CN207883594U - A kind of high efficiency and heat radiation formula pole - Google Patents
A kind of high efficiency and heat radiation formula pole Download PDFInfo
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- CN207883594U CN207883594U CN201820382677.XU CN201820382677U CN207883594U CN 207883594 U CN207883594 U CN 207883594U CN 201820382677 U CN201820382677 U CN 201820382677U CN 207883594 U CN207883594 U CN 207883594U
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- heat
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- heat pipe
- pole
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Abstract
The utility model discloses a kind of high efficiency and heat radiation formula poles, including pole ontology, vacuum interrupter, thermal conductive ceramic ring, red copper ring, heat conductive rod, sealed box body, sponge block, heat pipe, cover board, first radiator, liquid storage box, second radiator, the heat transfer that vacuum interrupter work generates gives thermal conductive ceramic ring, thermal conductive ceramic ring is by heat successively through red copper ring, heat conductive rod passes to heat pipe, heat pipe gives a part of heat transfer to the first radiator, first radiator carries out heat exchange opposite heat tube with air and is cooled down, heat pipe gives another part heat transfer to the second radiator, it is immersed in the liquid storage box full of coolant liquid due to the second radiator, second radiator carries out the second radiator of heat exchange pair with coolant liquid and carries out pressure cooling.The apparatus structure is simple, carries out natural cooling to heat conducting pipe by the way that the first radiator is arranged, the second radiator of setting carries out water cooling to heat conducting pipe, effectively reduces the temperature of vacuum interrupter, improves service life.
Description
Technical field
The utility model is related to a kind of mechanical device more particularly to a kind of high efficiency and heat radiation formula poles.
Background technology
Pole is by vacuum interrupter and the relevant conductive pieces of breaker while to be embedded into epoxy resin or thermoplastic
Property material it is this kind of be easy cured solid insulating material, after insulating materials solidification after form independent global facility.Vacuum extinction
There is certain service life in room, and serious accident often occurs more than service life, at work due to vacuum interrupter
A large amount of heat is generated, pole causes vacuum interrupter heat dissipation slower so that vacuum extinction without radiator structure at present
Each device in room is also in the condition of high temperature for a long time, these devices are also easy to produce fatigue failure, reduce making for pole
Use the service life.In view of disadvantages described above, it is really necessary to design a kind of high efficiency and heat radiation formula pole.
Utility model content
The purpose of this utility model is that:A kind of high efficiency and heat radiation formula pole is provided, the high efficiency and heat radiation formula pole
Natural cooling is carried out to heat conducting pipe by the way that the first radiator is arranged, the second radiator of setting carries out water cooling to heat conducting pipe, effectively drops
The temperature of low vacuum arc-chutes improves service life.
In order to solve the above technical problems, the technical solution of the utility model is:A kind of high efficiency and heat radiation formula pole, including
Pole ontology and the vacuum interrupter being arranged on the inside of pole ontology further include thermal conductive ceramic ring, red copper ring, heat conduction
Stick, sealed box body, sponge block, heat pipe, cover board, the first radiator, liquid storage box, the second radiator, the thermal conductive ceramic ring position
On the inside of pole ontology and it is located at vacuum extinction outside, the thermal conductive ceramic ring forms interference with vacuum interrupter and matches
It closes, the red copper ring is located on the outside of thermal conductive ceramic ring, and the red copper ring is formed with thermal conductive ceramic ring and is interference fitted, described
Heat conductive rod is located on the outside of red copper ring and runs through pole ontology, and the heat conductive rod is weldingly connected with red copper ring, and described is close
Jacket body is located at pole outer body and on the outside of heat conductive rod, sealed box body phase Nian Jie with pole ontology
Even, the sponge block is located on the inside of sealed box body and on the outside of heat conductive rod, sponge block phase Nian Jie with sealed box body
Even, heat conductive rod is stretched into the heat pipe upper end, and the cover board is located on the outside of sealed box body and is run through by heat pipe, the cover board
It is connected by bolt with sealed box body and is weldingly connected in heat pipe, first radiator is located on the outside of heat pipe, and described the
One radiator is weldingly connected with heat pipe, and the liquid storage box is located at heat pipe lower end, and the liquid storage box is weldingly connected with heat pipe, institute
The second radiator stated is located at heat pipe lower end and on the inside of liquid storage box, and second radiator is weldingly connected with heat pipe.
