CN218976137U - High-voltage complete power distribution cabinet - Google Patents

High-voltage complete power distribution cabinet Download PDF

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Publication number
CN218976137U
CN218976137U CN202223395850.5U CN202223395850U CN218976137U CN 218976137 U CN218976137 U CN 218976137U CN 202223395850 U CN202223395850 U CN 202223395850U CN 218976137 U CN218976137 U CN 218976137U
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China
Prior art keywords
cabinet body
gas collecting
collecting tube
cooling tube
tube
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CN202223395850.5U
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Chinese (zh)
Inventor
范时祥
零忠勤
谭兴忠
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Shanghai Junqi Electric Co ltd
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Shanghai Junqi Electric Co ltd
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Priority to CN202223395850.5U priority Critical patent/CN218976137U/en
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Abstract

The application discloses high-voltage complete power distribution cabinet, the intelligent cabinet temperature adjusting device comprises a cabinet body, the cabinet body is equipped with heat abstractor, heat abstractor includes the gas collecting tube, cooling tube and negative pressure mechanism, the gas collecting tube sets up along horizontal Y axle direction, the gas collecting tube is located the internal top of cabinet, the vertical setting of cooling tube, the internal portion of cabinet is located to the cooling tube, leave the clearance between the backplate of cooling tube and the cabinet body, the cooling tube is equipped with a plurality of, a plurality of cooling tubes set up along horizontal Y axle direction interval, the cooling tube is equipped with a plurality of louvre, the cabinet body is outside is located to negative pressure mechanism, cooling tube and gas collecting tube intercommunication, gas collecting tube and negative pressure mechanism intercommunication. This application has the radiating efficiency who improves the switch board to the inside electric device's of protection switch board effect.

