CN213636693U - Energy-saving high-low voltage switch cabinet - Google Patents

Energy-saving high-low voltage switch cabinet Download PDF

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Publication number
CN213636693U
CN213636693U CN202022465321.2U CN202022465321U CN213636693U CN 213636693 U CN213636693 U CN 213636693U CN 202022465321 U CN202022465321 U CN 202022465321U CN 213636693 U CN213636693 U CN 213636693U
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China
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low voltage
switch cabinet
voltage switch
fin
energy
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CN202022465321.2U
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Chinese (zh)
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裴三霞
裴小伟
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Zhejiang Shunxin Electric Co ltd
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Zhejiang Shunxin Electric Co ltd
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Abstract

The utility model relates to a high-low voltage switch cabinet especially is an energy-saving high-low voltage switch cabinet, including first high-low voltage switch cabinet, second high-low voltage switch cabinet, support footboard, metal net, fixed baseplate, hydraulic telescoping rod, division board, rotation axis, radiating area, first fish fin, radiating groove, second fish fin and third fish fin, one side of first high-low voltage switch cabinet is provided with the second high-low voltage switch cabinet, be provided with the radiating area between second high-low voltage switch cabinet and the first high-low voltage switch cabinet, the inside of radiating area transversely fixed mounting has the first fish fin of a plurality of equidistant groups, first fish fin separates the inside of radiating area into a plurality of radiating grooves of groups, the utility model discloses the whole device simple structure, heat radiation structure all need not electric power and supports to can reach energy-conserving effect, greatly reduced first high-low voltage switch cabinet, The second high-low voltage switch cabinet has the advantages of low use cost, economy and effectiveness and certain popularization effect.