The utility model further improves as follows:
Further, the quantity of first radiator is no less than 2, is evenly arranged along heat pipe.
Further, the thermal conductive ceramic ring is additionally provided with red copper bushing, and the red copper bushing is located at thermal conductive ceramic ring
Inside, the red copper bushing are formed with thermal conductive ceramic ring and are interference fitted.
Further, the sealed box body is additionally provided with locking stud, and the locking stud is located on the outside of sealed box body,
The locking stud is weldingly connected with sealed box body.
Further, the locking stud quantity is 4, is arranged symmetrically along sealed box body, and locking stud is used for cover board
Fixation.
Further, the cover board is additionally provided with gasket, and the gasket is located on the inside of cover board, the gasket
Nian Jie with cover board to be connected, gasket prevents rainwater and dust from entering sealed box body for sealing.
Further, the liquid storage box is additionally provided with clip, and the clip is located on the outside of liquid storage box and is located at sealing pole
Column outer body, the clip are connected with liquid storage box by bolt, and clip is used for the fixation of liquid storage box.
Compared with prior art, the high efficiency and heat radiation formula pole, when work, the heat that vacuum interrupter work generates is logical
It crosses shell and passes to thermal conductive ceramic ring, heat is successively passed to heat pipe by thermal conductive ceramic ring through red copper ring, heat conductive rod, then, heat
A part of heat transfer is given the first radiator, the first radiator to carry out heat exchange with air by pipe, to which opposite heat tube progress is cold
But, heat pipe gives another part heat transfer to the second radiator, since the second radiator is immersed in the liquid storage box full of coolant liquid
Interior, therefore, the second radiator carries out heat exchange with coolant liquid, to carry out pressure cooling to the second radiator, is arranged close
Sponge block in jacket body prevents steam from immersing in pole ontology, is arranged in thermal conductive ceramic ring for absorbing steam
Red copper bushing comes into full contact with vacuum interrupter and red copper ring comes into full contact with thermal conductive ceramic ring outer wall so that heat transfer is equal
It is even, simultaneously as red copper heat-transfer rate is fast so that thermal loss is smaller.The apparatus structure is simple, by the way that the first radiator is arranged
Natural cooling is carried out to heat conducting pipe, the second radiator of setting carries out water cooling to heat conducting pipe, effectively reduces the temperature of vacuum interrupter,
Improve service life.
Description of the drawings
Fig. 1 shows the utility model front view
Fig. 2 shows the utility model partial enlarged views
Fig. 3 shows the utility model thermal conductive ceramic ring structure schematic diagram
In figure:Pole ontology 1, vacuum interrupter 2, thermal conductive ceramic ring 3, red copper ring 4, heat conductive rod 5, sealed box body 6,
Sponge block 7, heat pipe 8, cover board 9, the first radiator 10, liquid storage box 11, the second radiator 12, red copper bushing 301, locking stud
601, gasket 901, clip 1201.