Description

High-voltage complete power distribution cabinet
Technical Field
The application relates to the field of power distribution cabinets, in particular to a high-voltage complete power distribution cabinet.
Background
The high-voltage complete distribution device is assembled by complete equipment supplied by a manufacturing plant after being transported to a site. The electric main circuit is divided into a plurality of units, each unit is a loop, the circuit breaker, the disconnecting switch, the current transformer and the voltage transformer of each unit, protection, control, measurement and other equipment are assembled in a whole cabinet in a concentrated mode, and an electric device formed by a plurality of high-voltage switch cabinets after being installed in a power plant, a power substation or a power distribution substation is called a complete power distribution device.
The inside of switch board has a large amount of electrical components and wire generally, leads to the inside high temperature of switch board to break down easily, so need dispel the heat to the switch board inside, and current switch board adopts fixed mounting's radiator fan generally, and the radiating range is less, has reduced radiating efficiency.
Disclosure of Invention
In order to improve the radiating efficiency of switch board to the inside electrical components of protection switch board, this application provides high voltage complete sets switch board.
The application provides a high-voltage complete power distribution cabinet adopts following technical scheme:
the utility model provides a high-voltage complete power distribution cabinet, includes the cabinet body, the cabinet body is equipped with heat abstractor, heat abstractor includes gas collecting tube, cooling tube and negative pressure mechanism, the gas collecting tube sets up along horizontal Y axle direction, the gas collecting tube is located the internal top of cabinet, the cooling tube is vertical to be set up, the cooling tube is located the internal portion of cabinet, the cooling tube with the clearance is left to the backplate of the cabinet body, the cooling tube is equipped with a plurality of, and is a plurality of the cooling tube sets up along horizontal Y axle direction interval, the cooling tube is equipped with a plurality of louvre, negative pressure mechanism locates the cabinet body is outside, the cooling tube with the gas collecting tube intercommunication, the gas collecting tube with negative pressure mechanism intercommunication.
Through adopting above-mentioned technical scheme, when the electronic device of the internal portion of cabinet produced heat, start negative pressure mechanism, make the hot air assemble the gas-collecting tube through the cooling tube to make the hot air discharge the internal portion of cabinet through negative pressure mechanism. Through cooling tube, gas collecting tube and negative pressure mechanism, make the outside of the faster discharge cabinet body of hot air, be favorable to improving the radiating efficiency of switch board.
Meanwhile, the plurality of radiating pipes are paved at the positions near the back plate of the cabinet body, so that the radiating pipes can timely absorb hot air formed by heat generated by electronic components, the distance of the hot air entering the radiating pipes is shortened, and the radiating efficiency of the power distribution cabinet is further improved.
Optionally, the outside of the cabinet body is equipped with actuating mechanism, actuating mechanism's drive shaft passes the inner wall of the cabinet body with the one end of gas collection pipe is connected, actuating mechanism is used for the drive the gas collection pipe moves along horizontal Y axle direction.
Through adopting above-mentioned technical scheme, actuating mechanism drive gas collecting tube removes, drives the cooling tube and removes then, makes the relative motion speed between cooling tube and the hot air obtain promoting, is favorable to improving the radiating efficiency of switch board. And the radiating pipes are arranged in a moving manner, so that the probability of mutual contact between the hot air and the radiating pipes is improved, and the hot air in the power distribution cabinet is discharged more fully.
Optionally, the actuating mechanism includes catch bar and driving piece, the output of driving piece with the catch bar is connected, the driving piece with the external connection of the cabinet body, the tip of catch bar with the one end of gas-collecting tube is connected.
Through adopting above-mentioned technical scheme, the catch bar is connected with the gas collecting tube, and the catch bar is pushed and pulled to the impeller, makes the gas collecting tube follow the reciprocal swing of horizontal Y axle direction to realize actuating mechanism's drive effect.
Optionally, the end of the pushing rod is connected with one end of the gas collecting tube through an elastic piece.
Through adopting above-mentioned technical scheme, through setting up the elastic component, make the gas collecting channel can take place to rock at the in-process that removes, be favorable to further improving the probability of mutual contact between hot air and the cooling tube.
Optionally, the negative pressure mechanism with the gas collecting tube passes through coupling hose intercommunication, coupling hose is close to the one end of gas collecting tube is located the middle part of gas collecting tube, just coupling hose with the gas collecting tube is perpendicular.
Through adopting above-mentioned technical scheme, form between coupling hose and the gas collecting tube and assemble the effect to the hot air discharge cabinet is internal.
Optionally, the cabinet body is equipped with the draught fan, the draught fan is kept away from the surface of the cabinet body is equipped with the dust cover.
Through adopting above-mentioned technical scheme, the draught fan guides outside gas to the switch board inside to the internal portion of cabinet in time supplements the gas that negative pressure mechanism took away. Meanwhile, through the arrangement of the dust cover, dust is reduced and can enter the cabinet body, so that electronic components in the cabinet body are not affected.
Optionally, the dust cover with can dismantle the connection through coupling assembling between the draught fan.
Through adopting above-mentioned technical scheme, after the dust cover uses a period, through setting up the dust cover, the user can dismantle the dust cover to the dust cover of clearance, avoid the dust cover surface to pile up the dust and jam the air intake of draught fan then.
