CN202511396U - Heat exchanger for outdoor unit, air conditioner and dehumidifier - Google Patents

Heat exchanger for outdoor unit, air conditioner and dehumidifier Download PDF

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Publication number
CN202511396U
CN202511396U CN2012201785496U CN201220178549U CN202511396U CN 202511396 U CN202511396 U CN 202511396U CN 2012201785496 U CN2012201785496 U CN 2012201785496U CN 201220178549 U CN201220178549 U CN 201220178549U CN 202511396 U CN202511396 U CN 202511396U
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CN
China
Prior art keywords
heat exchanger
premises station
side plate
plate
station heat
Prior art date
Legal status (The legal status 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 status listed.)
Withdrawn - After Issue
Application number
CN2012201785496U
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Chinese (zh)
Inventor
张辉
陈绍林
熊军
高智强
王平
刘明
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Gree Electric Appliances Inc of Zhuhai
Original Assignee
Gree Electric Appliances Inc of Zhuhai
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Priority to CN2012201785496U priority Critical patent/CN202511396U/en
Application granted granted Critical
Publication of CN202511396U publication Critical patent/CN202511396U/en
Anticipated expiration legal-status Critical
Withdrawn - After Issue legal-status Critical Current

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Abstract

The utility model provides a heat exchanger for an outdoor unit, an air conditioner and a dehumidifier. Connecting side plates are arranged on the two opposite sidewalls of the heat exchanger for the outdoor unit. The connecting side plate on one side of the heat exchanger for the outdoor unit, which is away from a compressor, comprises an upper side plate and a lower side plate, which are separated from each other. By the heat exchanger for the outdoor unit, the air conditioner and the dehumidifier, the structures of the side plates can be optimized, materials can be saved, and cost can be lowered.