Specific implementation mode
As shown in Figure 1, Figure 2, Figure 3 shows, a kind of high efficiency and heat radiation formula pole, including pole ontology 1 and setting are solid
The vacuum interrupter 2 of 1 inside of sealed pole ontology, further includes thermal conductive ceramic ring 3, red copper ring 4, heat conductive rod 5, sealed box body 6, sponge
Block 7, heat pipe 8, cover board 9, the first radiator 10, liquid storage box 11, the second radiator 12, the thermal conductive ceramic ring 3 are located at sealing
On the inside of pole ontology 1 and positioned at 2 outside of vacuum interrupter, the thermal conductive ceramic ring 3 forms interference with vacuum interrupter 2 and matches
It closes, the red copper ring 4 is located at 3 outside of thermal conductive ceramic ring, and the red copper ring 4 is formed with thermal conductive ceramic ring 3 and is interference fitted, institute
The heat conductive rod 5 stated is located at 4 outside of red copper ring and runs through pole ontology 1, and the heat conductive rod 5 is weldingly connected with red copper ring 4,
The sealed box body 6 is located at 1 outside of pole ontology and positioned at 5 outside of heat conductive rod, the sealed box body 6 and sealing pole
The bonding of column ontology 1 is connected, and the sponge block 7 is located at 6 inside of sealed box body and positioned at 5 outside of heat conductive rod, the sponge block 7
Nian Jie with sealed box body 6 to be connected, heat conductive rod 5 is stretched into 8 upper end of heat pipe, the cover board 9 be located on the outside of sealed box body 6 and
Run through by heat pipe 8, the cover board 9 is connected by bolt with sealed box body 6 and is weldingly connected in heat pipe 8, and described first dissipates
Hot device 10 is located at 8 outside of heat pipe, and first radiator 10 is weldingly connected with heat pipe 8, and the liquid storage box 11 is located at heat pipe 8
Lower end, the liquid storage box 11 are weldingly connected with heat pipe 8, and second radiator 12 is located at 8 lower end of heat pipe and is located at liquid storage
11 inside of box, second radiator 12 are weldingly connected with heat pipe 8, and the quantity of first radiator 10 is no less than 2, edge
Heat pipe 8 is evenly arranged, and the thermal conductive ceramic ring 3 is additionally provided with red copper bushing 301, and the red copper bushing 301 is located at heat conduction pottery
3 inside of ceramic ring, the red copper bushing 301 are formed with thermal conductive ceramic ring 3 and are interference fitted, and the sealed box body 6 is additionally provided with lock
Tight stud 601, the locking stud 601 are located at 6 outside of sealed box body, and the locking stud 601 is welded with sealed box body 6
It is connected, 601 quantity of locking stud is 4, is arranged symmetrically along sealed box body 6, and locking stud 601 is consolidated for cover board 9
Fixed, the cover board 9 is additionally provided with gasket 901, and the gasket 901 is located at 9 inside of cover board, the gasket 901 and
The bonding of cover board 9 is connected, and gasket 901 prevents rainwater and dust from entering sealed box body 6, the liquid storage box 11 is also for sealing
Equipped with clip 1201, the clip 1201 is located at 11 side of liquid storage box and positioned at 1 outside of pole ontology, the clip
1201 are connected with liquid storage box 11 by bolt, and clip 1201 is used for the fixation of liquid storage box 11, the high efficiency and heat radiation formula pole, work
When making, the heat that the work of vacuum interrupter 2 generates passes to thermal conductive ceramic ring 3 by shell, thermal conductive ceramic ring 3 by heat successively
Heat pipe 8 is passed to through red copper ring 4, heat conductive rod 5, then, heat pipe 8 gives a part of heat transfer to the first radiator 10, and first dissipates
Hot device 10 carries out heat exchange with air, and to which opposite heat tube 8 is cooled down, heat pipe 8 dissipates another part heat transfer to second
Hot device 12, since the second radiator 12 is immersed in the liquid storage box 11 full of coolant liquid, the second radiator 12 and coolant liquid
Heat exchange is carried out, to carry out pressure cooling to the second radiator 12, the sponge block 7 being arranged in sealed box body 6 is for inhaling
Steam is received, prevents steam from immersing in pole ontology 1, the red copper bushing 301 and the vacuum extinction that are arranged in thermal conductive ceramic ring 3
Room 2 comes into full contact with and red copper ring 4 comes into full contact with 3 outer wall of thermal conductive ceramic ring so that heat transfer is uniform, simultaneously as purple
Copper heat-transfer rate is fast so that thermal loss is smaller.The apparatus structure is simple, by be arranged the first radiator 10 to heat conducting pipe 8 into
Row natural cooling, the second radiator 12 of setting carry out water cooling to heat conducting pipe 8, effectively reduce the temperature of vacuum interrupter 2, and raising makes
Use the service life.
The utility model is not limited to above-mentioned specific embodiment, and those skilled in the art visualize from above-mentioned
Hair, without performing creative labour, the various transformation made are all fallen within the scope of protection of the utility model.
