WO2024046891A1 - Fluid connection system for a heat exchanger - Google Patents

Fluid connection system for a heat exchanger Download PDF

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Publication number
WO2024046891A1
WO2024046891A1 PCT/EP2023/073329 EP2023073329W WO2024046891A1 WO 2024046891 A1 WO2024046891 A1 WO 2024046891A1 EP 2023073329 W EP2023073329 W EP 2023073329W WO 2024046891 A1 WO2024046891 A1 WO 2024046891A1
Authority
WO
WIPO (PCT)
Prior art keywords
stud
connection system
ear
tubing
heat exchanger
Prior art date
Application number
PCT/EP2023/073329
Other languages
French (fr)
Inventor
Christophe Denoual
Original Assignee
Valeo Systemes Thermiques
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Valeo Systemes Thermiques filed Critical Valeo Systemes Thermiques
Publication of WO2024046891A1 publication Critical patent/WO2024046891A1/en

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F9/00Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
    • F28F9/02Header boxes; End plates
    • F28F9/0246Arrangements for connecting header boxes with flow lines
    • F28F9/0251Massive connectors, e.g. blocks; Plate-like connectors
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28DHEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
    • F28D9/00Heat-exchange apparatus having stationary plate-like or laminated conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall
    • F28D9/0031Heat-exchange apparatus having stationary plate-like or laminated conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall the conduits for one heat-exchange medium being formed by paired plates touching each other
    • F28D9/0043Heat-exchange apparatus having stationary plate-like or laminated conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall the conduits for one heat-exchange medium being formed by paired plates touching each other the plates having openings therein for circulation of at least one heat-exchange medium from one conduit to another
    • F28D9/005Heat-exchange apparatus having stationary plate-like or laminated conduit assemblies for both heat-exchange media, the media being in contact with different sides of a conduit wall the conduits for one heat-exchange medium being formed by paired plates touching each other the plates having openings therein for circulation of at least one heat-exchange medium from one conduit to another the plates having openings therein for both heat-exchange media
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F9/00Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
    • F28F9/02Header boxes; End plates
    • F28F9/0246Arrangements for connecting header boxes with flow lines
    • F28F9/0248Arrangements for sealing connectors to header boxes
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F9/00Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
    • F28F9/02Header boxes; End plates
    • F28F9/0246Arrangements for connecting header boxes with flow lines
    • F28F9/0256Arrangements for coupling connectors with flow lines
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F9/00Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
    • F28F9/02Header boxes; End plates
    • F28F9/0246Arrangements for connecting header boxes with flow lines
    • F28F9/0256Arrangements for coupling connectors with flow lines
    • F28F9/0258Arrangements for coupling connectors with flow lines of quick acting type, e.g. with snap action
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28DHEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
    • F28D21/00Heat-exchange apparatus not covered by any of the groups F28D1/00 - F28D20/00
    • F28D2021/0019Other heat exchangers for particular applications; Heat exchange systems not otherwise provided for
    • F28D2021/008Other heat exchangers for particular applications; Heat exchange systems not otherwise provided for for vehicles
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F2230/00Sealing means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F2275/00Fastening; Joining
    • F28F2275/08Fastening; Joining by clamping or clipping
    • F28F2275/085Fastening; Joining by clamping or clipping with snap connection
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F2275/00Fastening; Joining
    • F28F2275/14Fastening; Joining by using form fitting connection, e.g. with tongue and groove
    • F28F2275/146Fastening; Joining by using form fitting connection, e.g. with tongue and groove with bayonet connections
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F2275/00Fastening; Joining
    • F28F2275/20Fastening; Joining with threaded elements

