Annular seal for motor vehicle heat exchanger
11137219 ยท 2021-10-05
Assignee
Inventors
Cpc classification
F28D1/05366
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D7/0066
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F9/165
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F28F9/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An annular seal for a motor vehicle heat exchanger is configured to be stretched between two opposite supports that the annular seal surrounds. The annular seal includes two opposite support parts that cooperate with the two supports, two connecting parts joining the support parts together, and an annular bead that deforms elastically by axial compression perpendicular to a plane parallel to the annular shape of the seal. Additionally, said annular bead is extending in the support and connecting parts. Further, the cross section of the annular bead between each support part and the connecting parts to which the annular bead is joined changes such that a radial dimension of the annular bead, measured in a median plane of the seal parallel to the annular shape of the seal, is smaller in the support part than in the connecting parts.
Claims
1. An exchanger comprising: a collector box connected to heat exchange tubes, wherein the collector box comprises: a cover, a collector plate, and a seal inserted between the cover and the collector plate, wherein the seal comprises: two opposite support parts that cooperate with two supports between which the seal is stretched, two connecting parts joining the support parts together; and an annular bead that deforms elastically by axial compression from the cover substantially perpendicular to a plane parallel to the annular shape of the seal, said annular bead extending in the support and connecting parts into a deformation space parallel to the plane, wherein the annular bead is separate from the cover, wherein the cross section of the annular bead between each support part and the connecting parts to which the annular bead is joined changes such that a radial dimension of the annular bead, measured in a median plane of the seal parallel to the annular shape of the seal, is smaller in the support part than in the connecting parts.
2. The exchanger according to claim 1, wherein the support associated with a support part of the seal is formed by the external contour of a first support tube of the heat exchanger, the support part surrounding said first support tube.
3. The exchanger according to claim 2, wherein each support part rests against a secondary support formed by a second adjacent support tube of the first support tube, such that said support part comprises a reinforcing part extending between the first and the second support tubes.
4. The exchanger according to claim 1, wherein the collector plate comprises a channel delimited by two substantially concentric annular edges, the annular seal being disposed in the channel.
5. An exchanger comprising: a collector box connected to heat exchange tubes, wherein the collector box comprises: a cover; a collector plate comprising a channel delimited by two substantially concentric annular edges; and a seal inserted in the channel and compressed between the cover and the collector plate, wherein the seal comprises: two opposite support parts that cooperate with two supports between which the seal is stretched, two connecting parts joining the support parts together; and an annular bead having a circular cross section that deforms elastically by axial compression from the cover substantially perpendicular to a plane parallel to the annular shape of the seal, wherein a cross-section of the annular bead has a smaller radial dimension in the support parts, thereby limiting a width of the channel, wherein the annular bead is separate from the cover, wherein the cross section of the annular bead between each support part and the connecting parts to which the annular bead is joined changes such that a radial dimension of the annular bead, measured in a median plane of the seal parallel to the annular shape of the seal, is smaller in the support part than in the connecting parts.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
(7) A first embodiment of a heat exchanger 1 according to the invention is depicted in
(8) The heat exchanger 1 comprises a collector box, or water box, connected to flat heat exchange tubes 2 which are parallel to one another. This collector box comprises a collector plate 4 and a cover. The collector plate 4 is substantially rectangular in shape.
(9) The heat exchanger 1 comprises two seal paths 5 extending along the periphery of the collector plate 4, delimited by an annular outer edge 6, generally substantially rectangular in shape, shared by the two paths 5. Towards the inside, the paths 5 are delimited by the tubes 2.
(10) An annular seal 10 according to a first embodiment of the invention is disposed along two paths 5 in such a manner as to be inserted between the cover foot 11 (partially represented in
(11) The annular joint 10 is represented in
(12) In this stretched position, the annular seal 10 has an annular general shape similar to that of the periphery of the collector plate 4, and is therefore substantially rectangular.
(13) The annular seal 10 comprises an annular bead 14 intended to be elastically deformed by axial compression substantially perpendicular to a plane parallel to the annular form of the seal 10, in other words perpendicular to the plane of the collector plate 4.
