CN214891799U - Damping device for water source heat pump multi-split air conditioner heat exchanger - Google Patents

Damping device for water source heat pump multi-split air conditioner heat exchanger Download PDF

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Publication number
CN214891799U
CN214891799U CN202121069527.1U CN202121069527U CN214891799U CN 214891799 U CN214891799 U CN 214891799U CN 202121069527 U CN202121069527 U CN 202121069527U CN 214891799 U CN214891799 U CN 214891799U
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China
Prior art keywords
damper
heat exchanger
damping
damping device
connecting block
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CN202121069527.1U
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Chinese (zh)
Inventor
任宝军
范少兵
李满峰
张锐
朱俊
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First Construction Co Ltd of China Construction Third Engineering Division
First Construction and Installation Co Ltd of China Construction Third Engineering Bureau Co Ltd
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First Construction and Installation Co Ltd of China Construction Third Engineering Bureau Co Ltd
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Abstract

The utility model discloses a damping device for many online heat exchangers of water source heat pump, including the heat exchanger, the heat exchanger is tubular radiator, and its both ends are equipped with first port and second port, its characterized in that respectively: the damping device is arranged on the outer side of the heat exchanger and consists of a damping seat and a damping cover, the damping seat and the damping cover are fixed through bolts, a plurality of damping components are arranged on the inner sides of the damping seat and the damping cover, the damping components are distributed in an annular array, and two adjacent damping components are movably connected; damping component comprises inserted block, connecting block and spring, and the spring setting is between inserted block and connecting block, and both ends respectively with inserted block and connecting block fixed connection, the both sides of connecting block are provided with spread groove and connector respectively. The damping device has a good damping effect, and can be conveniently assembled.