Definitions

  • the present invention relates to the field of cooling circuits in particular for motor vehicles and relates more precisely to a fluid inlet or outlet connection system making it possible to connect a heat exchanger to such a circuit.
  • the heat exchangers fitted to the air conditioning loops of vehicles are arranged to allow the adjacent circulation in two separate spaces of two different fluids, so as to carry out a heat exchange between these fluids, without mixing them.
  • the fluids circulate under pressure.
  • Such an exchanger 2 is shown in Figure 1. It is made up of a bundle of heat exchange plates and fluidic connections 8, 10 connecting this bundle to the circuits with which the exchanger is connected. While the harness is standard for use in many vehicles, the fluid connections are specific to each cooling system design intended for a particular vehicle model.
  • the fluidic connections 8 intended for the refrigerant fluid circulating in such an exchanger form an aluminum connection block brazed on a cheek 6 of the exchanger 2, this cheek being an external metal plate of the exchanger 2 bordering the bundle of plates , itself arranged in an aluminum casing 4.
  • the fluid connections 8 are cylindrical orifices in the connection block, into which hoses with an aluminum end piece fitted with a seal are inserted.
  • This connection block can be adapted to a specific cooling circuit of a vehicle, in particular the arrangement of the holes in the connection block may be different.
  • connection block limits the design possibilities, in particular the shape of the orifices in the connection block. It is indeed difficult to machine non-straight holes in the connection block.
  • the orifices of the plate bundle collector take up a significant amount of space in the corners of the cheek 6, the surface of the connection block that must be brazed to the edges of the corners of the cheek 6 may prove insufficient to carry out this brazing.
  • the current manufacture of the connection blocks of such heat exchangers requires heavy and complex brazing tools, in particular for brazing together the bundles of such heat exchangers with their connection blocks, due to the size of the brazing furnace required. and solder brackets which must be adapted to the different locations and connection blocks to allow their assembly on the harnesses. The number of plates in the bundle is then limited to allow flat brazing of the device.
  • the present invention at least partly remedies the drawbacks of the prior art, by providing a connection system for a heat exchanger, a heat exchanger and a method of assembling the connection system according to the invention, which allow a great freedom of design of the fluidic connections of the heat exchanger.
  • connection system for a heat exchanger, the connection system comprising:
  • a tube mounted watertight on the metal structure, forming a connection with the fluid inlet or outlet port, the tube comprising at least one ear,
  • the device for maintaining compression comprises at least one stud passing through the ear and secured to the metallic structure, and at least one element of blocking of the ear along the stud, the stud comprising at least one housing in which the at least one blocking element is housed.
  • the heat exchanger is firstly brazed or welded with the metallic structure and the pad(s) of the device for maintaining compression, these pads being preferably metallic, then in a second time the tubing, preferably made of a synthetic material (plastic), is compressed along the pad(s).
  • a synthetic material plastic
  • another material is chosen to make the tubing, for example metal. This allows assembly and disassembly of the tubing elsewhere than on the brazing or welding station and therefore provides flexibility for conditioning the heat exchanger.
  • the invention makes it possible to optimize the diameters of the inlet and outlet orifices of the exchanger when these are positioned in the corners of the external metal plate, compared to the solutions of the prior art.
  • the tubes are made of synthetic material, they do not need to be brazed onto one side of the heat exchanger.
  • they can be of very diverse shapes.
  • connection system preferably comprises both an inlet pipe and an outlet pipe each associated with a fluid inlet or outlet orifice, and a compression maintenance device associated with each pipe.
  • the invention applies both to the fluidic connections of the heat exchanger intended for the heat transfer liquid of the heat exchanger, and to the fluidic connections of the heat exchanger intended for the refrigerant fluid, although the invention is more specifically intended for the latter option.
  • the housing of the stud of the device for maintaining compression of the connection system comprises a threaded hole, the blocking element comprising a screw capable of being screwed into the threaded hole passing through an excrescence of a tube end intended to be mounted watertight on the tubing.
  • the tubing is intended to receive an aluminum end of a hose.
  • the hose includes a protrusion, for example an ear, in which a screw presses the protrusion against the ear of the tubing by screwing into the threaded hole. The ear of the tubing thus compresses the tubing against the metal structure, ensuring the tightness of the connection system.
  • the tubing in fact comprises a sealing member, for example a seal, or an overmolding, on its contact surface with the metal structure.
  • the stud comprises a circular groove forming the housing, the blocking element being in the form of a clip, the clip comprising two arms, and the ear comprising two through orifices each receiving one of the two arms of the clip, the two arms enclosing the stud while being housed in the circular groove.
  • This embodiment of the invention does not require specific assembly with the hose, but is compatible with the previous embodiment insofar as the device for maintaining compression possibly has several blocking elements housed in several housings of the stud.
  • the tubing includes another ear, the metal structure comprising another stud secured to the metal structure and passing through the other ear.
  • the device for maintaining compression preferably comprises an element for blocking the other ear along the other stud, the other stud comprising a housing in which the blocking element is housed. This blocking element is for example a clip or a screw as mentioned above.
  • the other pad is also preferably a metal pad brazed or welded to the metal structure.
  • the metal structure comprises a side of the heat exchanger and a complementary plate welded or brazed against the side of the heat exchanger, the stud being integral with the complementary plate.
  • This additional plate provides more space for fixing the tubing to the inlet and outlet ports of the collector of the heat exchanger plate bundle.
  • the other stud is for example positioned on a surface of the complementary plate extending beyond the cheek.
  • the metal structure includes a device for indexing the complementary plate on the cheek and/or the stud on the cheek.
  • This indexing device makes it possible to correctly position the orifices of the complementary plate on those of the heat exchanger cheek, and the tubes on the orifices of the heat exchanger collector.
  • the indexing device comprises for example at least one collar capable of inserting into a corresponding opening of the complementary plate and/or of receiving the stud.
  • connection system comprises an overmolded seal fixed on the cheek of the heat exchanger, on the contour of the fluid inlet or outlet port, this seal molded seal being able to envelop at least partly the base portion of the tubing.
  • the tubing comprises a base portion proximal to the metal structure, and a connection portion connected to the base portion, the connection portion being of smaller section than that of the base portion.
  • This characteristic makes it possible to form a pre-chamber in the tubing.
  • This pre-chamber is advantageous in the case where the orifice of the collector opposite the tubing has a larger section than that of the connection portion. Without this pre-chamber, the sudden widening of the section of the refrigerant circuit, at the level of the cheek of the heat exchanger, generates poor distribution of the refrigerant fluid at the level of the first plates of the bundle of plates of the heat exchanger. heat. By shifting this widening to the level of the prechamber, the distribution of the refrigerant fluid in the heat exchanger is improved.
  • proximal we mean here that the base portion is closer to the metal structure than the connection portion, which is intended to receive a hose tip.
  • the base portion preferably has an internal contour substantially identical to the contour of the fluid inlet or outlet orifice. This characteristic makes it possible to avoid pressure losses.
  • substantially we mean that the internal contour of the base portion overlaps the fluid inlet or outlet orifice to within one or two millimeters.
  • the base portion extends for example over a height of between 2.5 and 13 millimeters. It is, for example, triangular or rectangular in section.
  • the connection portion is, for example, of circular section.
  • the base portion comprises at least one groove receiving a sealing member, for example a seal.
  • the invention also relates to a heat exchanger comprising at least one bundle of plates and at least one connection system according to the invention.
  • the invention finally relates to a method of assembling a connection system according to the invention, said method comprising the steps of:
  • FIG. 1 represents in perspective a face of a metal structure of a connection system according to the invention, according to a first embodiment of the invention
  • FIG. 4 represents in perspective a connection system according to the invention, in the first embodiment of the invention.
  • FIG. 5 represents in perspective a tubing of a connection system according to the invention in the first embodiment of the invention
  • FIG. 6 represents in perspective a connection system according to the invention in a second embodiment of the invention
  • fig 8 represents in perspective a tubing of the connection system of figure 6.
  • a connection system 20 for a heat exchanger, comprises a metallic structure consisting of the cheek 22 of the heat exchanger, closing a beam metal plates of the heat exchanger, and a complementary plate 24 welded or brazed on the cheek 22 of the heat exchanger.
  • the cheek 22 and the complementary plate 24 are therefore metallic, for example made of aluminum.
  • the cheek 22 and the complementary plate 24 comprise two orifices 30 and 32 intended to overlap the fluid inlet and outlet orifices of the heat exchanger.
  • orifice 30 is a refrigerant fluid inlet orifice
  • orifice 32 is a refrigerant fluid outlet orifice.
  • the orifices 30 and 32 are therefore of identical or substantially identical section to those of the collector. the heat exchanger.
  • substantially identical we mean that the orifices 30, 32 overlap with those of the heat collector to within one or two millimeters.
  • an indexing device for the cheek 22 helps to position the complementary plate 24 on the cheek 22.
  • this indexing device comprises two collars 222 and 224 on the cheek 22, being inserted into corresponding orifices of the complementary plate 24. These collars 222 and 224 also serve to position each a metal stud on the complementary plate 24.
  • the collar 224 serves to position a stud 28, metallic and secured by brazing or welding, in the collar 224.
  • Another stud 26, metallic is positioned on the complementary plate 24 thanks to an orifice 25 (visible in Figure 3) of the complementary plate 24, into which the stud 26 is screwed.
  • the stud 26 is welded or brazed to the complementary plate 24, the orifice 25 serving only 'to receive an excrescence of the stud 26.
  • the studs 26 and 28 come from material with the complementary plate 24.
  • the indexing device comprises for example pins on the cheek 22, which are inserted into corresponding orifices of the complementary plate 24, and the complementary plate 24 comprises a device for positioning the metal stud 28, for example a pawn or a collar.
  • the studs 26 and 28 serve to position a tube 34 of the connection system 20 according to the invention, shown in Figure 4, on the complementary plate 24.
  • the tube 34 has two ears 342 and 344 in which are inserted respectively the stud 28 and the stud 26.
  • the tubing 34 is preferably made of synthetic material, that is to say from polymers (plastic material). Alternatively, the tubing 34 is made of aluminum or another metal.
  • a tube such as the tube 34 is mounted in a sealed manner against each fluid inlet or outlet orifice 30, 32.
  • the complementary plate 24 makes it possible to receive at least one ear and a stud corresponding to a tube.
  • the ear 344 and the stud 26 are positioned on a surface of the complementary plate 24 which extends beyond the cheek 22.
  • the plate Additional 24 is not necessary.
  • the metal studs allowing the tubing to be positioned are therefore directly brazed or welded to the cheek 22.
  • the tube 34 comprises a base portion 346, as shown in Figure 5, and a connection portion 348 extending axially the base portion 346.
  • axially we mean in an axial direction parallel to the longitudinal direction of the studs 26, 28, that is to say in the direction of flow of the refrigerant fluid in the tubing 34.
  • the base portion 346 is pressed against the complementary plate 24 via a sealing member (not shown), in particular a seal mounted in a groove 345 dug in the contact surface of the base portion 346 with the complementary plate 24.
  • the sealing member is an overmolding made on this contact surface.
  • the internal section of the base portion 346 is identical or substantially identical to the shape of the orifice 32, that is to say that the internal section of the base portion 346 and orifice 32 overlap exactly, or within one or two millimeters.
  • This internal section extends over a height, that is to say in the axial direction, of 2.5 to 13 millimeters from the external surface of the base portion 346 on which the sealing member is mounted, up to the connection portion 348.
  • the internal section of the base portion 346 is triangular, while the internal section of the connection portion 348 is circular.
  • These internal sections of the connection portion 348 and the base portion 346 are connected by a wall substantially orthogonal to the axial direction, so as to form a pre-chamber inside the portion of base 346.
  • substantially orthogonal we mean orthogonal with a tolerance of plus or minus five degrees of deviation with a strictly orthogonal direction. This pre-chamber makes it possible to improve the distribution of the refrigerant fluid in the plate bundle of the heat exchanger.
  • the internal section of the base portion 346 is of a different shape, for example rectangular or circular.
  • the connection portion 348 being intended to receive a hose, the end of which is made of aluminum and has a seal, the shape of the section of the connection portion 348 is preferably circular.
  • the connection system 20 comprises a device 40 for maintaining the tubing 34 in compression against the complementary plate 24, as shown in Figure 4
  • This device for maintaining compression 40 comprises, in this first embodiment of the invention, two clips 36 and 38.
  • the arms of each of these clips 36, 38 are housed at the same time in each of the respective ears 344 and 342 , and in respective circular grooves 282 and 262 of the studs 28 and 26, these circular grooves being visible in Figure 2.
  • the two arms of each clip 36, 38 are mounted by sliding in two through orifices 3442 (visible Figure 5) of each of the ears 344 and 342, once these are mounted on the studs 26, 28.
  • the free ends of the arms of the clips 36, 38 are folded, as visible in Figure 4, which makes it possible to lock maintaining the tubing 34 in compression on the complementary plate 24.
  • the device for maintaining compression 40 includes a threaded hole 284 on the stud 28.
  • the hose connecting to the tubing 34 has a protrusion , for example an ear, which a screw (not shown) of the compression maintaining device 40 passes through by screwing into the threaded hole 284.
  • This screw therefore makes it possible to hold the hose against the tubing 34 which maintains it in compression against the complementary plate 24.
  • this screw presses the protrusion of the hose against a surface 3422 of the ear 342.
  • the ear 342 extends axially up to the complementary plate 24 to allow this compression of the hose against the ear 342, to compress the ear 342 against the complementary plate 24.
  • An orifice 347 in the ear 342 of the tubing 34 makes it possible to angularly position the protrusion of the hose on the ear 342 to allow this screwing, the protrusion of the hose comprising a positioning pin complementary to this orifice 347.
  • connection system 20 forming a fluid connection with the orifice 30, includes a compression maintaining device similar to the compression maintaining device 40.
  • the compression holding device 40 comprises only one of the clips 36, 38, or only the threaded hole 284 and the screw for holding the hose against the ear 342, or a threaded hole in each of the studs 26 , 28, these threaded holes each cooperating with a protrusion and a screw holding the hose against the ear 342, or a combination of these possibilities.
  • connection system 20 a method of assembling the connection system 20 according to the invention, relative to the first embodiment of the invention, on a bundle of plates of a heat exchanger, relative to the tubing 34 only for simplicity. This process includes the following steps:
  • the first step is the positioning of the complementary plate 24 on the cheek 22 of the heat exchanger using the collars 222 and 224.
  • the next step is the positioning of the studs 28, 26 in the collars 222 and 224.
  • the next step is the brazing of the heat exchanger equipped with the cheek 22 on which the complementary plate 24 and the studs 26, 28 are positioned.
  • the assembly cheek 22, complementary plate 24 and studs 26, 28 is positioned on the heat exchanger plate bundle.
  • the next step is the positioning of the tubing 34 on the orifice 32 by inserting the studs 28, 26 into the respective ears 344, 342.
  • the next step is the compression of the ears 344, 342 along the studs 28, 26 and the blocking along these studs 28, 26, of these ears held in compression, by mounting the respective clips 38, 36 in the through holes 3442 of the ears 344 and 342 and in the circular grooves 282 and 262.
  • the next step is locking this compression support by folding the free ends of the clips 28, 36.
  • the last step is possibly a check of the tightness of the connection system 20.
  • the first steps are of course the positioning of the studs in the collars 222, 224, then the brazing of the heat exchanger equipped with the cheek 22 and the studs 26 , 28.
  • a connection system 50 for a heat exchanger comprises a metal structure consisting of the cheek 52 of the heat exchanger, closing a bundle of metal plates of the 'heat exchanger.
  • the connection system 50 also includes a tube 64 mounted on the cheek 52, and forming a tight connection with an orifice 62 (referenced in Figure 7) for fluid inlet or outlet arranged on the cheek 52.
  • a single pipe 64 is shown, but the heat exchanger of course preferably comprises at least two pipes, a fluid inlet pipe and a fluid outlet pipe, conforming to the connection system 50 according to the 'invention.
  • the tubing 64 comprises a base portion 646, and a connection portion 648 extending axially the base portion 646, that is to say parallel to the flow direction of the refrigerant fluid at the outlet of the cheek 52.
  • the structural characteristics of the base portion 646 and the connection portion 648 are similar to those of the tubing 34 of the first embodiment of the invention and are therefore not further explained. detailed here.
  • the positioning of the tubing 64 on the cheek 52 is achieved by nesting at least part of the base portion 646 of the tubing 64 in a joint overmolded seal 54 fixed on the contour of the orifice 62 of the cheek 32.
  • This overmolded seal 54 extends axially the contour of the orifice 62 by flaring slightly to closely surround the base portion 646 of the tubing 64 on at least part of it in the axial direction.
  • the overmolded seal 54 therefore has a section, orthogonal to the direction axial, of complementary shape to the section of the base portion 646, here a triangular section.
  • the base portion 646 is pressed against an internal surface of this overmolded seal 54, in particular against a groove 644 (visible in Figure 8) dug in the contact surface of the base portion 646 with the overmolded seal 54 .
  • connection system 50 comprises a stud 58 brazed on the cheek 52 and extending orthogonally to the main extension dimension of the cheek 52, that is to say i.e. axially, towards the outside of the cheek 52.
  • a collar 522 arranged on the cheek 52 makes it possible to position the stud 58 before brazing it onto the cheek 52.
  • the stud 58 is inserted in an ear 642 of the tubing 64.
  • the stud 58 also includes a threaded hole 584 intended to receive a screw (not shown) passing through a protrusion of a hose connecting to the tubing 64. This screw maintains the protrusion in compression against a surface 6422 of the ear 642, which compresses the ear 642 and therefore the tubing 64 against the cheek 52.
  • An orifice 647 in the ear 642 of the tubing 64 makes it possible to position the protrusion of the hose angularly on the ear 642 to allow this screwing, the protrusion of the hose comprising a positioning pin complementary to this orifice 647.
  • the stud 58 and the screw therefore constitute, in the connection system 50 according to the invention, a device for maintaining the tubing 64 in compression against the cheek 52.
  • a method of assembling the connection system according to the invention on a bundle of plates of a heat exchanger, relative to the tubing 64 comprises the following steps:
  • the first step is the positioning of the stud 58 in the collar 522.
  • the next step is the brazing of the heat exchanger equipped with the cheek 52 on which the stud 58 is positioned. For this, the cheek assembly 52 and stud 58 is positioned on the bundle of plates of the heat exchanger .
  • the next step is the positioning of the overmolded seal 54 on the cheek 52.
  • the next step is the positioning of the tubing 64 against the orifice 62 by fitting the tubing 64 into the overmolded seal 54 and inserting the stud 58 into the ear 642.
  • the next step is the compression of the ear 642 along the stud 58 and the blocking along this stud 58 of the ear 642 held in compression, by screwing a screw held in an excrescence of a hose in the hole threaded 584 of the stud 58 and connecting the hose into the tubing 64.
  • connection system 50 possibly a check of the tightness of the connection system 50.
  • the invention is not limited to the examples which have just been described and numerous adjustments can be made to these examples without departing from the scope. framework of the invention.