(14) The annular seal 10 comprises two opposite support parts 16 each intended to cooperate with the support tubes 12, and two connecting parts 18 linking the support parts 16 together, respectively.
(15) In this stretched position between the two support tubes 12, the connecting parts 18 are substantially straight due to the fact that the seal 10 is substantially rectangular in shape.
(16) Moreover, each support part 16 comprises a support sub-part 20 which is substantially straight and curved transitional sub-parts 22 between the connecting parts 18 and the support sub-part 20.
(17) The cross section of the bead 14 between each support part 16 and the connecting parts 18 to which it is joined changes in such a manner that its dimension measured in a median plane of the seal 10 parallel to the annular form of the seal 10, in other words the radial dimension, is smaller in the support part 16 than in the connecting parts 18.
(18) Hence, in the support parts 16 the bead 14 requires less space to spread out under the effects of compression than in the connecting parts 18.
(19) The bead 14 therefore has space to spread out under the effects of compression in the centrifugal direction indicated by the arrows C, taking account of the annular shape of the seal 10. This allows the seal 10 to create the seal between the collector plate 4 and the cover foot 11 of the collector box (see
(20) Moreover, the bead 14 remains stable in the support parts 16 as it is held by the support tubes 7 and therefore there is little tendency for it to pivot.
(21) The cross section of the bead 1 changes in the transitional sub-parts 22.
(22) Hence, in the first embodiment represented in
(23) In a second embodiment of the annular seal 10 depicted in
(24) In the two embodiments illustrated in
(25) When the annular seal 10 is stretched between the support tubes 12, as shown in
(26) An exemplary change in the cross section of the bead 14 can be seen (in the non-flattened state) in
(27) In the support sub-part 20, the bead 14, as represented in
(28) When the seal 10 is compressed, this oval shape leaves the bead 14 of the support sub-parts 20 a larger deformation space 27 than if it had been circular in section, as is the case with the bead 14 in the connecting parts 18 and, to a lesser extent, the transitional sub-parts 22.
(29) Preferably in each support part 16 and, more particularly, in each support sub-part 20, the seal 10 comprises a radial extension of the bead 14 forming a support heel 28 on the corresponding support tube 12. It will be noted that, in the example illustrated in
(30) In the connecting parts 18, the bead 14, as represented in
(31) And in these connecting parts 18, the bead 14 is stable thanks to its circular section.
(32) When the seal is flattened by the cover foot 11, it may extend towards the tube 2 and, in particular, towards the collar 29.
(33) In the transitional sub-parts 22, the bead 14, as represented in
(34) When the seal 10 is compressed, this allows the bead 14 of the transitional sub-parts 22 to be left a larger deformation space 27 than the bead 14 of the connecting parts 18.
(35) In these transitional sub-parts 22, the bead 14 has a deformation space 27 which is likewise larger than in the support sub-parts 20, as the seal does not have a support heel.
(36) According to a variant of the embodiment, the section of the seal in the connecting parts 18 may exhibit another shape, in particular it may be oval with an intermediate shape between the oval of the transitional parts and the circular section.
(37) According to another variant of the embodiment depicted in
(38) In a second embodiment of the heat exchanger 1 according to the invention, as represented in
(39) An annular seal 10 according to a third embodiment of the invention is disposed in the channel 30.
(40) The annular seal 10 is similar to the seal according to the first or the second embodiment, except for the presence of the reinforcing sub-part 26.
(41) In effect, since the channel 30 extends over the entire contour of the collector plate 4 and has a generally annular shape, it allows the material creep imbalances between the connecting parts 18 and the supporting parts 16 to be limited when the seal 10 is compressed.
(42) According to another embodiment which is not shown, the support of the annular seal is created only on the tube. According to another embodiment, the annular seal rests only on the collar.
(43) The invention is not restricted to the embodiments shown and other embodiments will appear clear to the person skilled in the art.
(44) Hence, in variants which are not shown, the cross section of the annular bead changes from a square shape in the connecting parts into a rectangular shape in the support parts.