Optionally, the coupling assembling includes first magnet ring and second magnet ring, first magnet ring with the marginal connection of draught fan, the second magnet ring with the marginal connection of dust cover, first magnet ring with the actuation of second magnet ring.
Through adopting above-mentioned technical scheme, through setting up first magnet ring and second magnet ring, be convenient for dismantle between dust cover and the draught fan.
In summary, the present application includes at least one of the following beneficial technical effects:
1. through the radiating pipe, the gas collecting pipe and the negative pressure mechanism, hot air is discharged out of the cabinet body quickly, so that the radiating efficiency of the power distribution cabinet is improved;
2. through setting up actuating mechanism, actuating mechanism drive gas collecting tube removes, drives the cooling tube and removes then, makes the relative motion speed between cooling tube and the hot air obtain promoting, is favorable to improving the radiating efficiency of switch board.
3. Through setting up the elastic component, make the gas collecting channel can take place to rock at the in-process that removes, be favorable to improving the probability of mutual contact between hot air and the cooling tube.
Drawings
Fig. 1 is a schematic diagram of the overall structure of an embodiment of the present application.
Fig. 2 is a schematic diagram of a dust cap position embodying an embodiment of the present application.
Fig. 3 is a schematic diagram of an embodiment of the present application for embodying the cooperation of a first magnet ring and a second magnet ring.
Reference numerals illustrate:
1. a cabinet body; 2. a heat sink; 21. a gas collecting tube; 22. a heat radiating pipe; 23. a negative pressure mechanism; 24. a connecting hose; 3. a driving mechanism; 31. a push rod; 32. a driving member; 33. an elastic member; 4. an induced draft fan; 5. a dust cover; 6. a connection assembly; 61. a first magnet ring; 62. and a second magnet ring.
Detailed Description
The present application is described in further detail below in conjunction with figures 1-3.
The embodiment of the application discloses a high-voltage complete power distribution cabinet. Referring to fig. 1, including the cabinet body 1, the cabinet body 1 has the cabinet door, the cabinet body 1 is square body structure, the cabinet body 1 is equipped with heat abstractor 2, heat abstractor 2 includes gas collecting tube 21, cooling tube 22 and negative pressure mechanism 23, gas collecting tube 21 sets up along horizontal Y axle direction, gas collecting tube 21 is located the inside top of cabinet body 1, cooling tube 22 vertically sets up, cooling tube 22 is located the inside of cabinet body 1, leave the clearance between the backplate of cooling tube 22 and cabinet body 1, cooling tube 22 is equipped with a plurality of, a plurality of cooling tubes 22 set up along horizontal Y axle direction interval, cooling tube 22 is equipped with a plurality of louvre, the louvre sets up along the length direction interval of cooling tube 22, and the cooling hole is located one side that cooling tube 22 is close to the cabinet door.
The negative pressure mechanism 23 is located cabinet body 1 top, and cabinet body 1 top installs the casing that seals negative pressure mechanism 23, and the casing has the gas outlet, and cooling tube 22 and gas collecting tube 21 intercommunication, negative pressure mechanism 23 are common negative pressure equipment, and negative pressure mechanism 23 and gas collecting tube 21 pass through coupling hose 24 intercommunication, and coupling hose 24 is close to the middle part that one end of gas collecting tube 21 is located gas collecting tube 21, and coupling hose 24 is perpendicular with gas collecting tube 21.
The cabinet body 1 is provided with a driving mechanism 3, the driving mechanism 3 is an electric push rod, the driving mechanism 3 comprises a push rod 31 and a driving piece 32, the pushing end of the driving piece 32 is connected with the push rod 31, the driving piece 32 is connected with the outside of the cabinet body 1, the push rod 31 stretches into the cabinet body 1, the end part of the push rod 31, far away from the driving piece 32, is connected with one end of the gas collecting tube 21 through an elastic piece 33, the elastic piece 33 is a spring, and the driving mechanism 3 is used for driving the gas collecting tube 21 to move along the horizontal Y-axis direction.
Through setting up actuating mechanism 3, make the relative motion speed between cooling tube 22 and the hot air obtain promoting, be favorable to improving the radiating efficiency of switch board. Meanwhile, the elastic member 33 enables the pushing rod 31 to shake the gas collecting tube 21 during the process of pushing the gas collecting tube 21 to move, which is beneficial to improving the probability of mutual contact between the hot air and the radiating tube 22.
Referring to fig. 1, 2 and 3, the cabinet 1 is further provided with an induced draft fan 4, and the induced draft fan 4 is convenient for timely supplementing the air pumped by the negative pressure mechanism 23 inside the cabinet 1. Besides, the surface of the induced draft fan 4 away from the cabinet body 1 is provided with a dust cover 5 so as to prevent air from carrying dust into the cabinet body 1.
And, can dismantle the connection through coupling assembling 6 between dust cover 5 and the draught fan 4, coupling assembling 6 includes first magnet ring 61 and second magnet ring 62, the edge connection of first magnet ring 61 and draught fan 4, the edge connection of second magnet ring 62 and dust cover 5, first magnet ring 61 and second magnet ring 62 actuation, through setting up first magnet ring 61 and second magnet ring 62, can dismantle fast or fix between messenger's dust cover 5 and the draught fan 4, convenient to use person clears up the dust of dust cover 5 to the air inlet that does not influence draught fan 4.
The implementation principle of the high-voltage complete power distribution cabinet of the embodiment of the application is as follows: the negative pressure mechanism 23 is started, the radiating pipe 22 absorbs hot air generated in the cabinet body 1, so that the hot air is converged in the gas collecting pipe 21, and finally the hot air is discharged out of the cabinet body 1 through the negative pressure mechanism 23, and compared with a cooling fan, the hot air can be discharged out of the cabinet body 1 faster, and the radiating efficiency of the power distribution cabinet is improved.
The foregoing are all preferred embodiments of the present application, and are not intended to limit the scope of the present application in any way, therefore: all equivalent changes in structure, shape and principle of this application should be covered in the protection scope of this application.