Description

Damping device for water source heat pump multi-split air conditioner heat exchanger
Technical Field
The utility model relates to an air conditioner heat transfer technical field specifically is a damping device for many online heat exchangers of water source heat pump.
Background
The water source heat pump multi-split system can be conveniently combined with various cold and heat storage devices for use, peak-valley electricity prices of all places are fully utilized, so that the operation cost can be reduced, the cooling water temperature of the water source heat pump system is normal temperature, the heat preservation engineering cost can be greatly reduced, and the water source heat pump multi-split system is widely used in industry.
When the water source multi-split air conditioner is in heating operation, if the outdoor environment temperature is low, the phenomena of insufficient refrigerant evaporation, low system suction pressure, poor indoor machine heating effect and the like can occur. Adopt to install the heat exchanger additional usually and improve indoor machine heating effect by supplementary heat transfer, the heat exchanger can produce vibrations at the during operation, causes the mouth of pipe junction to take place to leak easily, what traditional pipeline shock attenuation frame adopted is rubber, utilizes the shock-absorbing performance of rubber to realize absorbing effect, and the heat that the heat exchanger produced in operation is in addition vibrations can accelerate the ageing of rubber, leads to the shock attenuation effect variation.
SUMMERY OF THE UTILITY MODEL
To the defect that exists among the prior art, the utility model aims to provide a damping device for water source heat pump multi-split air conditioner, this damping device has better shock attenuation effect, can also be convenient for assemble.
The embodiment of the application provides a damping device for many online heat exchangers of water source heat pump, including the heat exchanger, the heat exchanger is tubular radiator, and its both ends are equipped with first port and second port, its characterized in that respectively: damping device is installed in the outside of heat exchanger, damping device comprises cushion socket and damper cap, cushion socket and damper cap pass through the bolt fastening, the inboard of cushion socket and damper cap all is provided with damper assembly, damper assembly is provided with a plurality ofly, and a plurality of damper assembly are the annular array and distribute, but and swing joint between two adjacent damper assembly.
The damping device for the water source heat pump multi-split air conditioning unit heat exchanger is characterized in that: damping component comprises inserted block, connecting block and spring, the spring sets up between inserted block and the connecting block, and both ends respectively with inserted block and connecting block fixed connection.
The damping device for the water source heat pump multi-split air conditioning unit heat exchanger is characterized in that: the inboard of cushion socket and shock attenuation lid all is provided with and is used for the installation damper's slot, damper pass through the inserted block with slot sliding connection.
The damping device for the water source heat pump multi-split air conditioning unit heat exchanger is characterized in that: the both sides of connecting block are provided with spread groove and connector respectively.
Advantageous effects
The utility model has the advantages that:
1. this damping device all sets up in the inboard of shock mount and shock attenuation lid and is used for the installation through setting up damper assembly's slot is provided with inserted block and connecting block in damper assembly, and the inserted block can with slot sliding connection, through insert damper assembly's inserted block insert slot alright accomplish the equipment, and the equipment is convenient.
2. Be provided with connector and spread groove on damper's the connecting block again, swing joint is carried out to two adjacent damper's connecting block accessible spread groove and connector, when the heat exchanger takes place strong vibrations like this, the connector of the damper front end of installation still can keep contacting with the lateral wall of heat exchanger in cushion socket and the damper cover to guarantee that every damper all receives even power, cushion the shock attenuation to the heat exchanger, better shock attenuation effect has.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present application;
FIG. 2 is a schematic view of the assembly of the shock mount and shock cap of the present application;
FIG. 3 is a schematic view of the installation of the shock absorbing assembly of the present application;
fig. 4 is a schematic view of a part a of the enlarged structure in fig. 1.
In the figure: 1. a heat exchanger; 101. a first port; 102. a second port; 2. a shock absorbing seat; 3. a damper cap; 4. a shock absorbing assembly; 5. inserting a block; 6. connecting blocks; 601. connecting grooves; 602. a connector; 7. a spring; 8. and (4) a slot.
Detailed Description
The present invention will be described in further detail with reference to the drawings and the following detailed description.
The utility model provides a damping device for many online heat exchangers of water source heat pump, see that fig. 1 and fig. 2 show, including heat exchanger 1, heat exchanger 1 is tubular radiator, its both ends are equipped with first port 101 and second port 102 respectively, first port 101 passes through the water inlet of pipeline access many online system, second port 102 passes through the water inlet that the pipeline inserted the water source heat pump (here is the prior art in this field), damping device is installed to the outside of heat exchanger 1, damping device comprises cushion socket 2 and damper cap 3, cushion socket 2 and damper cap 3 pass through the bolt fastening, the inboard of cushion socket 2 and damper cap 3 all is provided with damper assembly 4, damper assembly 4 is provided with a plurality ofly, a plurality of damper assembly are the distribution of annular array, and swing joint between two adjacent damper assembly 4.
In this application, see that fig. 3 shows, damper 4 comprises inserted block 5, connecting block 6 and spring 7, and spring 7 sets up between inserted block 5 and connecting block 6, and both ends respectively with inserted block 5 and connecting block 6 fixed connection, can transmit spring 7 when connecting block 6 atress, plays the absorbing effect of buffering through spring 7.
In the application, referring to fig. 3, the inner sides of the shock absorbing seat 2 and the shock absorbing cover 3 are both provided with a slot 8 for installing the shock absorbing component 4, the shock absorbing component 4 is slidably connected with the slot 8 through an insertion block 5, and the shock absorbing component 4 is inserted into the slot 8 so as to complete the installation of the shock absorbing component 4.
In the present application, referring to fig. 4, two sides of the connecting block 6 are respectively provided with a connecting groove 601 and a connecting head 602, wherein the connecting head 602 of one connecting block 6 can rotate in the connecting groove 601 of the other connecting block 6 by a certain angle, so that the connecting blocks 6 of two adjacent damping assemblies 4 can be movably connected through the connecting groove 601 and the connecting head 602; in the use, the front end of connecting block 6 contacts with the outer wall of heat exchanger 1, heat exchanger 1 during operation produces vibrations, the outer wall of heat exchanger 1 can produce the effort to connecting block 6, rethread spring 7 cushions it, thereby reach absorbing purpose, connecting block 6 accessible spread groove 601 and connector 602 of two adjacent damper 4 carry out swing joint, when heat exchanger 1 takes place strong vibrations like this, the connector 602 of the damper 4 front end of installation still can keep contacting with the lateral wall of heat exchanger 1 in damper 2 and the damper cap 3, in order to guarantee that every damper 4 all receives even power, cushion the shock attenuation to heat exchanger 1.
During the installation, insert damper 4 in the slot 8 of damper 2 and damper cover 3 earlier in proper order, when inserting two adjacent damper 4, notice that aim at spread groove 601 on another damper with connector 602 on one of them damper to guarantee that two adjacent damper accomplish on damper 2 or damper cover 3 and install back two adjacent damper's connecting block 6 can swing joint, after all having installed damper 4 in the slot 8 of damper 2 and damper cover 3 (see fig. 2), alright with damper 2 and damper cover 3 through bolt fixed mounting on heat exchanger 1.
In summary, the following steps: according to the damping device, the damping component 4 is arranged, the slots 8 for mounting the damping component 4 are formed in the inner sides of the damping seat 2 and the damping cover 3, the inserting blocks 5 and the connecting blocks 6 are arranged in the damping component 4, the inserting blocks 5 can be connected with the slots 8 in a sliding mode, the assembly can be completed by inserting the inserting blocks 5 of the damping component 4 into the slots 8, and the assembly is convenient; be provided with connector 602 and spread groove 601 again on connecting block 6, connecting block 6 accessible spread groove 601 and connector 602 of two adjacent damper 4 carry out swing joint, when heat exchanger 1 takes place strong vibrations like this, the connector 602 of damper 4 front end of installation in damper 2 and the damper cap 3 still can keep contacting with the lateral wall of heat exchanger 1, all receive even power in order to guarantee every damper 4, cushion shock attenuation to heat exchanger 1, better shock attenuation effect has.
It will be apparent to those skilled in the art that various changes and modifications may be made without departing from the spirit and scope of the invention. Thus, if such modifications and variations of the present invention fall within the scope of the claims and their equivalent technologies, the present invention is also intended to include such modifications and variations.

