HEAT EXCHANGER
20230375289 · 2023-11-23
Inventors
Cpc classification
F28D21/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F9/027
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D2021/0068
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F28F9/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D1/053
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A heat exchanger includes: a manifold having a manifold opening passing through a pipe wall of the manifold; a distribution pipe disposed in the manifold and having a distribution pipe opening passing through a pipe wall of the distribution pipe; and a connecting pipe assembly including a first connecting pipe The first connecting pipe is inserted in the manifold opening, has an end connected to the distribution pipe at the distribution pipe opening, and is in fluid communication with the distribution pipe. Thereby, the space occupied by the connecting pipe assembly in the manifold can be reduced.
Claims
1. A heat exchanger, comprising: a manifold having a manifold opening passing through a pipe wall of the manifold; a distribution pipe disposed in the manifold and having a distribution pipe opening passing through a pipe wall of the distribution pipe; and a connecting pipe assembly comprising a first connecting pipe, wherein the first connecting pipe is inserted in the manifold opening, has an end connected to the distribution pipe at the distribution pipe opening, and is in fluid communication with the distribution pipe.
2. The heat exchanger according to claim 1, wherein the first connecting pipe comprises a flange extended towards a radial outside from the end of the first connecting pipe, wherein the flange is connected to a portion of the pipe wall of the distribution pipe surrounding the distribution pipe opening.
3. The heat exchanger according to claim 2, wherein an inner diameter of the end of the first connecting pipe is smaller than an inner diameter of the distribution pipe opening; and the connecting pipe assembly further comprises an insertion pipe, wherein a first end of the insertion pipe close to the first connecting pipe is inserted in the distribution pipe opening, and an end face of the first end of the insertion pipe abuts against an end face of the end of the first connecting pipe, and a second end of the insertion pipe opposite to the first end is located in the distribution pipe.
4. The heat exchanger according to claim 1, wherein the distribution pipe comprises: a first distribution pipe section and a second distribution pipe section spaced apart from each other in an axial direction and a distribution pipe connecting section connected between the first distribution pipe section and the second distribution pipe section, and the distribution pipe opening is formed in the distribution pipe connecting section.
5. The heat exchanger according to claim 4, wherein the distribution pipe connecting section of the distribution pipe and the first connecting pipe of the connecting pipe assembly are an integrated three-way pipe.
6. The heat exchanger according to claim 2, wherein the connecting pipe assembly further comprises a second connecting pipe, and an end face of an end of the second connecting pipe close to the manifold is connected to a portion of the pipe wall of the manifold surrounding the manifold opening.
7. The heat exchanger according to claim 6, wherein the second connecting pipe of the connecting pipe assembly comprises a flange extended towards a radial outside from the end of the second connecting pipe close to the manifold.
8. The heat exchanger according to claim 7, wherein the second connecting pipe of the connecting pipe assembly further comprises a protrusion or annular step protruding towards a radial inside from an inner wall of the second connecting pipe on a side of the second connecting pipe close to the manifold.
9. The heat exchanger according to claim 7, wherein an inner diameter of the end, close to the manifold, of the second connecting pipe of the connecting pipe assembly is greater than an inner diameter of the manifold opening.
10. The heat exchanger according to claim 1, wherein the end of the first connecting pipe is inserted in the distribution pipe opening.
11. The heat exchanger according to claim 10, wherein the first connecting pipe further comprises an annular step portion located on an outer wall of the first connecting pipe and adjacent to the end of the first connecting pipe, and a portion of the pipe wall of the distribution pipe surrounding the distribution pipe opening abuts against the annular step portion of the outer wall of the first connecting pipe.
12. The heat exchanger according to claim 11, wherein the first connecting pipe further comprises an annular step portion located on an inner wall of the first connecting pipe and adjacent to the end of the first connecting pipe.