Description

Off-premises station heat exchanger, air-conditioner and dehumidifier
Technical field
The utility model relates to the air-conditioner technical field, in particular to a kind of off-premises station heat exchanger, air-conditioner and dehumidifier.
Background technology
The off-premises station heat exchanger is the core component in the air-conditioner outdoor unit; Comprise the Thermal Performance of Micro Channels pipe and be set in a plurality of fins on the Thermal Performance of Micro Channels pipe periphery wall; Be communicated with through return bend between two Thermal Performance of Micro Channels pipes, play the purpose of heat exchange through the circulation of refrigerant in the Thermal Performance of Micro Channels pipe.As shown in Figure 1; At present; In order to improve the heat of off-premises station; The Thermal Performance of Micro Channels pipe of two or more rows normally is set in the off-premises station heat exchanger, and fixedly is to link together between a plurality of Thermal Performance of Micro Channels tube end through two strip side plates 37 ' that are separately positioned on off-premises station heat exchanger two opposite side walls.Strip side plate 37 ' is normally processed by sheet metal component; Length is corresponding with off-premises station heat exchanger width; Have a plurality of through holes that are used for through return bend, its effect is fixing a plurality ofly be arranged in Thermal Performance of Micro Channels pipe together and the Thermal Performance of Micro Channels pipe is fixed on off-premises station inside.
When assembling off-premises station heat exchanger, it need connect the miscellaneous part of off-premises station usually near a side at off-premises station center, and like compressor, the side plate that therefore is positioned at this side need be connected with a lot of pipelines, and stressed comparatively complicacy should adopt strip side plate 37 '.And the side plate that is positioned at opposite side only needs to be fixedly connected with the sidewall and the panel of off-premises station usually, and is stressed comparatively simple, can not receive the interference effect of external force basically, therefore adopts strip side plate 37 ' meeting waste material, increases the whole cost of air-conditioner.
The utility model content
The utility model aims to provide a kind of off-premises station heat exchanger, air-conditioner and dehumidifier, can optimize the side plate structure, saves material, reduces cost.
To achieve these goals; An aspect according to the utility model; A kind of off-premises station heat exchanger is provided; The two opposite side walls of off-premises station heat exchanger is provided with the connection side plate, and the connection side plate away from a side of compressor that is positioned at the off-premises station heat exchanger comprises side plate and side plate down, and last side plate and following side plate are disconnected from each other.
Further, last side plate comprises: epipleural is fixedly connected with the first side wall of off-premises station; And upper plate, be fixedly connected with off-premises station heat exchanger and epipleural; Epipleural is fixedly connected with upper plate orthogonally.
Further, epipleural has the epipleural screw hole; The first side wall of off-premises station has and the corresponding sidewall screw hole of epipleural screw hole.
Further, upper plate has the upper plate through hole that matches with the return bend of off-premises station heat exchanger.
Further, following side plate comprises: lower side panel is fixedly connected with the panel of off-premises station; Lower roof plate is fixedly connected with the off-premises station heat exchanger; And connecting plate, two opposite ends are fixedly attached to lower side panel and lower roof plate respectively.
Further, lower side panel has the lower side panel screw hole; The panel of off-premises station has and the corresponding panel screw of lower side panel screw hole hole.
Further, lower roof plate has the lower roof plate through hole that matches with the return bend of off-premises station heat exchanger.
Further, lower side panel and lower roof plate laterally arrange, and lower side panel and lower roof plate lay respectively at two opposite ends of connecting plate, and connecting plate is connected with lower side panel, lower roof plate vertical fixing respectively.
Further, the height of lower side panel is greater than lower roof plate and/or connecting plate.
Further, last side plate and following side plate are the one bending and molding.
Further, the off-premises station heat exchanger comprises that also removably being connected to return bend pricks with the heatproof line of fixing two adjacent return bends.
According to the utility model on the other hand, a kind of air-conditioner is provided, has comprised indoor set and the off-premises station that is communicated with indoor set, off-premises station comprises the off-premises station heat exchanger, and the off-premises station heat exchanger is aforementioned each off-premises station heat exchanger.
According to the utility model on the other hand; A kind of air-conditioner is provided, has comprised heat exchanger, the two opposite side walls of heat exchanger is provided with the connection side plate; The connection side plate away from a side of compressor that is positioned at heat exchanger comprises side plate and side plate down, and last side plate and following side plate are disconnected from each other.
According to the utility model on the other hand; A kind of dehumidifier is provided, has comprised heat exchanger, the two opposite side walls of heat exchanger is provided with the connection side plate; The connection side plate away from a side of compressor that is positioned at heat exchanger comprises side plate and side plate down, and last side plate and following side plate are disconnected from each other.
Use the technical scheme of the utility model; Side through the off-premises station heat exchanger connects side plate and is set to two side plates independently separately, lays respectively at the two ends up and down of off-premises station heat exchanger homonymy, and the off-premises station heat exchanger is fixedly connected with the sidewall and the panel of off-premises station respectively; Compare to the strip side plate of a traditional whole piece; Optimize the structure of side plate, can save the side plate material effectively, reduced the whole cost of air-conditioner.
Description of drawings
The Figure of description that constitutes the application's a part is used to provide the further understanding to the utility model, and illustrative examples of the utility model and explanation thereof are used to explain the utility model, do not constitute the improper qualification to the utility model.In the accompanying drawings:
Fig. 1 shows the strip side plate sketch map of off-premises station heat exchanger of the prior art;
Fig. 2 shows the off-premises station overall structure decomposing schematic representation according to the embodiment of the utility model;
Fig. 3 shows the local enlarged diagram according to the integrally-built P of the off-premises station of Fig. 2 place;
Fig. 4 shows the local enlarged diagram according to the integrally-built B of the off-premises station of Fig. 2 place;
Fig. 5 shows according to the last side plate of the off-premises station heat exchanger of the embodiment of the utility model and following side plate and off-premises station heat exchanger one side syndeton sketch map;
Fig. 6 shows the last side plate sketch map according to the off-premises station heat exchanger of the embodiment of the utility model; And
