Heat exchanger
09845997 ยท 2017-12-19
Assignee
Inventors
Cpc classification
F28D2021/0085
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D1/0426
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D1/0333
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D2020/0013
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D9/0062
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F28D9/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D1/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A plate-type heat exchanger, in particular for motor vehicles, is described which includes plate pairs. In one example, a plate pair includes a first plate and a second plate that form a first flow path and a second flow path between the plates. In this configuration, the first and the second plate are associated with a first attachment plate and a second attachment plate, respectively. A third flow path is formed between the first plate and the second attachment plate and the first flow path is formed between the second plate and the first attachment plate. Alternatively, the third flow path is formed between the first plate and the first attachment plate and the first flow path is formed between the second plate and the second attachment plate. A spatial region for a fourth flow path may also be formed between adjacent plate pairs.
Claims
1. A heat exchanger comprising: a plurality of plate pairs arranged in a block, wherein each plate pair comprises a first flow path, a second flow path, a third flow path, and a fourth flow path, wherein each flow path is isolated from the other flow paths, wherein each plate pair comprises at least one first plate and one second plate, wherein the first plate comprises a first main plate and a first attachment plate, wherein the second plate comprises a second main plate and a second attachment plate, wherein a portion of the first flow path and a portion of the second flow path are formed between the first main plate and the second main plate, wherein (a) a portion of the third flow path is formed between the first plate and the second attachment plate and a portion of the first flow path is furthermore formed between the second main plate and the first attachment plate, or (b) a portion of the third flow path is formed between the first main plate and the first attachment plate and a portion of the first flow path is furthermore formed between the second main plate and the second attachment plate, wherein a portion of the fourth flow path is formed between two adjacent plate pairs, wherein the first attachment plate is formed separately from the first main plate is placed onto a planar region of the second main plate such that the first main plate and the first attachment plate abut opposite faces of the second main plate, wherein the second attachment plate is formed separately from the second main plate and is placed onto a planar region of the first main plate such that the second main plate and the second attachment plate abut opposite faces of the first main plate.
2. The heat exchanger as claimed in claim 1, wherein the first main plate and the second main plate and the first attachment plate and the second attachment plate each have openings or cups as port regions and connecting regions, and have duct-forming structures for forming at least one flow path between port regions.
3. The heat exchanger as claimed in claim 1, wherein the first main plate and the second main plate of each plate pair each have three port regions, connecting regions, or some combination thereof at each of two opposite end regions of each main plate, wherein each port or connecting region is connected to one of the first flow path, the second flow path, or the third flow path, wherein at least one duct-forming structure is provided between two opposite port regions to form a portion of the first or the second flow path.
4. The heat exchanger as claimed in claim 1, wherein the first attachment plate and the second attachment plate of each plate pair each two port regions, connecting regions, or some combination thereof at each of two opposite end regions of each attachment plate, wherein each port or connecting region is connected to one of the first flow path, the second flow path, or the third flow path, wherein at least one duct-forming structure is provided between two opposite port regions in order to form a portion of the first or the third flow path.
5. The heat exchanger as claimed in claim 1, wherein the first main plate has a region connected to a first attachment plate, and wherein the second main plate has a region connected to a second attachment plate, wherein the first attachment plate and the second attachment plate have a duct-forming structure between two port regions forming a portion of the first or the third flow path.
6. The heat exchanger as claimed in claim 1, wherein the first main plate, the second main plate, the first attachment plate, and the second attachment plate each comprise duct-forming structures which are embossed into the surface of each plate in the form of a protruding duct.
7. The heat exchanger as claimed in claim 1, wherein the first attachment plate has openings or cups as port regions and connecting regions, wherein the first attachment plate has a duct-forming structure between the port regions forming a portion of the first flow path.
8. The heat exchanger as claimed in claim 1, wherein the second attachment plate has openings or cups as port regions and connecting regions, wherein the second attachment plate has a duct-forming structure between the port regions forming a portion of the second flow path.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will be explained in more detail below on the basis of a least one exemplary embodiment and with reference to the drawings, in which:
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PREFERRED EMBODIMENT OF THE INVENTION
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(14) As can be seen, the upper and the lower collector 2, 3 are formed from substantially three flow ducts which are formed by the three port connectors or port regions 7, 8 and 9, wherein the port connectors in the plates of the plate pairs are preferably configured as openings and/or as cups, that is to say as embossments perpendicular to the plate plane. If two adjacent plate pairs now make contact, they make contact in the region of the cups, such that the cups, considered on their own, form a flow duct in the lateral direction of the heat exchanger. Between the collectors there are also provided flow ducts which extend between the port regions in the manner of cups. Here, the first, second and third flow ducts 10, 11, 12 are provided, wherein the flow ducts 10 are formed between the port regions 8, the flow ducts 11 are formed between the port regions 7 and the flow ducts 12 are formed between the port regions 9.