Claims (4)

1. The utility model provides a damping device for water source heat pump multiple on-line heat exchanger, includes heat exchanger (1), heat exchanger (1) is the tubular radiator, and its both ends are equipped with first port (101) and second port (102) respectively, its characterized in that: damping device is installed in the outside of heat exchanger (1), damping device comprises damper (2) and damper (3), damper (2) and damper (3) pass through the bolt fastening, the inboard of damper (2) and damper (3) all is provided with damper (4), damper (4) are provided with a plurality ofly, and a plurality of damper are the annular array and distribute, but and swing joint between two adjacent damper (4).
2. The damping device for the water source heat pump multi-split air-conditioning heat exchanger as claimed in claim 1, wherein: damper (4) comprises inserted block (5), connecting block (6) and spring (7), spring (7) set up between inserted block (5) and connecting block (6), and both ends respectively with inserted block (5) and connecting block (6) fixed connection.
3. The damping device for the water source heat pump multi-split air-conditioning heat exchanger as claimed in claim 1 or 2, wherein: the inner sides of the shock absorption seat (2) and the shock absorption cover (3) are provided with slots (8) used for installing the shock absorption components (4), and the shock absorption components (4) are connected with the slots (8) in a sliding mode through inserting blocks (5).
4. The damping device for the water source heat pump multi-split air-conditioning heat exchanger as claimed in claim 2, wherein: the two sides of the connecting block (6) are respectively provided with a connecting groove (601) and a connecting head (602).
CN202121069527.1U 2021-05-19 2021-05-19 Damping device for water source heat pump multi-split air conditioner heat exchanger Active CN214891799U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121069527.1U CN214891799U (en) 2021-05-19 2021-05-19 Damping device for water source heat pump multi-split air conditioner heat exchanger

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121069527.1U CN214891799U (en) 2021-05-19 2021-05-19 Damping device for water source heat pump multi-split air conditioner heat exchanger

Publications (1)

Publication Number Publication Date
CN214891799U true CN214891799U (en) 2021-11-26

Family

ID=78891500

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121069527.1U Active CN214891799U (en) 2021-05-19 2021-05-19 Damping device for water source heat pump multi-split air conditioner heat exchanger

Country Status (1)

Country Link
CN (1) CN214891799U (en)

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