-piece by injection of a plastic material.
10. The device according to claim 9, wherein the cover is made of a thermosetting plastic material comprising a reinforcing component consisting of fibers and/or beads and/or powders of glass, calcium carbonate, mica and/or talc.
11. The device according to claim 1, wherein the first portion of the cover is internally provided with feet for wedging the connector inside the cover.
12. The device according to claim 11, wherein the wedging feet extend at a spacing distance with respect to an inner surface of the wall of the cover.
13. The device according to claim 11, wherein each wedging foot is formed by a fold of a material strip extending from one edge of the wall of the cover towards the inside of the cover.
14. A set comprising a quick coupling connector, a tubular element provided with a fitting cooperating with a complementary fitting of the connector, wherein the set further comprises a thermal protection device according to claim 1.
15. The set according to claim 14, wherein the tubular element comprises a thermal protection sheath.
Description
[0028] The invention will be better understood and its advantages will appear better, upon reading the following detailed description of some embodiments shown as non-limiting examples. The description refers to the appended drawings wherein:
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[0034]
DETAILED DESCRIPTION OF THE INVENTION
[0035] In
[0036] In the example illustrated by the figures, the quick coupling connector bears the reference 100 and the tubular element bears the reference 20.
[0037] In the illustrated example, as shown in
[0038] More particularly yet not exclusively, this invention applies to the technical field of thermal regulation of a battery pack of a motor vehicle. In the preferred embodiment of the invention, the set 10 comprising the tubular element 20 and the connector 100 is part of a thermal regulation circuit of the battery pack.
[0039] More particularly, according to the invention, in order to thermally protect the thermal regulation circuit of the automotive vehicle, the set 10 further comprises a thermal protection device 30.
[0040] In particular, the device 30 comprises a cover comprising a wall 32 provided, according to a longitudinal axis, with a first portion at the rear P1 adapted to be mounted on the connector 100 so as to surround it at least partially and with a second portion at the front P2 adapted to be mounted on the tubular element 20 and to hold it by a mechanical connection.
[0041] In one variant which is not illustrated in the figures, the connector 100 may be a T-shaped connector and the cover 30 may comprise in this case a first central portion P1 adapted to be mounted on the connector 100 and second and third lateral portion P2 adapted to be mounted on each of the tubular elements 20 each coupled to one branch of the connector 100.
[0042] As shown in
[0043] Furthermore, in the preferred embodiment of the invention, preferably, the wall 32 also comprises a dorsal wall 32D closing the cover 32 at the rear, Thanks to this dorsal wall 32D, the connector 100 is thermally protected over an entire periphery.
[0044] Preferably, in the mounted state, the distance separating the wall 32 of the cover 30 and the connector 100 and/or the tubular element 20 is different from zero in order to create a spacing air gap. This air gap allows thermally insulating the connector 100 and/or the tubular element 20 then allowing slowing down the propagation of the external temperature to the surface of the connector 100 or to the surface of the tubular element 20.
[0045] In the preferred embodiment of the invention, the front portion P2 internally supports a clipping member 34 adapted to be mounted on the tubular element 20 and to hold it by a clipping mechanical connection.
[0046] As shown in
[0047] In the illustrated example, the clipping member 34 is made integrally in one-piece with the wall of the cover 32. For example, the clipping member 34 comprises a clamp having a cross-section with an omega- or C-like general shape with a top portion 40 extending downwards by two clamp branches 38 and is connected by a material bridge 36 by its top portion 40 to the wall 32 of the cover 30.
[0048] Preferably, the cover 30 is made of a metallic material. For example, the cover 30 is made of a material essentially comprising stainless steel or surface-treated steel. In the described example, the clipping member 34 is thus obtained by folding a material strip extending longitudinally from one edge of the wall 32 of the cover 30, the material strip delimiting a proximal portion configured to form the material bridge 36 and a distal portion configured to form the clipping member 34, the strip being folded in two in the proximal portion so as to bring the distal portion opposite an internal surface of the wall 32 of the cover 30 and the distal portion being curved in two to form the clamp branches 38.
[0049] Furthermore, preferably, the rear portion P1 of the cover 30 is internally provided with feet 50 for wedging the connector 20 inside the cover 30. For example, the wedging feet 50 extend at a distance from an inner surface of the wall 32 of the cover 30. This spacing distance formed between the wall 32 and the fold 50 has the advantage of creating a heat-insulating air gap, which will effectively limit the propagation of heat from the wall 32 towards the fold 50 and therefore towards the connector 100.
[0050] In the preferred embodiment of the invention, each wedging foot 50 is, for example, formed by a fold, towards the inside of the cover 30, of a material strip extending from one edge of the wall 32 of the cover 30.
[0051] In a variant of the invention which is not illustrated, the cover 30 is made of a thermosetting material comprising a reinforcing component consisting of fibers and/or beads and/or powders of glass, calcium carbonate, mica and/or talc. In this case, for example, the cover 30 is made so as to be molded into one-piece by injection of a plastic material.
[0052] Preferably, the tubular element 20 also comprises a thermal protection sheath, for example comprises a thermal protection sheath, for example made by superposing a glass fiber layer and a silicone layer.
[0053] The main aspects of operation of a set according to the invention will now be described with reference to
[0054] The set 10 comprises the quick coupling connector 100, the tubular element 20, in the form of a flexible hose provided with a fitting which is adapted to cooperate with a complementary fitting 104 of the connector 100.
[0055] Initially, the tubular element 20 is covered with a thermal protection sheath. Thus, the connector 100 and the tubular element 20 are coupled to each other, for example by fitting the fir-tree end 104 of the connector 100 into the flexible hose 20 formed by the tubular element 20.
[0056] Afterwards, the thermal protection device or cover 30 is mounted on the set 10 comprising the tubular element 20 and the connector 100. The rear portion P1 is assembled around the connector 100 and the front portion P2 is mounted on the flexible hose 20, preferably by clipping thanks to the member 34.
[0057] The cover 30 then serves as a heat shield which then prevents a very rapid damaging of the set 10 in the vent of exposure to extreme temperatures.
[0058] Of course, the invention is not limited to the previously-described embodiments. Other embodiments within the reach of a person skilled in the art may also be considered without departing from the invention defined by the claims hereinafter.