Abstract

The present invention relates to a connection system (20) for a heat exchanger, the system comprising: - a metal structure (22, 24) comprising a fluid inlet or outlet opening; - a pipe fitting (34) mounted on the metal structure (22, 24) in a leak-tight manner, forming a connection with the opening (32), the pipe fitting (34) comprising at least one lug (342, 344); - a device (40) for keeping the pipe fitting (34) pressed against the metal structure (22, 24), the device (40) comprising at least one stud (28, 26) that passes through the lug (342, 344) and is secured to the metal structure (22, 24), and at least one locking element (38, 36) for locking the lug (342, 344) in place along the stud (28, 26), the stud (28, 26) comprising at least one cavity (284, 282, 262) in which the at least one locking element (38, 36) is accommodated.

Description

SYSTEME DE CONNEXION FLUIDIQUE POUR UN ECHANGEUR DEFLUIDIC CONNECTION SYSTEM FOR A HEAT EXCHANGER
CHALEUR HEAT
La présente invention se rapporte au domaine des circuits de refroidissement notamment pour véhicules automobiles et concerne plus précisément un système de connexion d’entrée ou de sortie d’un fluide permettant de relier un échangeur de chaleur à un tel circuit. The present invention relates to the field of cooling circuits in particular for motor vehicles and relates more precisely to a fluid inlet or outlet connection system making it possible to connect a heat exchanger to such a circuit.
Les échangeurs de chaleur équipant les boucles de climatisation des véhicules sont agencés pour permettre la circulation adjacente en deux espaces séparés de deux fluides différents, de manière à réaliser un échange de chaleur entre ces fluides, sans les mélanger. Au sein des échangeurs de chaleur et des circuits thermodynamiques auxquels ils sont rattachés, les fluides circulent sous pression.The heat exchangers fitted to the air conditioning loops of vehicles are arranged to allow the adjacent circulation in two separate spaces of two different fluids, so as to carry out a heat exchange between these fluids, without mixing them. Within the heat exchangers and the thermodynamic circuits to which they are attached, the fluids circulate under pressure.
Un tel échangeur 2 est représenté sur la figure 1 . Il est constitué d’un faisceau de plaques d’échange de chaleur et de connexions fluidiques 8, 10 rattachant ce faisceau aux circuits avec lesquels est connecté l’échangeur. Alors que le faisceau est standard pour son utilisation dans plusieurs véhicules, les connexions fluidiques sont spécifiques à chaque conception de circuit de refroidissement destiné à un modèle de véhicule particulier. Such an exchanger 2 is shown in Figure 1. It is made up of a bundle of heat exchange plates and fluidic connections 8, 10 connecting this bundle to the circuits with which the exchanger is connected. While the harness is standard for use in many vehicles, the fluid connections are specific to each cooling system design intended for a particular vehicle model.
Actuellement, les connexions fluidiques 8 destinées au fluide réfrigérant circulant dans un tel échangeur forment un bloc de connexion en aluminium brasé sur une joue 6 de l’échangeur 2, cette joue étant une plaque externe métallique de l’échangeur 2 bordant le faisceau de plaques, lui-même agencé dans un carter 4 en aluminium. Sur la figure 1 , les connexions fluidiques 8 sont des orifices cylindriques dans le bloc de connexion, dans lesquels viennent s’insérer des durites avec un embout en aluminium muni d’un joint d’étanchéité. Ce bloc de connexion peut être adapté à un circuit de refroidissement spécifique d’un véhicule, notamment la disposition des orifices dans le bloc de connexion peut être différente. Currently, the fluidic connections 8 intended for the refrigerant fluid circulating in such an exchanger form an aluminum connection block brazed on a cheek 6 of the exchanger 2, this cheek being an external metal plate of the exchanger 2 bordering the bundle of plates , itself arranged in an aluminum casing 4. In Figure 1, the fluid connections 8 are cylindrical orifices in the connection block, into which hoses with an aluminum end piece fitted with a seal are inserted. This connection block can be adapted to a specific cooling circuit of a vehicle, in particular the arrangement of the holes in the connection block may be different.
Néanmoins, la réalisation de ce bloc de connexion par usinage limite les possibilités de conception, notamment de forme des orifices dans le bloc de connexion. Il est en effet difficile d’usiner des orifices non droits dans le bloc de connexion. De plus, lorsque les orifices du collecteur de faisceau de plaques prennent une place importante dans les coins de la joue 6, la surface du bloc de connexion que l’on doit braser sur les bords des coins de la joue 6 peut s’avérer insuffisante pour effectuer ce brasage. Enfin, la fabrication actuelle des blocs de connexion de tels échangeurs de chaleur nécessite des outils de brasage lourds et complexes, notamment pour braser ensemble les faisceaux de tels échangeurs de chaleur avec leurs blocs de connexion, en raison de la dimension du four de brasage nécessaire et des supports de brasage qui doivent être adaptés aux différents emplacements et blocs de connexion pour permettre leur assemblage sur les faisceaux. Le nombre de plaques du faisceau est alors limité pour permettre un brasage à plat du dispositif.However, the production of this connection block by machining limits the design possibilities, in particular the shape of the orifices in the connection block. It is indeed difficult to machine non-straight holes in the connection block. In addition, when the orifices of the plate bundle collector take up a significant amount of space in the corners of the cheek 6, the surface of the connection block that must be brazed to the edges of the corners of the cheek 6 may prove insufficient to carry out this brazing. Finally, the current manufacture of the connection blocks of such heat exchangers requires heavy and complex brazing tools, in particular for brazing together the bundles of such heat exchangers with their connection blocks, due to the size of the brazing furnace required. and solder brackets which must be adapted to the different locations and connection blocks to allow their assembly on the harnesses. The number of plates in the bundle is then limited to allow flat brazing of the device.
Ces différentes contraintes limitent donc les différentes conceptions possibles des agencements de blocs de connexion sur un tel échangeur de chaleur. These different constraints therefore limit the different possible designs of the arrangements of connection blocks on such a heat exchanger.
Il existe donc un besoin d’une connexion flexible, simple et facile à fabriquer, d’un bloc de connexion de fluide réfrigérant sur un échangeur de chaleur, qui permette de faciliter l’adaptation des orifices du bloc de connexion aux différents orifices des collecteurs d’échangeurs de chaleur et aux spécificités des circuits de refroidissement de différents modèles de véhicule. There is therefore a need for a flexible connection, simple and easy to manufacture, of a refrigerant fluid connection block on a heat exchanger, which makes it easier to adapt the orifices of the connection block to the different orifices of the collectors. heat exchangers and the specificities of the cooling circuits of different vehicle models.
La présente invention remédie au moins en partie aux inconvénients de l’art antérieur, en fournissant un système de connexion pour un échangeur de chaleur, un échangeur de chaleur et un procédé d’assemblage du système de connexion selon l’invention, qui permettent une grande liberté de conception des connexions fluidiques de l’échangeur de chaleur. The present invention at least partly remedies the drawbacks of the prior art, by providing a connection system for a heat exchanger, a heat exchanger and a method of assembling the connection system according to the invention, which allow a great freedom of design of the fluidic connections of the heat exchanger.
A cette fin, l’invention propose un système de connexion pour un échangeur de chaleur, le système de connexion comportant : To this end, the invention proposes a connection system for a heat exchanger, the connection system comprising:
- une structure métallique comportant un orifice d’entrée ou de sortie de fluide,- a metal structure comprising a fluid inlet or outlet orifice,
- une tubulure montée étanche sur la structure métallique, formant un raccord avec l’orifice d’entrée ou de sortie de fluide, la tubulure comportant au moins une oreille,- a tube mounted watertight on the metal structure, forming a connection with the fluid inlet or outlet port, the tube comprising at least one ear,
- un dispositif de maintien en compression de la tubulure contre la structure métallique, le système étant caractérisé en ce que le dispositif de maintien en compression comporte au moins un plot traversant l’oreille et solidaire de la structure métallique, et au moins un élément de blocage de l’oreille le long du plot, le plot comportant au moins un logement dans lequel l’au moins un élément de blocage est logé. - a device for maintaining the tubing in compression against the metallic structure, the system being characterized in that the device for maintaining compression comprises at least one stud passing through the ear and secured to the metallic structure, and at least one element of blocking of the ear along the stud, the stud comprising at least one housing in which the at least one blocking element is housed.
Grâce à l’invention, l’échangeur de chaleur est dans un premier temps brasé ou soudé avec la structure métallique et le ou les plots du dispositif de maintien en compression, ces plots étant de préférence métalliques, puis dans un deuxième temps la tubulure, de préférence en un matériau synthétique (matière plastique), est comprimée le long du ou des plots. En variante, une autre matière est choisie pour réaliser la tubulure, par exemple du métal. Cela permet un montage et un démontage de la tubulure ailleurs que sur le poste de brasage ou soudage et donc apporte de la flexibilité pour le conditionnement de l’échangeur de chaleur. Thanks to the invention, the heat exchanger is firstly brazed or welded with the metallic structure and the pad(s) of the device for maintaining compression, these pads being preferably metallic, then in a second time the tubing, preferably made of a synthetic material (plastic), is compressed along the pad(s). Alternatively, another material is chosen to make the tubing, for example metal. This allows assembly and disassembly of the tubing elsewhere than on the brazing or welding station and therefore provides flexibility for conditioning the heat exchanger.
De plus, l’invention permet d’optimiser les diamètres des orifices d’entrée et sortie de l’échangeur lorsque ceux-ci sont positionnés dans les coins de la plaque externe métallique, par rapport aux solutions de l’art antérieur. En effet, les tubulures étant en matière synthétique, elles n’ont pas besoin d’être brasées sur une joue de l’échangeur de chaleur. Enfin, n’étant pas nécessairement usinées, elles peuvent être de formes très diverses. In addition, the invention makes it possible to optimize the diameters of the inlet and outlet orifices of the exchanger when these are positioned in the corners of the external metal plate, compared to the solutions of the prior art. In fact, as the tubes are made of synthetic material, they do not need to be brazed onto one side of the heat exchanger. Finally, not necessarily being machined, they can be of very diverse shapes.