13. The heat exchanger according to claim 1, wherein the manifold further has a heat exchange tube connecting opening passing through the pipe wall of the manifold, the heat exchanger further comprises a heat exchange tube having an end connected to the heat exchange tube connecting opening of the manifold, and an angular interval between a centerline of the manifold opening and a centerline of the heat exchange tube connecting opening in a circumferential direction of the manifold is between 60° and 180°.
14. The heat exchanger according to claim 1, wherein the first connecting pipe is extended to an outside of the manifold through the manifold opening of the pipe wall of the manifold.
15. The heat exchanger according to claim 1, wherein the connecting pipe assembly is disposed at a position between a first point and a second point in an axial direction of the manifold, a distance from the first point to one end, in the axial direction, of the manifold in the axial direction of the manifold is ¼ of a total length of the manifold, and a distance from the second point to the one end, in the axial direction, of the manifold in the axial direction of the manifold is ¾ of the total length of the manifold.
16. The heat exchanger according to claim 3, wherein the connecting pipe assembly further comprises a second connecting pipe, and an end face of an end of the second connecting pipe close to the manifold is connected to a portion of the pipe wall of the manifold surrounding the manifold opening.
17. The heat exchanger according to claim 4, wherein the connecting pipe assembly further comprises a second connecting pipe, and an end face of an end of the second connecting pipe close to the manifold is connected to a portion of the pipe wall of the manifold surrounding the manifold opening.
18. The heat exchanger according to claim 5, wherein the connecting pipe assembly further comprises a second connecting pipe, and an end face of an end of the second connecting pipe close to the manifold is connected to a portion of the pipe wall of the manifold surrounding the manifold opening.
19. The heat exchanger according to claim 2, wherein the first connecting pipe is extended to an outside of the manifold through the manifold opening of the pipe wall of the manifold.
20. The heat exchanger according to claim 3, wherein the first connecting pipe is extended to an outside of the manifold through the manifold opening of the pipe wall of the manifold.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021]
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[0025]
DETAILED DESCRIPTION
[0026] The present disclosure will be further described in detail below by means of embodiments in conjunction with accompanying drawings.
[0027] Referring to
[0028] Referring to
[0029] Referring to
[0030] Referring to
[0031] Referring to
[0032] Referring to
[0033] Referring to
[0034] Referring to
[0035] According to embodiments of the present disclosure, the connecting pipe assembly 3 is disposed at a position between a first point and a second point in an axial direction of the manifold 1. A distance from the first point to one end, in the axial direction, of the manifold 1 in the axial direction of the manifold 1 is ¼ of a total length of the manifold 1, and a distance from the second point to the one end, in the axial direction, of the manifold 1 in the axial direction of the manifold 1 is ¾ of the total length of the manifold 1. Since the connecting pipe assembly 3 is located in the middle, in a length direction, of the manifold 1, which is equivalent to dividing the distribution pipe into two parts with equal lengths or with little difference in length, the length of the distribution pipe is minimized so that the refrigerant is distributed more uniformly. The refrigerant enters the distribution pipe 2 from the connecting pipe assembly 3, flows from the middle to both ends in the distribution pipe 2, then flows into the manifold 1, and then flows into the heat exchange tube 5, thereby optimizing the distribution of the refrigerant.
[0036] With the heat exchanger according to the embodiments of the present disclosure, for example, the space occupied by the connecting pipe assembly in the manifold can be reduced.
[0037] In addition, since the connecting pipe assembly is connected to the pipe wall of the manifold, the size of the heat exchanger in the axial direction of the manifold can be reduced. At the same time, since the connecting pipe assembly has small mass and volume, it will not cause local heat absorption to affect the soldering quality during the soldering process of the heat exchanger. In addition, the connecting pipe assembly occupies very little space in the manifold, and thus the flow of refrigerant in the manifold will not be affected.
[0038] Although the above embodiments have been described, some features of the above embodiments can be combined to form new embodiments.
[0039] For example, although in the embodiments shown in
[0040] While the present disclosure has been illustrated and described with respect to a particular embodiment thereof, it should be appreciated by those of ordinary skill in the art that various modifications to this disclosure may be made without departing from the spirit and scope of the present disclosure.