Description

Energy-saving high-low voltage switch cabinet
Technical Field
The utility model relates to a high-low voltage switch cabinet specifically is an energy-saving high-low voltage switch cabinet.
Background
The high-low voltage switch cabinet is an electric device, an external line firstly enters a main control switch in the cabinet and then enters a branch control switch, each branch circuit is arranged according to the requirement, such as an instrument, an automatic control switch, a motor magnetic switch, various alternating current contactors and the like, some high-voltage chamber and low-voltage chamber switch cabinets are also arranged, a high-voltage bus is arranged, such as a power plant and the like, some high-voltage bus also is provided with a low-frequency load reduction circuit for protecting the main device, the high-low voltage switch cabinet can generate a large amount of heat in the using process, in order to lead out the heat in time, the general high-low voltage switch cabinet can generate a cooling fan and other cooling structures for cooling, but the cooling fan and other cooling structures all need electric power support, so that the use cost of the high-low voltage switch cabinet is high, energy is not saved, and therefore, an energy-saving high-low voltage.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an energy-saving high-low voltage switch cabinet to solve the problem of proposing among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme:
the utility model provides an energy-saving high-low voltage switch cabinet, includes first high-low voltage switch cabinet, second high-low voltage switch cabinet, supports footboard, metal mesh, fixed baseplate, hydraulic telescoping rod, division board, rotation axis, radiating area, first fish fin, radiating groove, second fish fin and third fish fin, one side of first high-low voltage switch cabinet is provided with second high-low voltage switch cabinet, be provided with the radiating area between second high-low voltage switch cabinet and the first high-low voltage switch cabinet, the inside horizontal fixed mounting in radiating area has a plurality of equidistant first fish fin of group, first fish fin separates the inside in radiating area into a plurality of radiating grooves of group, the inside fixed mounting of radiating groove has second fish fin and third fish fin, the fixed baseplate has been placed to the bottom level of second high-low voltage switch cabinet and first high-low voltage switch cabinet, fixed baseplate and first high-low voltage switch cabinet, Fixed mounting has the metal net between the high low-voltage switch cabinet of second, the front side of first high low-voltage switch cabinet and the high low-voltage switch cabinet bottom of second has set gradually support footboard, division board from the past backward, support and connect through the rotation axis rotation between footboard and the division board, fixed mounting has hydraulic telescoping rod between support footboard and the fixed baseplate.
Preferably, the supporting pedal is made of a carbon fiber plate in a customized mode, and the width of the supporting pedal is equal to the height of the metal grid in size.
Preferably, the second fin and the third fin are arranged in an X shape and are welded with the first fin.
Preferably, the bottoms of the first high-low voltage switch cabinet and the second high-low voltage switch cabinet are both in a hollow structure shape and are welded with the first fish fins and the isolation plates.
Preferably, the metal net adopts the integrative compression molding of titanium alloy, and all passes through the electric welding with first high-low voltage switch cabinet, second high-low voltage switch cabinet and fixed baseplate and welds, and the inner wall movable mounting of metal net has dustproof filter screen simultaneously.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses in, during the use, all set up first high-low voltage switch cabinet and second high-low voltage switch cabinet bottom to hollow structure form, and with first high-low voltage switch cabinet, fixed mounting has the metal net between second high-low voltage switch cabinet and the fixed baseplate, thereby make first high-low voltage switch cabinet, present a heat dissipation space between second high-low voltage switch cabinet and the fixed baseplate, make first high-low voltage switch cabinet, the inside heat of second high-low voltage switch cabinet is direct large-traffic to be derived from the bottom, simultaneously still can reach damp-proofing effect, and adopt titanium alloy customization to form with the metal net, can effectively bear the action of gravity of first high-low voltage switch cabinet, second high-low voltage switch cabinet, be provided with the radiating area simultaneously between the first high-low voltage switch cabinet, the second high-low voltage switch cabinet, and the principle of combining the usable metal heat transfer of first fin, second fin and third fin can be to first high-low voltage switch cabinet, low voltage switch cabinet, Inside the heat dissipation of second high-low voltage switch cabinet, synthesize foretell heat radiation structure and all need not electric power and support, thereby can reach energy-conserving effect, the first high-low voltage switch cabinet of greatly reduced, the use cost of second high-low voltage switch cabinet, economy is effective, in this moment, can start hydraulic telescopic rod and begin to expand, make the rotation of supporting pedal rotation axis thereupon progressively unified with the division board level, the user can stand at the supporting pedal this moment and look over first high-low voltage switch cabinet, the high-low voltage switch cabinet of second, otherwise then can accomodate the supporting pedal, prevent to cause the hindrance to outside activity when not using, and can make the supporting pedal have the certain distance between accomodating back and metal mesh through setting up the division board, prevent that it from covering the metal mesh after accomodating and influencing its heat dissipation.
Drawings
FIG. 1 is a schematic view of the overall front view of the external structure of the present invention;
FIG. 2 is a schematic view of the overall side view external structure of the present invention;
FIG. 3 is a schematic view of a partially enlarged structure A of the present invention;