Le système de connexion selon l’invention comprend bien sûr préférentiellement à la fois une tubulure d’entrée et une tubulure de sortie associées chacune à un orifice d’entrée ou de sortie de fluide, et un dispositif de maintien en compression associé à chaque tubulure. The connection system according to the invention of course preferably comprises both an inlet pipe and an outlet pipe each associated with a fluid inlet or outlet orifice, and a compression maintenance device associated with each pipe. .
L’invention s’applique aussi bien aux connexions fluidiques de l’échangeur de chaleur destinées au liquide caloporteur de l’échangeur de chaleur, qu’aux connexions fluidiques de l’échangeur de chaleur destinées au fluide réfrigérant, bien que l’invention soit plus spécifiquement destinée à cette dernière option. The invention applies both to the fluidic connections of the heat exchanger intended for the heat transfer liquid of the heat exchanger, and to the fluidic connections of the heat exchanger intended for the refrigerant fluid, although the invention is more specifically intended for the latter option.
Dans un exemple de réalisation de l’invention, le logement du plot du dispositif de maintien en compression du système de connexion selon l’invention, comporte un trou fileté, l’élément de blocage comportant une vis apte à être vissée dans le trou fileté en passant dans une excroissance d’un embout de tube destiné à être monté étanche sur la tubulure. En effet, la tubulure est destinée à recevoir un embout en aluminium d’une durite. Dans cet exemple de réalisation de l’invention, la durite comporte une excroissance, par exemple une oreille, dans laquelle une vis vient plaquer l’excroissance contre l’oreille de la tubulure en se vissant dans le trou fileté. L’oreille de la tubulure comprime ainsi la tubulure contre la structure métallique, assurant l’étanchéité du système de connexion. La tubulure comporte en effet un organe d’étanchéité, par exemple un joint d’étanchéité, ou un surmoulage, sur sa surface de contact avec la structure métallique. In an exemplary embodiment of the invention, the housing of the stud of the device for maintaining compression of the connection system according to the invention comprises a threaded hole, the blocking element comprising a screw capable of being screwed into the threaded hole passing through an excrescence of a tube end intended to be mounted watertight on the tubing. In fact, the tubing is intended to receive an aluminum end of a hose. In this example embodiment of the invention, the hose includes a protrusion, for example an ear, in which a screw presses the protrusion against the ear of the tubing by screwing into the threaded hole. The ear of the tubing thus compresses the tubing against the metal structure, ensuring the tightness of the connection system. The tubing in fact comprises a sealing member, for example a seal, or an overmolding, on its contact surface with the metal structure.
Préférentiellement, le plot comporte une gorge circulaire formant le logement, l’élément de blocage étant sous forme d’une agrafe, l’agrafe comportant deux bras, et l’oreille comportant deux orifices traversants recevant chacun un des deux bras de l’agrafe, les deux bras enserrant le plot en étant logés dans la gorge circulaire. Cette réalisation de l’invention ne nécessite pas d’assemblage spécifique avec la durite, mais est compatible avec l’exemple de réalisation précédent dans la mesure où le dispositif de maintien en compression a possiblement plusieurs éléments de blocage logés dans plusieurs logements du plot. Preferably, the stud comprises a circular groove forming the housing, the blocking element being in the form of a clip, the clip comprising two arms, and the ear comprising two through orifices each receiving one of the two arms of the clip, the two arms enclosing the stud while being housed in the circular groove. This embodiment of the invention does not require specific assembly with the hose, but is compatible with the previous embodiment insofar as the device for maintaining compression possibly has several blocking elements housed in several housings of the stud.
Préférentiellement encore, la tubulure comporte une autre oreille, la structure métallique comportant un autre plot solidaire de la structure métallique et traversant l’autre oreille. Le dispositif de maintien en compression comporte de préférence un élément de blocage de l’autre oreille le long de l’autre plot, l’autre plot comportant un logement dans lequel l’élément de blocage est logé. Cet élément de blocage est par exemple une agrafe ou une vis comme évoqué ci-dessus. L’autre plot est, également de préférence, un plot métallique brasé ou soudé à la structure métallique. Still preferably, the tubing includes another ear, the metal structure comprising another stud secured to the metal structure and passing through the other ear. The device for maintaining compression preferably comprises an element for blocking the other ear along the other stud, the other stud comprising a housing in which the blocking element is housed. This blocking element is for example a clip or a screw as mentioned above. The other pad is also preferably a metal pad brazed or welded to the metal structure.
Dans un exemple de réalisation de l’invention, la structure métallique comporte une joue de l’échangeur de chaleur et une plaque complémentaire soudée ou brasée contre la joue de l’échangeur de chaleur, le plot étant solidaire de la plaque complémentaire. Cette plaque complémentaire permet de disposer de plus de place pour fixer les tubulures sur les orifices d’entrée et de sortie du collecteur du faisceau de plaques de l’échangeur de chaleur. L’autre plot est par exemple positionné sur une surface de la plaque complémentaire s’étendant au-delà de la joue. In an exemplary embodiment of the invention, the metal structure comprises a side of the heat exchanger and a complementary plate welded or brazed against the side of the heat exchanger, the stud being integral with the complementary plate. This additional plate provides more space for fixing the tubing to the inlet and outlet ports of the collector of the heat exchanger plate bundle. The other stud is for example positioned on a surface of the complementary plate extending beyond the cheek.
Avantageusement, la structure métallique comporte un dispositif d’indexage de la plaque complémentaire sur la joue et/ou du plot sur la joue. Ce dispositif d’indexage permet de bien positionner les orifices de la plaque complémentaire sur ceux de la joue de l’échangeur de chaleur, et les tubulures sur les orifices du collecteur de l’échangeur de chaleur. Advantageously, the metal structure includes a device for indexing the complementary plate on the cheek and/or the stud on the cheek. This indexing device makes it possible to correctly position the orifices of the complementary plate on those of the heat exchanger cheek, and the tubes on the orifices of the heat exchanger collector.
Le dispositif d’indexage comporte par exemple au moins un collet apte à s’insérer dans une ouverture correspondante de la plaque complémentaire et/ou à recevoir le plot. The indexing device comprises for example at least one collar capable of inserting into a corresponding opening of the complementary plate and/or of receiving the stud.
Dans un mode de réalisation, le système de connexion selon l’invention comporte un joint d’étanchéité surmoulé fixé sur la joue de l’échangeur de chaleur, sur le contour de l’orifice d’entrée ou de sortie de fluide, ce joint d’étanchéité surmoulé étant apte à envelopper au moins en partie la portion de base de la tubulure. In one embodiment, the connection system according to the invention comprises an overmolded seal fixed on the cheek of the heat exchanger, on the contour of the fluid inlet or outlet port, this seal molded seal being able to envelop at least partly the base portion of the tubing.
Dans un mode de réalisation, la tubulure comporte une portion de base proximale à la structure métallique, et une portion de connexion reliée à la portion de base, la portion de connexion étant de section inférieure à celle de la portion de base. Cette caractéristique permet de former une préchambre dans la tubulure. Cette préchambre est avantageuse dans le cas où l’orifice du collecteur en vis-à-vis de la tubulure est de section plus grande que celle de la portion de connexion. Sans cette préchambre, l'élargissement brusque de la section du circuit de fluide réfrigérant, au niveau de la joue de l’échangeur de chaleur, génère une mauvaise distribution du fluide réfrigérant au niveau des premières plaques du faisceau de plaques de l’échangeur de chaleur. En décalant cet élargissement au niveau de la préchambre, la distribution du fluide réfrigérant dans l’échangeur de chaleur est améliorée. In one embodiment, the tubing comprises a base portion proximal to the metal structure, and a connection portion connected to the base portion, the connection portion being of smaller section than that of the base portion. This characteristic makes it possible to form a pre-chamber in the tubing. This pre-chamber is advantageous in the case where the orifice of the collector opposite the tubing has a larger section than that of the connection portion. Without this pre-chamber, the sudden widening of the section of the refrigerant circuit, at the level of the cheek of the heat exchanger, generates poor distribution of the refrigerant fluid at the level of the first plates of the bundle of plates of the heat exchanger. heat. By shifting this widening to the level of the prechamber, the distribution of the refrigerant fluid in the heat exchanger is improved.
Par « proximale », on entend ici que la portion de base est plus proche de la structure métallique que la portion de connexion, qui est destinée à recevoir un embout de durite. By “proximal” we mean here that the base portion is closer to the metal structure than the connection portion, which is intended to receive a hose tip.
La portion de base a, de préférence, un contour interne sensiblement identique au contour de l’orifice d’entrée ou de sortie de fluide. Cette caractéristique permet d’éviter les pertes de charge. Par « sensiblement », on entend que le contour interne de la portion de base se superpose à l’orifice d’entrée ou de sortie de fluide à un ou deux millimètres près. The base portion preferably has an internal contour substantially identical to the contour of the fluid inlet or outlet orifice. This characteristic makes it possible to avoid pressure losses. By “substantially” we mean that the internal contour of the base portion overlaps the fluid inlet or outlet orifice to within one or two millimeters.
La portion de base s’étend par exemple sur une hauteur comprise entre 2,5 et 13 millimètres. Elle est, par exemple, de section triangulaire ou rectangulaire. La portion de connexion est, par exemple, de section circulaire. The base portion extends for example over a height of between 2.5 and 13 millimeters. It is, for example, triangular or rectangular in section. The connection portion is, for example, of circular section.
Dans un exemple de réalisation, la portion de base comporte au moins une gorge recevant un organe d’étanchéité, par exemple un joint d’étanchéité. In an exemplary embodiment, the base portion comprises at least one groove receiving a sealing member, for example a seal.
L’invention concerne aussi un échangeur de chaleur comprenant au moins un faisceau de plaques et au moins un système de connexion selon l’invention. The invention also relates to a heat exchanger comprising at least one bundle of plates and at least one connection system according to the invention.
L’invention concerne enfin un procédé d’assemblage d’un système de connexion selon l’invention, ledit procédé comportant les étapes de : The invention finally relates to a method of assembling a connection system according to the invention, said method comprising the steps of:
- solidarisation du plot sur la structure métallique, - securing the stud to the metal structure,
