CN205940239U - Bushing type heat -transfer pipe - Google Patents
Bushing type heat -transfer pipe Download PDFInfo
- Publication number
- CN205940239U CN205940239U CN201620884553.2U CN201620884553U CN205940239U CN 205940239 U CN205940239 U CN 205940239U CN 201620884553 U CN201620884553 U CN 201620884553U CN 205940239 U CN205940239 U CN 205940239U
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- heat
- pipe
- transfer pipe
- transfer
- dividing plate
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Abstract
The utility model discloses a bushing type heat -transfer pipe, mainly by two opening heat pipes, the catheter, the air duct, the trompil baffle, attach fitting no. 1 is constituteed with attach fitting no. 2, with evacuation in the heat -transfer pipe and pour into heat transfer medium into and can carry out the heat exchange, heat -transfer pipe lower part evaporation zone absorbs the heat under high temperature environment makes intraductal liquid medium evaporate gaseously, the gaseous rising gets into heat -transfer pipe upper portion condensation segment through the air duct, it is dirty along the outer wall under the action of gravity that gaseous condensation becomes liquid, again, get back to heat -transfer pipe lower part evaporation zone through the catheter, accomplish the heat -exchange cycle. Trompil baffle diameter slightly is greater than the opening heat pipe to in the seal heat -transfer pipe, the catheter adopts thermal insulation material, selects to connect in trompil baffle catheter through -hole department than the tubule footpath, the air duct adopts thermal insulation material, selects to connect in trompil baffle air duct through -hole department than the extra heavy pipe footpath, attach fitting no. 1, attach fitting no. 2 need have certain mechanical strength after connecting. This kind of bushing type heat -transfer pipe gas -liquid separation has improved heat transfer efficiency, can realize remote heat transfer.
Description
Technical field
This utility model is related to a kind of heat-transfer pipe, particularly a kind of bushing type heat-transfer pipe.
Background technology
The effect of heat-transfer pipe is the transmission of heat, is mainly made up of evaporator section and condensation segment, is marked with heat-transfer working medium in pipe.Pass
The evaporator section of heat pipe is placed in the higher environment of relative temperature, and heat is passed to the heat-transfer working medium within heat-transfer pipe by hot environment,
Working medium is made to evaporate, the condensation segment that then heat-transfer working medium steam rises to heat-transfer pipe due to the heat-transfer pipe vacuum being internally formed, cold
Solidifying releasing heat, realizes the transmission of heat, can be applicable in various heat transfer systems.But, because heat-transfer pipe is single channel, steam
The steam sent out and the liquid of condensation collectively reside in heat-transfer pipe, and liquid is dirty along outer wall, and gas rises along outer wall, reverse flow
Produce convective resistance, make the dirty difficulty of liquid, and liquid vaporizes in downflow processes vaporized in part, leads in heat-transfer pipe feed flow not
Foot, thus affect heat-transfer effect.
Content of the invention
The purpose of this utility model is the problem overcoming above-mentioned prior art to exist, and provides a kind of bushing type heat transfer
Pipe, gas-liquid separation is opened by this heat-transfer pipe, so that gas is increased and the dirty equal non-resistance of liquid, can achieve good heat-transfer effect.
This utility model solves technical problem and adopts the following technical scheme that:
A kind of bushing type heat-transfer pipe, including two opening heat pipes, catheter, airway, perforate dividing plate, jointing
First, jointing two;Two through holes are had on described perforate dividing plate, aperture is drain pipe through-hole, macropore is inducing QI pipe through-hole;Described
Catheter upper end is connected with the drain pipe through-hole lower end of perforate dividing plate by jointing one, lower end be placed in heat-transfer working medium liquid level with
Under;Described airway lower end is connected with the inducing QI pipe through-hole upper end of perforate dividing plate by jointing two, and upper end is placed in opening and leads
The top of heat pipe;Using welding manner by the port of two opening heat pipes be connected to perforate dividing plate top and under
Portion is it is ensured that pipe interior sealing environment;By evacuation in heat-transfer pipe and inject heat-transfer working medium and can carry out heat exchange, heat-transfer pipe bottom is steamed
Send out section to absorb heat in high temperature environments and make intraluminal fluid state working medium flash to gas, gas rises through airway and enters heat-transfer pipe
Top condensation segment, it is dirty along outer wall under gravity that gas is condensed into liquid, comes back to heat-transfer pipe bottom by catheter
Evaporator section, completes heat exchange circulation.
The above perforate dividing plate diameter is slightly larger than opening heat pipe, in order to welded seal heat-transfer pipe.
The above catheter adopts heat-barrier material, selects, compared with slim pipe diameter, to be connected to the catheter through hole of perforate dividing plate.
The above airway adopts heat-barrier material, selects, compared with extra heavy pipe footpath, to be connected to the airway through hole of perforate dividing plate.
The above jointing one, jointing two need certain mechanical strength after connecting.
This utility model compared with prior art, gas-liquid separation, improve heat transfer efficiency, achievable remotely transferring.
Brief description
Fig. 1 is a kind of structural representation of bushing type heat-transfer pipe.
Fig. 2 is a kind of bushing type heat-transfer pipe Section A-A figure.