Fig. 7 shows the following side plate sketch map according to the off-premises station heat exchanger of the embodiment of the utility model.
The specific embodiment
Below with reference to accompanying drawing and combine embodiment to specify the utility model.Need to prove that under the situation of not conflicting, embodiment and the characteristic among the embodiment among the application can make up each other.
Like Fig. 2~shown in Figure 5, according to the embodiment of the utility model, the first side wall 31 and second sidewall 32 that the shell of off-premises station 30 comprises panel 35 and is fixedly attached to 35 liang of opposite ends of panel.Be provided with installing space near second sidewall, 32 places in off-premises station 30 internal cavities, be used to place compressor.Be placed with off-premises station heat exchanger 39 between this installing space and the first side wall 31.Off-premises station heat exchanger 39 comprises that a plurality of edges are parallel to the Thermal Performance of Micro Channels pipe that panel 35 directions are arranged, and each Thermal Performance of Micro Channels pipe periphery wall all is arranged with a plurality of fins 38.Be communicated with through return bend 34 between the Thermal Performance of Micro Channels pipe.In order to improve heat, be provided with two off-premises station heat exchangers 39.
Off-premises station heat exchanger 39 two opposite side walls are provided with side plate with fixedly Thermal Performance of Micro Channels pipe and return bend 34, wherein comprise side plate 10 and side plate 20 down away from the side plate of compressor one side, and last side plate 10 and following side plate 20 are disconnected from each other.Because off-premises station heat exchanger 39 is stressed less away from compressor one side, therefore, last side plate 10 only need satisfy the upper and lower side that can fix this side with the design of following side plate 20 and get final product.Divide between last side plate 10 and the following side plate 20 and be arranged; Last side plate 10 only is arranged at the upper end of off-premises station heat exchanger 39, and following side plate 20 only is arranged at the lower end of off-premises station heat exchanger 39, is not connected between last side plate 10 and the following side plate 20; Thereby can effectively save the side plate material, reduce whole cost.
In conjunction with referring to Fig. 6, last side plate 10 comprises epipleural 11 and upper plate 12, and epipleural 11 is fixedly connected with upper plate 12 orthogonally.Epipleural 11 has epipleural screw hole 13, and the sidewall screw hole 33 corresponding settings with the first side wall that is positioned at off-premises station 30 31 are fixedly connected epipleural 11 through screw with the first side wall 31.Upper plate 12 has two upper plate through holes 14, is used to pass the two ends of return bend 34, the side plate face of upper plate 12 and the side wall surface of off-premises station heat exchanger 39 is fitted, thereby upper plate 12 is fixedly connected with off-premises station heat exchanger 39.
In conjunction with referring to Fig. 7, following side plate 20 comprises lower side panel 21, lower roof plate 22 and connecting plate 25.Lower side panel 21 has lower side panel screw hole 23, and the panel screw hole 36 corresponding settings with on the panel that is positioned at off-premises station 30 35 are fixedly connected lower side panel 21 through screw with panel 35.Lower roof plate 22 has two lower roof plate through holes 24, is used to pass the two ends of return bend 34, the lower roof plate 22 and the side wall surface of off-premises station heat exchanger 39 is fitted, thereby lower roof plate 22 is fixedly connected with off-premises station heat exchanger 39.Lower side panel 21 laterally arranges with lower roof plate 22, and lower side panel 21 and lower roof plate 22 lay respectively at two opposite ends of connecting plate 25, is connected with connecting plate 25 vertical fixing, and lower side panel 21 and lower roof plate 22 lays respectively at the both sides of connecting plate 25 plate faces.Adopt this connected mode, one side is to connect reliably, is difficult for becoming flexible, and is to reduce vibration, reduction noise on the other hand.Because following side plate 20 is near the chassis 40 of off-premises station; And the vibration on chassis 40 is bigger; The height of the lower side panel 21 therefore in the side plate 20 needs descend side plate 20 to connect off-premises station heat exchanger 39 and panel 35 more firm like this greater than lower roof plate 22 and/or connecting plate 25.
Last side plate 10 and down side plate 20 all can the one bending forming, this simple and convenient processing method is prone to row.
When two or more off-premises station heat exchanger 39 is set; For the return bend 34 that makes two adjacent off-premises station heat exchangers 39 away from a side of compressor fixing better; Can between the return bend 34 of adjacent two off-premises station heat exchangers 39, bundle the heatproof line and prick, off-premises station heat exchanger 39 is more stably worked.
Another embodiment according to the utility model; A kind of air-conditioner is provided; This air-conditioner is a detachable air conditioner; Comprise indoor set and the off-premises station that is connected with indoor set 30, off-premises station 30 comprises off-premises station heat exchanger 39, and this off-premises station heat exchanger 39 is aforementioned any off-premises station heat exchanger 39.
Another embodiment according to the utility model provides a kind of air-conditioner, and this air-conditioner is an integral air conditioner; Comprise heat exchanger; Two opposite ends of heat exchanger are provided with the connection side plate, and the connection side plate away from a side of compressor that wherein is positioned at heat exchanger comprises side plate 10 and side plate 20 down, and last side plate 10 and following side plate 20 are disconnected from each other; Last side plate 10 is fixedly connected with the sidewall of air-conditioner, and following side plate 20 is fixedly connected with the housing of air-conditioner.
Another embodiment according to the utility model; A kind of dehumidifier is provided; Comprise heat exchanger; Two opposite ends of heat exchanger are provided with the connection side plate, and the connection side plate away from a side of compressor that wherein is positioned at heat exchanger comprises side plate 10 and side plate 20 down, and last side plate 10 and following side plate 20 are disconnected from each other.
From above description; Can find out that the utility model the above embodiments have realized following technique effect: the side board through the off-premises station heat exchanger is set to two side plates independently separately, lays respectively at the two ends up and down of off-premises station heat exchanger homonymy; The off-premises station heat exchanger is fixedly connected with the sidewall and the panel of off-premises station respectively; Compare to the strip side plate of a traditional whole piece, optimized the structure of side plate, can save the side plate material effectively; Improve the logistics turnover, reduce the whole cost of air-conditioner.
The preferred embodiment that the above is merely the utility model is not limited to the utility model, and for a person skilled in the art, the utility model can have various changes and variation.All within the spirit and principle of the utility model, any modification of being done, be equal to replacement, improvement etc., all should be included within the protection domain of the utility model.