- insertion de l’oreille de la tubulure sur le plot, - insertion of the ear of the tubing onto the stud,
- compression de l’oreille le long du plot et blocage de l’oreille via l’élément de blocage. - compression of the ear along the stud and blocking of the ear via the blocking element.
L’échangeur de chaleur selon l’invention et le procédé d’assemblage selon l’invention comportent des avantages analogues à ceux du système de connexion selon l’invention. D’autres caractéristiques et avantages de l’invention apparaîtront encore au travers de la description qui suit d’une part, et de plusieurs exemples de réalisation donnés à titre indicatif et non limitatif en référence aux dessins schématiques annexés d’autre part, sur lesquels : The heat exchanger according to the invention and the assembly method according to the invention have advantages similar to those of the connection system according to the invention. Other characteristics and advantages of the invention will appear further through the description which follows on the one hand, and several examples of embodiment given for informational and non-limiting purposes with reference to the appended schematic drawings on the other hand, in which :
[fig 1] déjà commentée en relation avec l’art antérieur, illustre un échangeur de chaleur de l’art antérieur, [fig 1] already commented on in relation to the prior art, illustrates a heat exchanger of the prior art,
[fig 2] représente en perspective une face d’une structure métallique d’un système de connexion selon l’invention, selon un premier mode de réalisation de l’invention,[fig 2] represents in perspective a face of a metal structure of a connection system according to the invention, according to a first embodiment of the invention,
[fig 3] représente en perspective une face opposée de la structure métallique de la figure 2, dans le premier mode de réalisation de l’invention, [fig 3] represents in perspective an opposite face of the metal structure of Figure 2, in the first embodiment of the invention,
[fig 4] représente en perspective un système de connexion selon l’invention, dans le premier mode de réalisation de l’invention, [fig 4] represents in perspective a connection system according to the invention, in the first embodiment of the invention,
[fig 5] représente en perspective une tubulure d’un système de connexion selon l’invention dans le premier mode de réalisation de l’invention, [fig 5] represents in perspective a tubing of a connection system according to the invention in the first embodiment of the invention,
[fig 6] représente en perspective un système de connexion selon l’invention dans un deuxième mode de réalisation de l’invention, [fig 6] represents in perspective a connection system according to the invention in a second embodiment of the invention,
[fig 7] représente en perspective une structure métallique du système de connexion de la figure 6, et [fig 7] represents in perspective a metal structure of the connection system of Figure 6, and
[fig 8] représente en perspective une tubulure du système de connexion de la figure 6. [fig 8] represents in perspective a tubing of the connection system of figure 6.
Selon un premier mode de réalisation de l’invention représenté sur la figure 2, un système de connexion 20 selon l’invention pour un échangeur de chaleur, comporte une structure métallique constituée de la joue 22 de l’échangeur de chaleur, fermant un faisceau de plaques métalliques de l’échangeur de chaleur, et d’une plaque complémentaire 24 soudée ou brasée sur la joue 22 de l’échangeur de chaleur. La joue 22 et la plaque complémentaire 24 sont donc métalliques, par exemple faites d’aluminium. According to a first embodiment of the invention shown in Figure 2, a connection system 20 according to the invention for a heat exchanger, comprises a metallic structure consisting of the cheek 22 of the heat exchanger, closing a beam metal plates of the heat exchanger, and a complementary plate 24 welded or brazed on the cheek 22 of the heat exchanger. The cheek 22 and the complementary plate 24 are therefore metallic, for example made of aluminum.
La joue 22 et la plaque complémentaire 24 comportent deux orifices 30 et 32 destinés à se superposer aux orifices d’entrée et de sortie de fluide de l’échangeur de chaleur. Par exemple l’orifice 30 est un orifice d’entrée de fluide réfrigérant, et l’orifice 32 est un orifice de sortie de fluide réfrigérant. Les orifices 30 et 32 sont donc de section identique ou sensiblement identique à ceux du collecteur de l’échangeur de chaleur. Par sensiblement identique, on entend que les orifices 30, 32 se superposent à ceux du collecteur de chaleur à un ou deux millimètres près.The cheek 22 and the complementary plate 24 comprise two orifices 30 and 32 intended to overlap the fluid inlet and outlet orifices of the heat exchanger. For example, orifice 30 is a refrigerant fluid inlet orifice, and orifice 32 is a refrigerant fluid outlet orifice. The orifices 30 and 32 are therefore of identical or substantially identical section to those of the collector. the heat exchanger. By substantially identical, we mean that the orifices 30, 32 overlap with those of the heat collector to within one or two millimeters.
Afin de faciliter la bonne superposition de la plaque complémentaire 24 sur la joue 22 notamment au niveau des orifices 30 et 32, un dispositif d’indexage de la joue 22 permet d’aider au positionnement de la plaque complémentaire 24 sur la joue 22. Dans ce premier mode de réalisation de l’invention, ce dispositif d’indexage comporte deux collets 222 et 224 sur la joue 22, venant s’insérer dans des orifices correspondants de la plaque complémentaire 24. Ces collets 222 et 224 servent en outre à positionner chacun un plot métallique sur la plaque complémentaire 24. Dans cet exemple de réalisation, le collet 224 sert à positionner un plot 28, métallique et solidarisé par brasage ou soudage, dans le collet 224. Un autre plot 26, métallique, est positionné sur la plaque complémentaire 24 grâce à un orifice 25 (visible figure 3) de la plaque complémentaire 24, dans lequel est vissé le plot 26. En variante, le plot 26 est soudé ou brasé à la plaque complémentaire 24, l’orifice 25 ne servant qu’à recevoir une excroissance du plot 26. Dans une autre variante, les plots 26 et 28 sont issus de matière avec la plaque complémentaire 24. In order to facilitate the correct superposition of the complementary plate 24 on the cheek 22, particularly at the level of the orifices 30 and 32, an indexing device for the cheek 22 helps to position the complementary plate 24 on the cheek 22. In this first embodiment of the invention, this indexing device comprises two collars 222 and 224 on the cheek 22, being inserted into corresponding orifices of the complementary plate 24. These collars 222 and 224 also serve to position each a metal stud on the complementary plate 24. In this example embodiment, the collar 224 serves to position a stud 28, metallic and secured by brazing or welding, in the collar 224. Another stud 26, metallic, is positioned on the complementary plate 24 thanks to an orifice 25 (visible in Figure 3) of the complementary plate 24, into which the stud 26 is screwed. Alternatively, the stud 26 is welded or brazed to the complementary plate 24, the orifice 25 serving only 'to receive an excrescence of the stud 26. In another variant, the studs 26 and 28 come from material with the complementary plate 24.
Dans encore une autre variante, le dispositif d’indexage comporte par exemple des pions sur la joue 22, venant s’insérer dans des orifices correspondants de la plaque complémentaire 24, et la plaque complémentaire 24 comporte un dispositif de positionnement du plot métallique 28, par exemple un pion ou un collet. In yet another variant, the indexing device comprises for example pins on the cheek 22, which are inserted into corresponding orifices of the complementary plate 24, and the complementary plate 24 comprises a device for positioning the metal stud 28, for example a pawn or a collar.
Les plots 26 et 28 servent à positionner une tubulure 34 du système de connexion 20 selon l’invention, représentée sur la figure 4, sur la plaque complémentaire 24. Pour cela, la tubulure 34 comporte deux oreilles 342 et 344 dans lesquelles sont insérés respectivement le plot 28 et le plot 26. La tubulure 34 est de préférence en matière synthétique, c’est-à-dire issue de polymères (matière plastique). En variante, la tubulure 34 est en aluminium ou d’un autre métal. The studs 26 and 28 serve to position a tube 34 of the connection system 20 according to the invention, shown in Figure 4, on the complementary plate 24. For this, the tube 34 has two ears 342 and 344 in which are inserted respectively the stud 28 and the stud 26. The tubing 34 is preferably made of synthetic material, that is to say from polymers (plastic material). Alternatively, the tubing 34 is made of aluminum or another metal.
Dans ce premier mode de réalisation de l’invention, une tubulure telle que la tubulure 34 est montée de manière étanche contre chaque orifice 30, 32 d’entrée ou de sortie de fluide. Il y a donc en fait quatre plots métalliques sur la plaque complémentaire 24 pour positionner ces deux tubulures, seuls les plots 26, 28 et la tubulure 34 étant représentés sur les figures 2 à 4. Il apparaît clairement que les deux tubulures présentent un encombrement trop important pour être montées ensemble uniquement sur la joue 22 de l’échangeur de chaleur, d’où la présence de la plaque complémentaire 24 permettant de recevoir au moins une oreille et un plot correspondant à une tubulure. Ainsi, l’oreille 344 et le plot 26 sont positionnés sur une surface de la plaque complémentaire 24 qui s’étend au-delà de la joue 22.In this first embodiment of the invention, a tube such as the tube 34 is mounted in a sealed manner against each fluid inlet or outlet orifice 30, 32. There are therefore in fact four metal studs on the complementary plate 24 to position these two pipes, only the studs 26, 28 and the pipe 34 being represented in Figures 2 to 4. It clearly appears that the two pipes have too much space. important to be mounted together only on the cheek 22 of the heat exchanger, hence the presence of the complementary plate 24 making it possible to receive at least one ear and a stud corresponding to a tube. Thus, the ear 344 and the stud 26 are positioned on a surface of the complementary plate 24 which extends beyond the cheek 22.
Il s’en suit que dans le cas où les orifices d’entrée et de sortie de fluide de l’échangeur de chaleur permettent de monter de manière étanche des tubulures sur ces orifices sans déborder de la surface plane de la joue 22, la plaque complémentaire 24 n’est pas nécessaire. Dans cette configuration, illustrée dans un deuxième mode de réalisation de l’invention décrit plus loin, les plots métalliques permettant de positionner les tubulures sont donc directement brasés ou soudés sur la joue 22. It follows that in the case where the fluid inlet and outlet orifices of the heat exchanger make it possible to mount tubing in a sealed manner on these orifices without overflowing from the flat surface of the cheek 22, the plate Additional 24 is not necessary. In this configuration, illustrated in a second embodiment of the invention described below, the metal studs allowing the tubing to be positioned are therefore directly brazed or welded to the cheek 22.
Outre les oreilles 342 et 344, la tubulure 34 comporte une portion de base 346, comme représenté sur la figure 5, et une portion de connexion 348 prolongeant axialement la portion de base 346. Par axialement, on entend selon une direction axiale parallèle à la direction longitudinale des plots 26, 28 c’est-à-dire à la direction d’écoulement du fluide réfrigérant dans la tubulure 34. In addition to the ears 342 and 344, the tube 34 comprises a base portion 346, as shown in Figure 5, and a connection portion 348 extending axially the base portion 346. By axially, we mean in an axial direction parallel to the longitudinal direction of the studs 26, 28, that is to say in the direction of flow of the refrigerant fluid in the tubing 34.