in the figure: 1-a first high-low voltage switch cabinet, 2-a second high-low voltage switch cabinet, 3-a supporting pedal, 4-a metal grid, 5-a fixed base, 6-a hydraulic telescopic rod, 7-an isolation plate, 8-a rotating shaft, 9-a heat dissipation area, 10-a first fin, 11-a heat dissipation groove, 12-a second fin and 13-a third fin.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, the present invention provides a technical solution:
an energy-saving high-low voltage switch cabinet comprises a first high-low voltage switch cabinet 1, a second high-low voltage switch cabinet 2, a supporting pedal 3, a metal grid 4, a fixed base 5, a hydraulic telescopic rod 6, an isolating plate 7, a rotating shaft 8, a heat dissipation area 9, a first fish fin 10, a heat dissipation groove 11, a second fish fin 12 and a third fish fin 13, wherein the second high-low voltage switch cabinet 2 is arranged on one side of the first high-low voltage switch cabinet 1, the heat dissipation area 9 is arranged between the second high-low voltage switch cabinet 2 and the first high-low voltage switch cabinet 1, a plurality of groups of equidistant first fish fins 10 are transversely and fixedly arranged in the heat dissipation area 9, the first fish fins 10 divide the interior of the heat dissipation area 9 into a plurality of groups of heat dissipation grooves 11, the second fish fin 12 and the third fish fin 13 are fixedly arranged in the heat dissipation groove 11, the fixed base 5 is horizontally arranged at the bottoms of the second high-low voltage switch cabinet 2 and the first high-low voltage switch cabinet 1, fixed mounting has metal net 4 between fixed baseplate 5 and first high-low voltage switch cabinet 1, the second high-low voltage switch cabinet 2, the front side in the past of first high-low voltage switch cabinet 1 and the 2 bottom of second high-low voltage switch cabinet has set gradually support footboard 3, division board 7, support and rotate through rotation axis 8 between footboard 3 and the division board 7 and be connected, support and have hydraulic telescoping rod 6 between footboard 3 and the fixed baseplate 5, during the use, all set up first high-low voltage switch cabinet 1 and the 2 bottom of second high-low voltage switch cabinet to hollow structure form, and with first high-low voltage switch cabinet 1, second high-low voltage switch cabinet 2 and fixed baseplate 5 between fixed baseplate 4 fixed mounting to make and present a heat dissipation space between first high-low voltage switch cabinet 1, second high-low voltage switch cabinet 2 and the fixed baseplate 5, make first high-low voltage switch cabinet 1, The heat in the second high-low voltage switch cabinet 2 can be directly led out from the bottom in a large flow, a damp-proof effect can be achieved, the metal grid 4 is customized by titanium alloy, the gravity action of the first high-low voltage switch cabinet 1 and the second high-low voltage switch cabinet 2 can be effectively borne, meanwhile, a heat dissipation area 9 is arranged between the first high-low voltage switch cabinet 1 and the second high-low voltage switch cabinet 2, the heat dissipation structure can dissipate the heat in the first high-low voltage switch cabinet 1 and the second high-low voltage switch cabinet 2 by combining the arranged first fish fin 10, the arranged second fish fin 12 and the arranged third fish fin 13 by utilizing the principle of metal heat transfer, the heat dissipation structure does not need electric power support, the energy-saving effect can be achieved, the use cost of the first high-low voltage switch cabinet 1 and the second high-low voltage switch cabinet 2 is greatly reduced, the operation is economical and effective, meanwhile, the hydraulic telescopic rod 6 can be started to start to unfold, make support footboard 3 progressively unified with division board 7 level along with the rotation of rotation axis 8, the user can stand this moment and support footboard 3 and look over first high-low voltage switch cabinet 1, second high-low voltage switch cabinet 2, otherwise then can accomodate support footboard 3, prevent to cause the hindrance to outside activity when not using, and can make support footboard 3 have a certain distance after accomodating and between metal mesh 4 through setting up division board 7, prevent that it from covering metal mesh 4 after accomodating and influencing its heat dissipation.
The utility model discloses the theory of operation: when the heat dissipation device is used, the bottoms of the first high-low voltage switch cabinet 1 and the second high-low voltage switch cabinet 2 are both arranged to be hollow structures, and the metal grids 4 are fixedly arranged between the first high-low voltage switch cabinet 1, the second high-low voltage switch cabinet 2 and the fixed base 5, so that a heat dissipation space is formed between the first high-low voltage switch cabinet 1, the second high-low voltage switch cabinet 2 and the fixed base 5, heat inside the first high-low voltage switch cabinet 1 and the second high-low voltage switch cabinet 2 is directly led out from the bottoms in a large flow, a damp-proof effect can be achieved, the metal grids 4 are customized by adopting titanium alloy, the gravity action of the first high-low voltage switch cabinet 1 and the second high-low voltage switch cabinet 2 can be effectively borne, a heat dissipation area 9 is arranged between the first high-low voltage switch cabinet 1 and the second high-low voltage switch cabinet 2, and the first fish fins 10 are arranged in a combination mode, The principle of the usable metal heat transfer of second fin 12 and third fin 13 can be to first high-low voltage switch cabinet 1, the inside heat dissipation that dispels of second high-low voltage switch cabinet 2, in this moment, can start hydraulic telescopic rod 6 and begin to expand, make support footboard 3 progressively unified with 7 levels of division board along with the rotation of rotation axis 8, the user can stand this moment and support footboard 3 and to first high-low voltage switch cabinet 1, second high-low voltage switch cabinet 2 looks over, otherwise then can accomodate support footboard 3, the overall arrangement simple structure, heat radiation structure all need not electric power and supports, thereby can reach energy-conserving effect, greatly reduced first high-low voltage switch cabinet, the use cost of second high-low voltage switch cabinet, economy is effective, certain spreading value has.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (5)