Claims (14)

1. off-premises station heat exchanger; The two opposite side walls of said off-premises station heat exchanger (39) is provided with the connection side plate; It is characterized in that; The connection side plate away from a side of compressor that is positioned at said off-premises station heat exchanger (39) comprises side plate (10) and side plate (20) down, saidly goes up side plate (10) and said side plate (20) is disconnected from each other down.
2. off-premises station heat exchanger according to claim 1 is characterized in that, the said side plate (10) of going up comprising:
Epipleural (11) is fixedly connected with the first side wall (31) of off-premises station (30); And
Upper plate (12) is fixedly connected with said off-premises station heat exchanger (39) and said epipleural (11);
Said epipleural (11) is fixedly connected with said upper plate (12) orthogonally.
3. off-premises station heat exchanger according to claim 2 is characterized in that,
Said epipleural (11) has epipleural screw hole (13);
The said the first side wall (31) of said off-premises station (30) has and the corresponding sidewall screw hole of said epipleural screw hole (13) (33).
4. off-premises station heat exchanger according to claim 2 is characterized in that, said upper plate (12) has the upper plate through hole (14) that matches with the return bend (34) of said off-premises station heat exchanger (39).
5. off-premises station heat exchanger according to claim 4 is characterized in that, said side plate (20) down comprising:
Lower side panel (21) is fixedly connected with the panel (35) of said off-premises station (30);
Lower roof plate (22) is fixedly connected with said off-premises station heat exchanger (39); And
Connecting plate (25), two opposite ends are fixedly attached to said lower side panel (21) and said lower roof plate (22) respectively.
6. off-premises station heat exchanger according to claim 5 is characterized in that,
Said lower side panel (21) has lower side panel screw hole (23);
The said panel (35) of said off-premises station (30) has and said lower side panel screw hole (23) corresponding panel screw hole (36).
7. off-premises station heat exchanger according to claim 5 is characterized in that, said lower roof plate (22) has the lower roof plate through hole (24) that matches with the said return bend (34) of said off-premises station heat exchanger (39).
8. off-premises station heat exchanger according to claim 5; It is characterized in that; Said lower side panel (21) laterally arranges with said lower roof plate (22); Said lower side panel (21) and said lower roof plate (22) lay respectively at two opposite ends of said connecting plate (25), and said connecting plate (25) is connected with said lower side panel (21), said lower roof plate (22) vertical fixing respectively.
9. off-premises station heat exchanger according to claim 5 is characterized in that, the height of said lower side panel (21) is greater than said lower roof plate (22) and/or said connecting plate (25).
10. according to each described off-premises station heat exchanger in the claim 1~9, it is characterized in that said upward side plate (10) and said side plate (20) down are the one bending and molding.
11., it is characterized in that said off-premises station heat exchanger comprises that also removably being connected to said return bend (34) pricks with the heatproof line of fixing two adjacent said return bends (34) according to each described off-premises station heat exchanger in the claim 4~9.
12. air-conditioner; The off-premises station that comprises indoor set and be communicated with (30) with said indoor set; Said off-premises station (30) comprises off-premises station heat exchanger (39), it is characterized in that, said off-premises station heat exchanger (39) is each described off-premises station heat exchanger (39) in the claim 1~11.
13. an air-conditioner comprises heat exchanger, the two opposite side walls of said heat exchanger is provided with the connection side plate, it is characterized in that,
The connection side plate away from a side of compressor that is positioned at said heat exchanger comprises side plate (10) and side plate (20) down,
Said last side plate (10) is disconnected from each other with said following side plate (20).
14. a dehumidifier comprises heat exchanger, the two opposite side walls of said heat exchanger is provided with the connection side plate, it is characterized in that,
The connection side plate away from a side of compressor that is positioned at said heat exchanger comprises side plate (10) and side plate (20) down,
Said last side plate (10) is disconnected from each other with said following side plate (20).
CN2012201785496U 2012-04-23 2012-04-23 Heat exchanger for outdoor unit, air conditioner and dehumidifier Withdrawn - After Issue CN202511396U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2012201785496U CN202511396U (en) 2012-04-23 2012-04-23 Heat exchanger for outdoor unit, air conditioner and dehumidifier