La portion de base 346 est plaquée contre la plaque complémentaire 24 par l’intermédiaire d’un organe d’étanchéité (non représenté), notamment un joint monté dans une gorge 345 creusée dans la surface de contact de la portion de base 346 avec la plaque complémentaire 24. En variante l’organe d’étanchéité est un surmoulage effectué sur cette surface de contact. The base portion 346 is pressed against the complementary plate 24 via a sealing member (not shown), in particular a seal mounted in a groove 345 dug in the contact surface of the base portion 346 with the complementary plate 24. Alternatively, the sealing member is an overmolding made on this contact surface.
La section interne de la portion de base 346, selon un plan orthogonal à cette direction axiale, est identique ou sensiblement identique à la forme de l’orifice 32, c’est-à-dire que la section interne de la portion de base 346 et l’orifice 32 se superposent exactement, ou à un ou deux millimètres près. Cette section interne s’étend sur une hauteur, c’est-à-dire suivant la direction axiale, de 2,5 à 13 millimètres depuis la surface externe de la portion de base 346 sur laquelle est monté l’organe d’étanchéité, jusqu’à la portion de connexion 348. The internal section of the base portion 346, along a plane orthogonal to this axial direction, is identical or substantially identical to the shape of the orifice 32, that is to say that the internal section of the base portion 346 and orifice 32 overlap exactly, or within one or two millimeters. This internal section extends over a height, that is to say in the axial direction, of 2.5 to 13 millimeters from the external surface of the base portion 346 on which the sealing member is mounted, up to the connection portion 348.
A la jonction entre la portion de base 346 et la portion de connexion 348, s’effectue une variation brusque de section interne de la tubulure 34, la section interne de la portion de connexion 348 étant inférieure à la section interne de la portion de base 346. Dans ce premier mode de réalisation de l’invention, la section interne de la portion de base 346 est triangulaire, tandis que la section interne de la portion de connexion 348 est circulaire. Ces sections internes de la portion de connexion 348 et de la portion de base 346 sont reliées par une paroi sensiblement orthogonale à la direction axiale, de manière à former une préchambre à l’intérieur de la portion de base 346. Par sensiblement orthogonal on entend orthogonal avec une tolérance de plus ou moins cinq degrés d’écart avec une direction strictement orthogonale. Cette préchambre permet d’améliorer la distribution du fluide réfrigérant dans le faisceau de plaques de l’échangeur de chaleur. At the junction between the base portion 346 and the connection portion 348, there is a sudden variation in the internal section of the tubing 34, the internal section of the connection portion 348 being less than the internal section of the base portion 346. In this first embodiment of the invention, the internal section of the base portion 346 is triangular, while the internal section of the connection portion 348 is circular. These internal sections of the connection portion 348 and the base portion 346 are connected by a wall substantially orthogonal to the axial direction, so as to form a pre-chamber inside the portion of base 346. By substantially orthogonal we mean orthogonal with a tolerance of plus or minus five degrees of deviation with a strictly orthogonal direction. This pre-chamber makes it possible to improve the distribution of the refrigerant fluid in the plate bundle of the heat exchanger.
Bien sûr en variante, la section interne de la portion de base 346 est de forme différente, par exemple rectangulaire ou circulaire. La portion de connexion 348 étant destinée à recevoir une durite, dont l’embout est en aluminium et comporte un joint d’étanchéité, la forme de la section de la portion de connexion 348 est de préférence circulaire. Of course as a variant, the internal section of the base portion 346 is of a different shape, for example rectangular or circular. The connection portion 348 being intended to receive a hose, the end of which is made of aluminum and has a seal, the shape of the section of the connection portion 348 is preferably circular.
Afin d’assurer l’étanchéité entre la plaque complémentaire 24 et la tubulure 34, le système de connexion 20 selon l’invention comporte un dispositif 40 de maintien en compression de la tubulure 34 contre la plaque complémentaire 24, comme représenté sur la figure 4. Ce dispositif de maintien en compression 40 comporte, dans ce premier mode de réalisation de l’invention, deux agrafes 36 et 38. Les bras de chacune de ces agrafes 36, 38 sont logés à la fois dans chacune des oreilles respectives 344 et 342, et dans des gorges circulaires respectives 282 et 262 des plots 28 et 26, ces gorges circulaires étant visibles sur la figure 2. Pour ce faire, les deux bras de chaque agrafe 36, 38 sont montés par coulissement dans deux orifices 3442 traversants (visibles figure 5) de chacune des oreilles 344 et 342, une fois celles-ci montées sur les plots 26, 28. Puis les extrémités libres des bras des agrafes 36, 38 sont repliées, comme visible sur la figure 4, ce qui permet de verrouiller le maintien en compression de la tubulure 34 sur la plaque complémentaire 24. In order to ensure sealing between the complementary plate 24 and the tubing 34, the connection system 20 according to the invention comprises a device 40 for maintaining the tubing 34 in compression against the complementary plate 24, as shown in Figure 4 This device for maintaining compression 40 comprises, in this first embodiment of the invention, two clips 36 and 38. The arms of each of these clips 36, 38 are housed at the same time in each of the respective ears 344 and 342 , and in respective circular grooves 282 and 262 of the studs 28 and 26, these circular grooves being visible in Figure 2. To do this, the two arms of each clip 36, 38 are mounted by sliding in two through orifices 3442 (visible Figure 5) of each of the ears 344 and 342, once these are mounted on the studs 26, 28. Then the free ends of the arms of the clips 36, 38 are folded, as visible in Figure 4, which makes it possible to lock maintaining the tubing 34 in compression on the complementary plate 24.
En plus de ce maintien en compression de la tubulure 34 par les agrafes 36, 38, le dispositif de maintien en compression 40 comporte un trou fileté 284 sur le plot 28. En effet, la durite venant se connecter à la tubulure 34 comporte une excroissance, par exemple une oreille, qu’une vis (non représentée) du dispositif de maintien en compression 40 vient traverser en se vissant dans le trou fileté 284. Cette vis permet donc de maintenir la durite contre la tubulure 34 ce qui maintient celle-ci en compression contre la plaque complémentaire 24. Notamment cette vis appuie l’excroissance de la durite contre une surface 3422 de l’oreille 342. L’oreille 342 s’étend axialement jusqu’à la plaque complémentaire 24 pour permettre à cette compression de la durite contre l’oreille 342, de comprimer l’oreille 342 contre la plaque complémentaire 24. Un orifice 347 dans l’oreille 342 de la tubulure 34 permet de positionner angulairement l’excroissance de la durite sur l’oreille 342 pour permettre ce vissage, l’excroissance de la durite comportant un pion de positionnement complémentaire à cet orifice 347. In addition to this maintenance in compression of the tubing 34 by the clips 36, 38, the device for maintaining compression 40 includes a threaded hole 284 on the stud 28. In fact, the hose connecting to the tubing 34 has a protrusion , for example an ear, which a screw (not shown) of the compression maintaining device 40 passes through by screwing into the threaded hole 284. This screw therefore makes it possible to hold the hose against the tubing 34 which maintains it in compression against the complementary plate 24. In particular this screw presses the protrusion of the hose against a surface 3422 of the ear 342. The ear 342 extends axially up to the complementary plate 24 to allow this compression of the hose against the ear 342, to compress the ear 342 against the complementary plate 24. An orifice 347 in the ear 342 of the tubing 34 makes it possible to angularly position the protrusion of the hose on the ear 342 to allow this screwing, the protrusion of the hose comprising a positioning pin complementary to this orifice 347.
Bien sûr, l’autre tubulure du système de connexion 20, formant un raccord fluidique avec l’orifice 30, comporte un dispositif de maintien en compression similaire au dispositif de maintien en compression 40. Of course, the other tubing of the connection system 20, forming a fluid connection with the orifice 30, includes a compression maintaining device similar to the compression maintaining device 40.
En variante, le dispositif de maintien en compression 40 ne comporte qu’une des agrafes 36, 38, ou seulement le trou fileté 284 et la vis de maintien de la durite contre l’oreille 342, ou un trou fileté dans chacun des plots 26, 28, ces trous filetés coopérant chacun avec une excroissance et une vis de maintien de la durite contre l’oreille 342, ou une combinaison de ces possibilités. Alternatively, the compression holding device 40 comprises only one of the clips 36, 38, or only the threaded hole 284 and the screw for holding the hose against the ear 342, or a threaded hole in each of the studs 26 , 28, these threaded holes each cooperating with a protrusion and a screw holding the hose against the ear 342, or a combination of these possibilities.
On décrit maintenant un procédé d’assemblage du système de connexion 20 selon l’invention, relativement au premier mode de réalisation de l’invention, sur un faisceau de plaques d’un échangeur de chaleur, relativement à la tubulure 34 seulement pour simplifier. Ce procédé comporte les étapes suivantes : We now describe a method of assembling the connection system 20 according to the invention, relative to the first embodiment of the invention, on a bundle of plates of a heat exchanger, relative to the tubing 34 only for simplicity. This process includes the following steps:
La première étape est le positionnement de la plaque complémentaire 24 sur la joue 22 de l’échangeur de chaleur grâce aux collets 222 et 224. The first step is the positioning of the complementary plate 24 on the cheek 22 of the heat exchanger using the collars 222 and 224.
L’étape suivante est le positionnement des plots 28, 26 dans les collets 222 et 224.The next step is the positioning of the studs 28, 26 in the collars 222 and 224.
L’étape suivante est le brasage de l’échangeur de chaleur équipé de la joue 22 sur laquelle est positionnée la plaque complémentaire 24 et les plots 26, 28. Pour cela, l’ensemble joue 22, plaque complémentaire 24 et plots 26, 28 est positionné sur le faisceau de plaques de l’échangeur de chaleur. The next step is the brazing of the heat exchanger equipped with the cheek 22 on which the complementary plate 24 and the studs 26, 28 are positioned. For this, the assembly cheek 22, complementary plate 24 and studs 26, 28 is positioned on the heat exchanger plate bundle.
L’étape suivante est le positionnement de la tubulure 34 sur l’orifice 32 en insérant les plots 28, 26 dans les oreilles respectives 344, 342. The next step is the positioning of the tubing 34 on the orifice 32 by inserting the studs 28, 26 into the respective ears 344, 342.