Claims (8)

1. High-voltage complete power distribution cabinet, its characterized in that: including cabinet body (1), cabinet body (1) is equipped with heat abstractor (2), heat abstractor (2) are including gas collecting tube (21), cooling tube (22) and negative pressure mechanism (23), gas collecting tube (21) are along level Y axle direction setting, gas collecting tube (21) are located cabinet body (1) inside top, cooling tube (22) are vertical to be set up, cooling tube (22) are located cabinet body (1) is inside, cooling tube (22) with leave the clearance between the backplate of cabinet body (1), cooling tube (22) are equipped with a plurality of, a plurality of cooling tube (22) are along level Y axle direction interval setting, cooling tube (22) are equipped with a plurality of louvre, negative pressure mechanism (23) are located cabinet body (1) outside, cooling tube (22) with gas collecting tube (21) intercommunication, cooling tube (21) with negative pressure mechanism (23) intercommunication.
2. The high voltage power distribution cabinet set of claim 1, wherein: the novel gas-collecting device is characterized in that a driving mechanism (3) is arranged outside the cabinet body (1), a driving shaft of the driving mechanism (3) penetrates through the inner wall of the cabinet body (1) and is connected with one end of the gas-collecting tube (21), and the driving mechanism (3) is used for driving the gas-collecting tube (21) to move along the horizontal Y-axis direction.
3. The high voltage power distribution cabinet set of claim 2, wherein: the driving mechanism (3) comprises a pushing rod (31) and a driving piece (32), wherein the output end of the driving piece (32) is connected with the pushing rod (31), the driving piece (32) is connected with the outside of the cabinet body (1), and the end part of the pushing rod (31) is connected with one end of the gas collecting tube (21).
4. A high voltage power distribution kit according to claim 3, characterized in that: the end of the pushing rod (31) is connected with one end of the gas collecting tube (21) through an elastic piece (33).
5. The high voltage power distribution cabinet set of claim 1, wherein: the negative pressure mechanism (23) is communicated with the gas collecting tube (21) through a connecting hose (24), one end, close to the gas collecting tube (21), of the connecting hose (24) is arranged in the middle of the gas collecting tube (21), and the connecting hose (24) is perpendicular to the gas collecting tube (21).
6. The high voltage power distribution cabinet set of claim 1, wherein: the cabinet body (1) is provided with an induced draft fan (4), and the surface of the induced draft fan (4) far away from the cabinet body (1) is provided with a dust cover (5).
7. The high voltage power distribution cabinet set forth in claim 6 wherein: the dustproof cover (5) is detachably connected with the induced draft fan (4) through a connecting component (6).
8. The high voltage power distribution cabinet set forth in claim 7 wherein: the connecting assembly (6) comprises a first magnet ring (61) and a second magnet ring (62), the first magnet ring (61) is connected with the edge of the induced draft fan (4), the second magnet ring (62) is connected with the edge of the dust cover (5), and the first magnet ring (61) is attracted with the second magnet ring (62).
CN202223395850.5U 2022-12-16 2022-12-16 High-voltage complete power distribution cabinet Active CN218976137U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223395850.5U CN218976137U (en) 2022-12-16 2022-12-16 High-voltage complete power distribution cabinet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223395850.5U CN218976137U (en) 2022-12-16 2022-12-16 High-voltage complete power distribution cabinet

Publications (1)

Publication Number Publication Date
CN218976137U true CN218976137U (en) 2023-05-05

Family

ID=86156362

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223395850.5U Active CN218976137U (en) 2022-12-16 2022-12-16 High-voltage complete power distribution cabinet

Country Status (1)

Country Link
CN (1) CN218976137U (en)

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