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2012201785496U CN202511396U (en) 2012-04-23 2012-04-23 Heat exchanger for outdoor unit, air conditioner and dehumidifier

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Publication Number Publication Date
CN202511396U true CN202511396U (en) 2012-10-31

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103375852A (en) * 2012-04-23 2013-10-30 珠海格力电器股份有限公司 Outdoor unit heat exchanger, air-conditioner and dehumidifier
WO2014183501A1 (en) * 2013-05-17 2014-11-20 夏普株式会社 Outdoor unit of air conditioner
CN105283712A (en) * 2013-06-14 2016-01-27 三菱电机株式会社 Outdoor unit for air conditioner and production method for outdoor unit for air conditioner
CN111853946A (en) * 2020-07-15 2020-10-30 珠海格力电器股份有限公司 Fan coil with detachable heat exchanger

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103375852A (en) * 2012-04-23 2013-10-30 珠海格力电器股份有限公司 Outdoor unit heat exchanger, air-conditioner and dehumidifier
CN103375852B (en) * 2012-04-23 2015-09-16 珠海格力电器股份有限公司 Heat exchanger of outdoor unit, air-conditioner and dehumidifier
WO2014183501A1 (en) * 2013-05-17 2014-11-20 夏普株式会社 Outdoor unit of air conditioner
CN105283712A (en) * 2013-06-14 2016-01-27 三菱电机株式会社 Outdoor unit for air conditioner and production method for outdoor unit for air conditioner
CN105283712B (en) * 2013-06-14 2017-12-12 三菱电机株式会社 The manufacture method of the outdoor unit of air-conditioning and the outdoor unit of air-conditioning
CN111853946A (en) * 2020-07-15 2020-10-30 珠海格力电器股份有限公司 Fan coil with detachable heat exchanger

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20121031

Effective date of abandoning: 20150916

RGAV Abandon patent right to avoid regrant