L’étape suivante est la compression des oreilles 344, 342 le long des plots 28, 26 et le blocage le long de ces plots 28, 26, de ces oreilles maintenues en compression, en montant les agrafes respectives 38, 36 dans les orifices traversants 3442 des oreilles 344 et 342 et dans les gorges circulaires 282 et 262. The next step is the compression of the ears 344, 342 along the studs 28, 26 and the blocking along these studs 28, 26, of these ears held in compression, by mounting the respective clips 38, 36 in the through holes 3442 of the ears 344 and 342 and in the circular grooves 282 and 262.
L’étape suivante est le verrouillage de ce maintien en compression par pliage des extrémités libres des agrafes 28, 36. The next step is locking this compression support by folding the free ends of the clips 28, 36.
Enfin la dernière étape est éventuellement une vérification de l’étanchéité du système de connexion 20. Dans une variante où il n’y a pas de plaque complémentaire 24, les premières étapes sont bien sûr le positionnement des plots dans les collets 222, 224, puis le brasage de l’échangeur de chaleur équipé de la joue 22 et des plots 26, 28. Finally, the last step is possibly a check of the tightness of the connection system 20. In a variant where there is no complementary plate 24, the first steps are of course the positioning of the studs in the collars 222, 224, then the brazing of the heat exchanger equipped with the cheek 22 and the studs 26 , 28.
De même dans la variante où les plots 26, 28 sont venus de matière avec la plaque complémentaire 24, on passe directement de l’étape de positionnement de la plaque complémentaire 24 sur la joue 22 à l’étape de brasage. Il en est de même si les plots 26, 28 sont vissés sur la plaque complémentaire 24 avant que celle-ci ne soit positionnée sur la joue 22. Likewise in the variant where the studs 26, 28 are made integrally with the complementary plate 24, we go directly from the step of positioning the complementary plate 24 on the cheek 22 to the brazing step. It is the same if the studs 26, 28 are screwed onto the complementary plate 24 before the latter is positioned on the cheek 22.
Selon un deuxième mode de réalisation représenté sur les figures 6, 7 et 8, un système de connexion 50 pour un échangeur de chaleur comporte une structure métallique constituée de la joue 52 de l’échangeur de chaleur, fermant un faisceau de plaques métalliques de l’échangeur de chaleur. Le système de connexion 50 comporte également une tubulure 64 montée sur la joue 52, et formant un raccord étanche avec un orifice 62 (référencé figure 7) d’entrée ou de sortie de fluide agencé sur la joue 52. According to a second embodiment shown in Figures 6, 7 and 8, a connection system 50 for a heat exchanger comprises a metal structure consisting of the cheek 52 of the heat exchanger, closing a bundle of metal plates of the 'heat exchanger. The connection system 50 also includes a tube 64 mounted on the cheek 52, and forming a tight connection with an orifice 62 (referenced in Figure 7) for fluid inlet or outlet arranged on the cheek 52.
Sur la figure 6, une seule tubulure 64 est représentée, mais l’échangeur de chaleur comporte bien sûr préférentiellement au moins deux tubulures, une tubulure d’entrée de fluide et une tubulure de sortie de fluide, conformes au système de connexion 50 selon l’invention. In Figure 6, a single pipe 64 is shown, but the heat exchanger of course preferably comprises at least two pipes, a fluid inlet pipe and a fluid outlet pipe, conforming to the connection system 50 according to the 'invention.
Comme dans le premier mode de réalisation de l’invention, la tubulure 64 comporte une portion de base 646, et une portion de connexion 648 prolongeant axialement la portion de base 646, c’est-à-dire parallèlement à la direction d’écoulement du fluide réfrigérant en sortie de la joue 52. Les caractéristiques structurelles de la portion de base 646 et de la portion de connexion 648 sont similaires à celles de la tubulure 34 du premier mode de réalisation de l’invention et ne sont donc pas plus amplement détaillées ici. As in the first embodiment of the invention, the tubing 64 comprises a base portion 646, and a connection portion 648 extending axially the base portion 646, that is to say parallel to the flow direction of the refrigerant fluid at the outlet of the cheek 52. The structural characteristics of the base portion 646 and the connection portion 648 are similar to those of the tubing 34 of the first embodiment of the invention and are therefore not further explained. detailed here.
Contrairement au premier mode de réalisation, dans ce deuxième mode de réalisation de l’invention, le positionnement de la tubulure 64 sur la joue 52 est réalisé par emboîtement d’au moins une partie la portion de base 646 de la tubulure 64 dans un joint d’étanchéité surmoulé 54 fixé sur le contour de l’orifice 62 de la joue 32. Ce joint d’étanchéité surmoulé 54 prolonge axialement le contour de l’orifice 62 en s’évasant légèrement pour ceinturer étroitement la portion de base 646 de la tubulure 64 sur au moins une partie de celle-ci dans la direction axiale. Le joint d’étanchéité surmoulé 54 a donc une section, orthogonalement à la direction axiale, de forme complémentaire à la section de la portion de base 646, ici une section triangulaire. Unlike the first embodiment, in this second embodiment of the invention, the positioning of the tubing 64 on the cheek 52 is achieved by nesting at least part of the base portion 646 of the tubing 64 in a joint overmolded seal 54 fixed on the contour of the orifice 62 of the cheek 32. This overmolded seal 54 extends axially the contour of the orifice 62 by flaring slightly to closely surround the base portion 646 of the tubing 64 on at least part of it in the axial direction. The overmolded seal 54 therefore has a section, orthogonal to the direction axial, of complementary shape to the section of the base portion 646, here a triangular section.
La portion de base 646 est plaquée contre une surface interne de ce joint d’étanchéité surmoulé 54, notamment contre une gorge 644 (visible figure 8) creusée dans la surface de contact de la portion de base 646 avec le joint d’étanchéité surmoulé 54. The base portion 646 is pressed against an internal surface of this overmolded seal 54, in particular against a groove 644 (visible in Figure 8) dug in the contact surface of the base portion 646 with the overmolded seal 54 .
De plus, dans ce deuxième mode de réalisation de l’invention, le système de connexion 50 comporte un plot 58 brasé sur la joue 52 et s’étendant orthogonalement à la dimension d’extension principale de la joue 52, c’est-à-dire axialement, vers l’extérieur de la joue 52. Un collet 522 agencé sur la joue 52 permet de positionner le plot 58 avant son brasage sur la joue 52. Lors du positionnement de la tubulure 64 dans le joint d’étanchéité surmoulé 54, le plot 58 est inséré dans une oreille 642 de la tubulure 64. Le plot 58 comporte également un trou fileté 584 destiné à recevoir une vis (non représentée) traversant une excroissance d’une durite se connectant à la tubulure 64. Cette vis maintient l’excroissance en compression contre une surface 6422 de l’oreille 642, ce qui comprime l’oreille 642 et donc la tubulure 64 contre la joue 52. Furthermore, in this second embodiment of the invention, the connection system 50 comprises a stud 58 brazed on the cheek 52 and extending orthogonally to the main extension dimension of the cheek 52, that is to say i.e. axially, towards the outside of the cheek 52. A collar 522 arranged on the cheek 52 makes it possible to position the stud 58 before brazing it onto the cheek 52. When positioning the tubing 64 in the overmolded seal 54 , the stud 58 is inserted in an ear 642 of the tubing 64. The stud 58 also includes a threaded hole 584 intended to receive a screw (not shown) passing through a protrusion of a hose connecting to the tubing 64. This screw maintains the protrusion in compression against a surface 6422 of the ear 642, which compresses the ear 642 and therefore the tubing 64 against the cheek 52.
Un orifice 647 dans l’oreille 642 de la tubulure 64 permet de positionner angulairement l’excroissance de la durite sur l’oreille 642 pour permettre ce vissage, l’excroissance de la durite comportant un pion de positionnement complémentaire à cet orifice 647. An orifice 647 in the ear 642 of the tubing 64 makes it possible to position the protrusion of the hose angularly on the ear 642 to allow this screwing, the protrusion of the hose comprising a positioning pin complementary to this orifice 647.
Le plot 58 et la vis constituent donc, dans le système de connexion 50 selon l’invention, un dispositif de maintien en compression de la tubulure 64 contre la joue 52. The stud 58 and the screw therefore constitute, in the connection system 50 according to the invention, a device for maintaining the tubing 64 in compression against the cheek 52.
Dans ce deuxième mode de réalisation, un seul plot 58 par tubulure 64 du système de connexion 50 selon l’invention est nécessaire, et le dispositif de maintien en compression n’utilise que la vis associée à la durite venant se brancher sur la tubulure 64. In this second embodiment, only one stud 58 per tube 64 of the connection system 50 according to the invention is necessary, and the device for maintaining compression only uses the screw associated with the hose connecting to the tube 64 .
Dans ce deuxième mode de réalisation de l’invention, un procédé d’assemblage du système de connexion selon l’invention sur un faisceau de plaques d’un échangeur de chaleur, relativement à la tubulure 64 comporte les étapes suivantes : In this second embodiment of the invention, a method of assembling the connection system according to the invention on a bundle of plates of a heat exchanger, relative to the tubing 64 comprises the following steps:
La première étape est le positionnement du plot 58 dans le collet 522. L’étape suivante est le brasage de l’échangeur de chaleur équipé de la joue 52 sur laquelle est positionné le plot 58. Pour cela, l’ensemble joue 52 et plot 58 est positionné sur le faisceau de plaques de l’échangeur de chaleur. The first step is the positioning of the stud 58 in the collar 522. The next step is the brazing of the heat exchanger equipped with the cheek 52 on which the stud 58 is positioned. For this, the cheek assembly 52 and stud 58 is positioned on the bundle of plates of the heat exchanger .
L’étape suivante est le positionnement du joint d’étanchéité surmoulé 54 sur la joue 52. The next step is the positioning of the overmolded seal 54 on the cheek 52.
L’étape suivante est le positionnement de la tubulure 64 contre l’orifice 62 en emboîtant la tubulure 64 dans le joint d’étanchéité surmoulé 54 et en insérant le plot 58 dans l’oreille 642. The next step is the positioning of the tubing 64 against the orifice 62 by fitting the tubing 64 into the overmolded seal 54 and inserting the stud 58 into the ear 642.
L’étape suivante est la compression de l’oreille 642 le long du plot 58 et le blocage le long de ce plot 58 de l’oreille 642 maintenue en compression, en vissant une vis maintenue dans une excroissance d’une durite dans le trou fileté 584 du plot 58 et en connectant la durite dans la tubulure 64. The next step is the compression of the ear 642 along the stud 58 and the blocking along this stud 58 of the ear 642 held in compression, by screwing a screw held in an excrescence of a hose in the hole threaded 584 of the stud 58 and connecting the hose into the tubing 64.
Enfin la dernière étape est éventuellement une vérification de l’étanchéité du système de connexion 50. Bien sûr, l’invention n’est pas limitée aux exemples qui viennent d’être décrits et de nombreux aménagements peuvent être apportés à ces exemples sans sortir du cadre de l’invention. Finally, the last step is possibly a check of the tightness of the connection system 50. Of course, the invention is not limited to the examples which have just been described and numerous adjustments can be made to these examples without departing from the scope. framework of the invention.