Claims (7)
1. a kind of high efficiency and heat radiation formula pole, including pole ontology and the vacuum that is arranged on the inside of pole ontology are gone out
Arc chamber, it is characterised in that further include thermal conductive ceramic ring, red copper ring, heat conductive rod, sealed box body, sponge block, heat pipe, cover board, first
Radiator, liquid storage box, the second radiator, the thermal conductive ceramic ring are located on the inside of pole ontology and are located at vacuum interrupter
Outside, the thermal conductive ceramic ring are formed with vacuum interrupter and are interference fitted, and the red copper ring is located on the outside of thermal conductive ceramic ring,
The red copper ring is formed with thermal conductive ceramic ring and is interference fitted, and the heat conductive rod is located on the outside of red copper ring and runs through pole
Ontology, the heat conductive rod are weldingly connected with red copper ring, and the sealed box body, which is located at pole outer body and is located at, to be led
On the outside of hot pin, the sealed box body is Nian Jie with pole ontology connected, the sponge block be located at sealed box body inside and
On the outside of heat conductive rod, the sponge block is Nian Jie with sealed box body to be connected, and heat conductive rod is stretched into the heat pipe upper end, described
Cover board is located on the outside of sealed box body and is run through by heat pipe, and the cover board is connected by bolt with sealed box body and is welded in heat pipe
It is connected, first radiator is located on the outside of heat pipe, and first radiator is weldingly connected with heat pipe, the liquid storage box
Positioned at heat pipe lower end, the liquid storage box is weldingly connected with heat pipe, and second radiator is located at heat pipe lower end and positioned at storage
On the inside of liquid box, second radiator is weldingly connected with heat pipe.
2. high efficiency and heat radiation formula pole as described in claim 1, it is characterised in that the quantity of first radiator is many
In 2, it is evenly arranged along heat pipe.
3. high efficiency and heat radiation formula pole as described in claim 1, it is characterised in that the thermal conductive ceramic ring is additionally provided with purple
Copper bush, the red copper bushing are located on the inside of thermal conductive ceramic ring, and the red copper bushing forms interference with thermal conductive ceramic ring and matches
It closes.
4. high efficiency and heat radiation formula pole as described in claim 1, it is characterised in that the sealed box body is additionally provided with locking
Stud, the locking stud are located on the outside of sealed box body, and the locking stud is weldingly connected with sealed box body.
5. high efficiency and heat radiation formula pole as claimed in claim 4, it is characterised in that the locking stud quantity is 4,
It is arranged symmetrically along sealed box body.
6. high efficiency and heat radiation formula pole as described in claim 1, it is characterised in that the cover board is additionally provided with gasket, institute
The gasket stated is located on the inside of cover board, and the gasket is Nian Jie with cover board to be connected.
7. high efficiency and heat radiation formula pole as described in claim 1, it is characterised in that the liquid storage box is additionally provided with clip, institute
The clip stated is located on the outside of liquid storage box and is located at pole outer body, and the clip is connected with liquid storage box by bolt.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820382677.XU CN207883594U (en) | 2018-03-21 | 2018-03-21 | A kind of high efficiency and heat radiation formula pole |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820382677.XU CN207883594U (en) | 2018-03-21 | 2018-03-21 | A kind of high efficiency and heat radiation formula pole |
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Publication Number | Publication Date |
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CN207883594U true CN207883594U (en) | 2018-09-18 |
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CN201820382677.XU Active CN207883594U (en) | 2018-03-21 | 2018-03-21 | A kind of high efficiency and heat radiation formula pole |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109841448A (en) * | 2019-01-09 | 2019-06-04 | 同济大学 | A kind of pole cooling based on liquid |
CN113451888A (en) * | 2021-05-14 | 2021-09-28 | 陈浩彬 | Heat dissipation fire prevention type lightning protection device that disappears |
CN118824784A (en) * | 2024-09-18 | 2024-10-22 | 麦克奥迪(三明)机电科技有限公司 | A heat dissipation type solid sealed pole |
-
2018
- 2018-03-21 CN CN201820382677.XU patent/CN207883594U/en active Active
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109841448A (en) * | 2019-01-09 | 2019-06-04 | 同济大学 | A kind of pole cooling based on liquid |
CN109841448B (en) * | 2019-01-09 | 2020-07-28 | 同济大学 | Solid-sealed polar pole based on liquid cooling |
CN113451888A (en) * | 2021-05-14 | 2021-09-28 | 陈浩彬 | Heat dissipation fire prevention type lightning protection device that disappears |
CN118824784A (en) * | 2024-09-18 | 2024-10-22 | 麦克奥迪(三明)机电科技有限公司 | A heat dissipation type solid sealed pole |
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