1. The utility model provides an energy-saving high-low voltage switch cabinet, includes first high-low voltage switch cabinet (1), second high-low voltage switch cabinet (2), supports footboard (3), metal mesh (4), fixed baseplate (5), hydraulic telescoping rod (6), division board (7), rotation axis (8), radiating area (9), first fin (10), radiating groove (11), second fin (12) and third fin (13), its characterized in that: a second high-low voltage switch cabinet (2) is arranged on one side of the first high-low voltage switch cabinet (1), a heat dissipation area (9) is arranged between the second high-low voltage switch cabinet (2) and the first high-low voltage switch cabinet (1), a plurality of groups of equidistant first fish fins (10) are transversely and fixedly arranged in the heat dissipation area (9), the first fish fins (10) divide the interior of the heat dissipation area (9) into a plurality of groups of heat dissipation grooves (11), second fish fins (12) and third fish fins (13) are fixedly arranged in the heat dissipation grooves (11), a fixed base (5) is horizontally placed at the bottom of the second high-low voltage switch cabinet (2) and the bottom of the first high-low voltage switch cabinet (1), and a metal grid (4) is fixedly arranged between the fixed base (5) and the first high-low voltage switch cabinet (1) and the second high-low voltage switch cabinet (2), the front side of first high-low voltage switch cabinet (1) and second high-low voltage switch cabinet (2) bottom has set gradually support footboard (3), division board (7) from the past backward, support and rotate through rotation axis (8) between footboard (3) and division board (7) and connect, fixed mounting has hydraulic telescoping rod (6) between support footboard (3) and fixed baseplate (5).
2. The energy-saving high-low voltage switch cabinet according to claim 1, characterized in that: the supporting pedal (3) is formed by customizing a carbon fiber plate, and the width of the supporting pedal is equal to the height of the metal grid (4).
3. The energy-saving high-low voltage switch cabinet according to claim 1, characterized in that: the second fin (12) and the third fin (13) are arranged in an X shape and are welded with the first fin (10).
4. The energy-saving high-low voltage switch cabinet according to claim 1, characterized in that: the bottom parts of the first high-low voltage switch cabinet (1) and the second high-low voltage switch cabinet (2) are both hollow structures and are welded with the first fish fins (10) and the isolation plates (7).
5. The energy-saving high-low voltage switch cabinet according to claim 1, characterized in that: metal net (4) adopt the integrative compression molding of titanium alloy, and all weld through the electric welding with first high-low voltage switch cabinet (1), second high-low voltage switch cabinet (2) and fixed baseplate (5), and the inner wall movable mounting of metal net (4) has dustproof filter screen simultaneously.
CN202022465321.2U 2020-10-30 2020-10-30 Energy-saving high-low voltage switch cabinet Active CN213636693U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022465321.2U CN213636693U (en) 2020-10-30 2020-10-30 Energy-saving high-low voltage switch cabinet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022465321.2U CN213636693U (en) 2020-10-30 2020-10-30 Energy-saving high-low voltage switch cabinet

Publications (1)

Publication Number Publication Date
CN213636693U true CN213636693U (en) 2021-07-06

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ID=76627107

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022465321.2U Active CN213636693U (en) 2020-10-30 2020-10-30 Energy-saving high-low voltage switch cabinet

Country Status (1)

Country Link
CN (1) CN213636693U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117424115A (en) * 2023-10-28 2024-01-19 浙江诺电电力科技有限公司 High-voltage switch station convenient for heat dissipation

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117424115A (en) * 2023-10-28 2024-01-19 浙江诺电电力科技有限公司 High-voltage switch station convenient for heat dissipation
CN117424115B (en) * 2023-10-28 2024-04-19 浙江诺电电力科技有限公司 High-voltage switch station convenient for heat dissipation

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