Claims

REVENDICATIONS
1- Système de connexion (20) pour un échangeur de chaleur, le système de connexion (20) comportant : 1- Connection system (20) for a heat exchanger, the connection system (20) comprising:
- une structure métallique (22, 24) comportant un orifice (32) d’entrée ou de sortie de fluide, - a metal structure (22, 24) comprising a fluid inlet or outlet orifice (32),
- une tubulure (34) montée étanche sur la structure métallique (22, 24), formant un raccord avec l’orifice (32) d’entrée ou de sortie de fluide, la tubulure (34) comportant au moins une oreille (342, 344), - a tube (34) mounted watertight on the metal structure (22, 24), forming a connection with the fluid inlet or outlet orifice (32), the tube (34) comprising at least one ear (342, 344),
- un dispositif de maintien en compression (40) de la tubulure (34) contre la structure métallique (22, 24), le système étant caractérisé en ce que le dispositif de maintien en compression (40) comporte au moins un plot (28, 26) traversant l’oreille (342, 344) et solidaire de la structure métallique (22, 24), et au moins un élément de blocage (38, 36) de l’oreille (342, 344) le long du plot (28, 26), le plot (28, 26) comportant au moins un logement (284, 282, 262) dans lequel l’au moins un élément de blocage (38, 36) est logé. - a device for maintaining compression (40) of the tubing (34) against the metal structure (22, 24), the system being characterized in that the device for maintaining compression (40) comprises at least one stud (28, 26) passing through the ear (342, 344) and secured to the metal structure (22, 24), and at least one blocking element (38, 36) of the ear (342, 344) along the stud (28 , 26), the stud (28, 26) comprising at least one housing (284, 282, 262) in which the at least one blocking element (38, 36) is housed.
2- Système de connexion (20) selon la revendication 1 , dans lequel le logement (284) comporte un trou fileté, l’élément de blocage (38, 36) comportant une vis apte à être vissée dans le trou fileté en passant dans une excroissance d’un embout de tube destiné à être monté étanche sur la tubulure (34). 2- Connection system (20) according to claim 1, in which the housing (284) comprises a threaded hole, the blocking element (38, 36) comprising a screw capable of being screwed into the threaded hole passing through a protrusion of a tube end intended to be mounted watertight on the tubing (34).
3- Système de connexion (20) selon la revendication 1 ou 2, dans lequel le plot (28, 26) comporte une gorge circulaire (282, 262) formant le logement (282, 262), l’élément de blocage (38, 36) étant sous forme d’une agrafe (38, 36), l’agrafe (38, 36) comportant deux bras, et l’oreille (342, 344) comportant deux orifices (3442) traversants recevant chacun un des deux bras de l’agrafe (38, 36), les deux bras enserrant le plot (28, 26) en étant logés dans la gorge circulaire (282, 262). 3- Connection system (20) according to claim 1 or 2, in which the stud (28, 26) comprises a circular groove (282, 262) forming the housing (282, 262), the blocking element (38, 36) being in the form of a clip (38, 36), the clip (38, 36) comprising two arms, and the ear (342, 344) comprising two through orifices (3442) each receiving one of the two arms of the clip (38, 36), the two arms gripping the stud (28, 26) while being housed in the circular groove (282, 262).
4- Système de connexion (20) selon l’une quelconque des revendications 1 à 3, dans lequel la tubulure (34) comporte une autre oreille (344), la structure métallique (22, 24) comportant un autre plot (26) solidaire de la structure métallique (22, 24) et traversant l’autre oreille (344). 4- Connection system (20) according to any one of claims 1 to 3, in which the tubing (34) comprises another ear (344), the metal structure (22, 24) comprising another integral stud (26) of the metal structure (22, 24) and passing through the other ear (344).
5- Système de connexion (20) selon la revendication 4, dans lequel le dispositif de maintien en compression (40) comporte un élément de blocage (36) de l’autre oreille (344) le long de l’autre plot (26), l’autre plot (26) comportant un logement (262) dans lequel l’élément de blocage (36) est logé. 6- Système de connexion (20) selon l’une quelconque des revendications précédentes, dans lequel la structure métallique (22, 24) comporte une joue (22) de l’échangeur de chaleur et une plaque complémentaire (24) soudée ou brasée contre la joue (22) de l’échangeur de chaleur, le plot (28, 26) étant solidaire de la plaque complémentaire (24). 5- Connection system (20) according to claim 4, in which the compression maintaining device (40) comprises a blocking element (36) of the other ear (344) along the other stud (26) , the other stud (26) comprising a housing (262) in which the blocking element (36) is housed. 6- Connection system (20) according to any one of the preceding claims, in which the metallic structure (22, 24) comprises a cheek (22) of the heat exchanger and a complementary plate (24) welded or brazed against the cheek (22) of the heat exchanger, the stud (28, 26) being integral with the complementary plate (24).
7- Système de connexion (20) selon la revendication précédente, dans lequel la structure métallique (22, 24) comporte un dispositif d’indexage de la plaque complémentaire (24) sur la joue (22) et/ou du plot (28) sur la joue (22). 7- Connection system (20) according to the preceding claim, in which the metallic structure (22, 24) comprises a device for indexing the complementary plate (24) on the cheek (22) and/or the stud (28) on the cheek (22).
8- Système de connexion (20) selon la revendication précédente, dans lequel le dispositif d’indexage comporte au moins un collet (222, 224) apte à s’insérer dans une ouverture correspondante de la plaque complémentaire (24) et/ou à recevoir le plot (28). 8- Connection system (20) according to the preceding claim, in which the indexing device comprises at least one collar (222, 224) capable of being inserted into a corresponding opening of the complementary plate (24) and/or to receive the stud (28).
9- Système de connexion (20) selon l’une quelconque des revendications 6 à 8 prise dans la dépendance de la revendication 4, dans lequel l’autre plot (26) est positionné sur une surface de la plaque complémentaire (24) s’étendant au-delà de la joue (22). 9- Connection system (20) according to any one of claims 6 to 8 taken in dependence on claim 4, in which the other pad (26) is positioned on a surface of the complementary plate (24) extending beyond the cheek (22).
10- Système de connexion (20) selon l’une quelconque des revendications précédentes, dans lequel la tubulure (34) comporte une portion de base (346) proximale à la structure métallique (22, 24), et une portion de connexion (348) reliée à la portion de base (346), la portion de connexion (348) étant de section inférieure à celle de la portion de base (346). 10- Connection system (20) according to any one of the preceding claims, in which the tubing (34) comprises a base portion (346) proximal to the metal structure (22, 24), and a connection portion (348 ) connected to the base portion (346), the connection portion (348) being of smaller section than that of the base portion (346).
11- Echangeur de chaleur comprenant au moins un faisceau de plaques et au moins un système de connexion (20) selon l’une quelconque des revendications précédentes. 11- Heat exchanger comprising at least one bundle of plates and at least one connection system (20) according to any one of the preceding claims.
12- Procédé d’assemblage d’un système de connexion (20) selon l’une quelconque des revendications 1 à 10, ledit procédé comportant les étapes de :12- Method for assembling a connection system (20) according to any one of claims 1 to 10, said method comprising the steps of:
- solidarisation du plot (28, 26) sur la structure métallique (22, 24), - securing the stud (28, 26) to the metal structure (22, 24),
- insertion de l’oreille (342, 344) de la tubulure (34) sur le plot (28, 26) - insertion of the ear (342, 344) of the tubing (34) on the stud (28, 26)
- compression de l’oreille (342, 344) le long du plot (28, 26) et blocage de l’oreille (342, 344) via l’élément de blocage (38, 36). - compression of the ear (342, 344) along the stud (28, 26) and blocking of the ear (342, 344) via the blocking element (38, 36).
PCT/EP2023/073329 2022-08-29 2023-08-25 Fluid connection system for a heat exchanger WO2024046891A1 (en)

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FRFR2208602 2022-08-29
FR2208602A FR3139191A1 (en) 2022-08-29 2022-08-29 Fluid connection system for a heat exchanger

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Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20100243200A1 (en) * 2009-03-26 2010-09-30 Modine Manufacturing Company Suction line heat exchanger module and method of operating the same
IT202000032090A1 (en) * 2020-12-23 2022-06-23 Ufi Filters Spa OIL TEMPERATURE ADJUSTMENT ASSEMBLY

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20100243200A1 (en) * 2009-03-26 2010-09-30 Modine Manufacturing Company Suction line heat exchanger module and method of operating the same
IT202000032090A1 (en) * 2020-12-23 2022-06-23 Ufi Filters Spa OIL TEMPERATURE ADJUSTMENT ASSEMBLY

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