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(17) Adjacent to the main plate 25 there is in turn provided an attachment plate 26 which is connected to the main plate, wherein the attachment plate 26 in turn has port regions 37 and 38 at its two upper and lower end regions, wherein said two port regions 37 and 38 are in turn embossed in the manner of cups, wherein, in the exemplary embodiment of said plate, the cups 37 are connected to a fluid duct 39, wherein the embossments 38 do not communicate with the fluid duct 39.
(18) To produce a plate pair, the two plate main regions 23 and 25 are then placed onto one another such that the openings 29 are in alignment with the openings 33, the openings 28 are in alignment with the openings 34, and the openings 27 are in alignment with the openings 35. In this way, the planar region 40 laterally covers the fluid duct 42, and the planar region 41 laterally covers the fluid duct 36. The attachment regions 24 are subsequently folded over onto the region 40, and the attachment plate 26 is folded over onto the region 41, such that a total of four separate fluid ducts are formed, wherein the fluid duct 42 is covered by the surface region 40 and the fluid duct 32 is placed thereon. Since the cups 30 and 31, and the openings 29 and 28, respectively, are not in fluid communication with one another, it is correspondingly the case that two adjacent flow ducts 42 and 32 are formed which do not communicate with one another. At the same time, the fluid duct 36 is formed by virtue of its being covered by the surface region 41, and the fluid duct 39 is likewise covered by the surface 41, wherein in this case, however, the two cups 35 and 37 communicate with one another via the opening 27, such that the fluid ducts 36 and 39 are connected fluidically and in parallel. The port 38 communicates, by way of the opening 28, with the opening 34 and with the cup 31, and is thus connected to the fluid duct 32.
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(23) The same substantially applies to the plate 76, which has a main plate 77 and an attachment plate 78, wherein it is in turn also the case here that the main plate 77 has a fluid duct 79 between ports 80, and the openings 81 arranged adjacent to the remote end of the plate are not provided with a fluid duct. It can also be seen that the cups of the ports of the attachment plate are in turn embossed in a different direction than the cups 80 of the main plate 77. It can also be seen that the attachment plate 78 only has an embossment at its respective ends and has the embossment.
(24) When the two plates 70 and 76 are mounted on one another, that is to say the main plates are placed onto one another, and the attachment plates are subsequently folded over, said attachment plates are placed not onto the adjacent plate but rather onto the plate to which they are connected. This can also be seen in
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(29) In the present exemplary embodiment of
LIST OF REFERENCE NUMERALS
(30) 1 Heat exchanger 2 Collector 3 Collector 4 Block 5 Plate group 6 Space region 7 Port region 8 Port region 9 Port region 10 Flow duct 11 Flow duct 12 Flow duct 13 Attachment plate 14 Plate 20 Plate pair 21 Plate 22 Plate 23 Main plate 24 Attachment plate 25 Main plate 26 Attachment plate 27 Fluid port 28 Fluid port 29 Fluid port 30 Port, cup 31 Port 32 Fluid duct 33 Opening 34 Opening 35 Opening 36 Fluid duct 37 Port region, cup 38 Port region, cup 39 Fluid duct 40 Planar region 41 Region 42 Flow duct 50 Plate 51 Plate 52 Fluid or refrigerant duct 53 Fluid or refrigerant duct 54 Fluid or refrigerant duct 55 Fluid or cold accumulator duct 56 Arrow 57 Arrow 58 Arrow 59 Plate 60 Plate 61 Port 62 Fluid duct 63 Port 64 Port 65 Fluid duct 66 Fluid duct 67 Fluid duct 70 Plate 71 Main plate 72 Attachment plate 73 Fluid duct 74 Port 75 Port 76 Plate 77 Main plate 78 Attachment plate 78a Attachment plate 79 Fluid duct 80 Port 81 Opening 82 Port 83 Region 84 Port, cup 85 Port, cup 86 Fluid duct 87 Port 88 Port 89 Cutout 90 Plate pair 91 Plate pair 92 Plate pair 93 Flow duct 94 Flow duct 95 Flow duct 96 Flow duct 97 Partition 98 Outer wall 99 Partition 100 Side wall 101 Air direction