In figure:(1)Two opening heat pipes;(2)Catheter;(3)Airway;(4)Perforate dividing plate;(5)Jointing one;
(6)Jointing two;(7)Drain pipe through-hole;(8)Inducing QI pipe through-hole.
Specific embodiment
It is a kind of bushing type heat-transfer pipe shown in Fig. 1 and Fig. 2, including two opening heat pipes(1), catheter(2), airway
(3), perforate dividing plate(4), jointing one(5), jointing two(6), above element organic linking is an entirety, in pipe
Evacuation simultaneously injects heat-transfer working medium, forms bushing type heat-transfer pipe.
The utility model proposes the manufacturing process of bushing type heat-transfer pipe be:In perforate dividing plate(4)On open two through holes, lead
Liquid pipe through hole(7)With inducing QI pipe through-hole(8), and drain pipe through-hole(7)Diameter be less than inducing QI pipe through-hole(8), to meet gas
Flow is more than the demand of fluid flow;By catheter(2)By jointing one(5)It is connected to drain pipe through-hole(7), by inducing QI
Pipe(3)By jointing two(6)It is connected to inducing QI pipe through-hole(8);By evacuation in heat-transfer pipe and inject heat-transfer working medium;Using
Welding manner is by two opening heat pipes(1)Port be connected to perforate dividing plate(4)Upper and lower it is ensured that pipe in
Sealed environment.
The utility model proposes the operation principle of bushing type heat-transfer pipe be:Heat-transfer pipe bottom evaporator section is in high temperature environments
Absorbing heat makes intraluminal fluid state working medium flash to gas, and gas rises through airway(3)Enter heat-transfer pipe top condensation segment, gas
It is dirty along outer wall under gravity, by catheter that body is condensed into liquid(2)Come back to heat-transfer pipe bottom evaporator section, complete
Heat exchange circulation.
Claims (5)
1. a kind of bushing type heat-transfer pipe is it is characterised in that include two opening heat pipes(1), catheter(2), airway(3)、
Perforate dividing plate(4), jointing one(5), jointing two(6);Described perforate dividing plate(4)On have two through holes, aperture be lead
Liquid pipe through hole(7), macropore is inducing QI pipe through-hole(8);Described catheter(2)Jointing one is passed through in upper end(5)With perforate dividing plate
(4)Drain pipe through-hole(7)Lower end connects, and lower end is placed in below heat-transfer working medium liquid level;Described airway(3)Lower end is passed through to connect
Joint two(6)With perforate dividing plate(4)Inducing QI pipe through-hole(8)Upper end connects, and upper end is placed in opening heat pipe(1)Top;Adopt
With welding manner by two opening heat pipes(1)Port be connected to perforate dividing plate(4)Upper and lower it is ensured that pipe
Interior sealing environment;By evacuation in heat-transfer pipe and inject heat-transfer working medium and can carry out heat exchange, heat-transfer pipe bottom evaporator section is in height
Absorbing heat under warm environment makes intraluminal fluid state working medium flash to gas, and gas rises through airway and enters the condensation of heat-transfer pipe top
Section, it is dirty along outer wall under gravity that gas is condensed into liquid, comes back to heat-transfer pipe bottom evaporator section by catheter, complete
Become heat exchange circulation.
2. a kind of bushing type heat-transfer pipe according to claim 1 is it is characterised in that described perforate dividing plate(4)For circle, directly
Footpath is slightly larger than opening heat pipe(1).
3. a kind of bushing type heat-transfer pipe according to claim 1 is it is characterised in that described catheter(2)Using heat-insulated material
Material, selects, compared with slim pipe diameter, to be connected to perforate dividing plate(4)Drain pipe through-hole(7)Place.
4. a kind of bushing type heat-transfer pipe according to claim 1 is it is characterised in that described airway(3)Using heat-insulated material
Material, selects, compared with extra heavy pipe footpath, to be connected to perforate dividing plate(4)Inducing QI pipe through-hole(8)Place.
5. a kind of bushing type heat-transfer pipe according to claim 1 is it is characterised in that jointing one(5), jointing two
(6)Certain mechanical strength is needed after connection.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620884553.2U CN205940239U (en) | 2016-08-16 | 2016-08-16 | Bushing type heat -transfer pipe |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201620884553.2U CN205940239U (en) | 2016-08-16 | 2016-08-16 | Bushing type heat -transfer pipe |
Publications (1)
Publication Number | Publication Date |
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CN205940239U true CN205940239U (en) | 2017-02-08 |
Family
ID=57917615
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201620884553.2U Active CN205940239U (en) | 2016-08-16 | 2016-08-16 | Bushing type heat -transfer pipe |
Country Status (1)
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CN (1) | CN205940239U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106123660A (en) * | 2016-08-16 | 2016-11-16 | 北京丰联奥睿科技有限公司 | A kind of bushing type heat-transfer pipe |
-
2016
- 2016-08-16 CN CN201620884553.2U patent/CN205940239U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106123660A (en) * | 2016-08-16 | 2016-11-16 | 北京丰联奥睿科技有限公司 | A kind of bushing type heat-transfer pipe |
CN106123660B (en) * | 2016-08-16 | 2019-03-26 | 北京丰联奥睿科技有限公司 | A kind of bushing type heat-transfer pipe |
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