CN222706844U - Outdoor heat exchange power cabinet - Google Patents

Outdoor heat exchange power cabinet Download PDF

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Publication number
CN222706844U
CN222706844U CN202421122215.6U CN202421122215U CN222706844U CN 222706844 U CN222706844 U CN 222706844U CN 202421122215 U CN202421122215 U CN 202421122215U CN 222706844 U CN222706844 U CN 222706844U
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China
Prior art keywords
heat
power supply
heat dissipation
fixedly connected
cabinet
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Active
Application number
CN202421122215.6U
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Chinese (zh)
Inventor
王坤埔
于喆
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Shandong Boshun Power Co ltd
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Foshan Qinzhan Technology Co ltd
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Priority to CN202421122215.6U priority Critical patent/CN222706844U/en
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Abstract

本实用新型公开了一种户外热交换电源机柜,包括电源机柜,电源机柜内设有电源槽,电源槽左侧设有散热槽,固定杆固定连接有位于电源槽内的导热板,导热板右端面固定连接有电源,导热板设有多个导热槽,每个导热槽内都固定有另一端位于散热槽内的导热U形管,导热U形管固定连接有多片位于散热槽内的散热片,电源在使用时产生的热量,通过导热板传输给导热U形管,导热U形管传导热量给散热片,再配合电机带动扇叶转动,将散热槽内的散热片散发的热量吹出,从而达到电源机柜内外热交换的目的,同时通过通气孔也能够将电源槽内的热量吹出,进行更加高效的散热。

The utility model discloses an outdoor heat exchange power cabinet, including a power cabinet, a power slot is arranged in the power cabinet, a heat dissipation slot is arranged on the left side of the power slot, a fixing rod is fixedly connected with a heat conduction plate located in the power slot, a power supply is fixedly connected with the right end face of the heat conduction plate, the heat conduction plate is provided with a plurality of heat conduction slots, a heat conduction U-shaped tube is fixed in each heat conduction slot, the other end of the heat conduction U-shaped tube is located in the heat dissipation slot, a plurality of heat dissipation fins located in the heat dissipation slot are fixedly connected with the heat conduction U-shaped tube, the heat generated by the power supply when in use is transmitted to the heat conduction U-shaped tube through the heat conduction plate, the heat conduction U-shaped tube transmits the heat to the heat dissipation fin, and then cooperates with a motor to drive the fan blades to rotate, and the heat emitted by the heat dissipation fins in the heat dissipation slot is blown out, thereby achieving the purpose of heat exchange inside and outside the power cabinet, and at the same time, the heat in the power slot can also be blown out through the vent hole, so as to perform more efficient heat dissipation.

Description

Outdoor heat exchange power cabinet
Technical Field
The utility model relates to the field of heat exchange cabinets, in particular to an outdoor heat exchange power cabinet.
Background
When outdoor power cabinet is in use, the temperature in the cabinet is possibly increased continuously due to the use of power, the temperature in the cabinet is required to be reduced timely, the power is installed on the heat conducting fin, the heat conducting fin is connected with a plurality of heat conducting pipes, then the heat conducting pipes are provided with opposite heat radiating fins, and then the heat radiating fins are matched with a fan to blow out hot air in the cabinet and at the heat radiating fins, so that the heat radiating effect can be achieved.
Disclosure of utility model
The utility model aims to provide an outdoor heat exchange power cabinet to solve the problems in the background art.
The outdoor heat exchange power cabinet comprises a power cabinet, wherein a power supply groove is formed in the power cabinet, a heat dissipation groove is formed in the left side of the power supply groove, four fixing rods are fixedly connected to the left end wall of the power supply groove, a heat conducting plate located in the power supply groove is fixedly connected to the fixing rods, a power supply is fixedly connected to the right end face of the heat conducting plate, a plurality of heat conducting grooves are formed in the heat conducting plate, heat conducting U-shaped pipes with the other ends located in the heat dissipation groove are fixedly connected to the heat conducting U-shaped pipes, a plurality of heat dissipation fins located in the heat dissipation groove are fixedly connected to the heat conducting U-shaped pipes, a backboard for sealing the heat dissipation groove is fixedly connected to the power cabinet, a plate groove is formed in the backboard, a plurality of air inlets communicated with the heat dissipation groove are formed in the plate groove, a dust-proof plate is clamped in the plate groove, heat generated by the power supply in use is transferred from the heat conducting plate to the heat conducting U-shaped pipes, and then the heat conducting U-shaped pipes are conducted to the heat dissipation fins, and the heat is fully dissipated through the heat dissipation fins.
The heat dissipation device comprises a power cabinet bottom die, a heat dissipation pipe, a motor shaft, fan blades, a fixing plate, a motor cabinet bottom die, a motor shaft, a fan blade and a fan blade, wherein the front side of the heat dissipation groove is provided with a groove;
the power supply has the advantages that the upper end face of the power supply is fixedly connected with the temperature sensor, so that the start and stop of the motor can be automatically controlled through the temperature of the power supply;
The power cabinet is provided with the plurality of vent holes communicated with the power supply groove and the heat dissipation groove, and heat in the power supply groove can be blown out of the heat dissipation pipe through the vent holes, so that heat dissipation of the power supply is better performed;
the power supply cabinet is rotatably connected with a cabinet door capable of opening and closing the power supply groove, and the right end face of the cabinet door is fixedly connected with a handle;
The power cabinet is characterized in that the lower end face of the power cabinet is fixedly connected with two bases which are symmetrical front and back, and the bases play a supporting role.
Compared with the prior art, the utility model has the beneficial effects that:
According to the heat dissipation device, the radiating fins, the heat conducting U-shaped pipes and the heat conducting plates are arranged, heat generated by a power supply when the heat dissipation device is used is transmitted to the heat conducting U-shaped pipes through the heat conducting plates, the heat conducting U-shaped pipes transmit heat to the radiating fins, the motor is matched to drive the fan blades to rotate, and the heat emitted by the radiating fins in the radiating grooves is blown out, so that the aim of heat exchange inside and outside a power cabinet is achieved, and meanwhile, the heat in the power supply grooves can be blown out through the vent holes, so that more efficient heat dissipation is achieved.
Drawings
FIG. 1 is a three-dimensional schematic of the present utility model;
FIG. 2 is a top view of FIG. 1;
FIG. 3 is a schematic view in section A-A of FIG. 2;
FIG. 4 is a schematic view in section B-B of FIG. 2;
FIG. 5 is an enlarged partial schematic view of FIG. 4;
FIG. 6 is a schematic cross-sectional three-dimensional view of a power cabinet of the present utility model;
fig. 7 is a three-dimensional schematic view of the heat sink of the present utility model.
In the figure, 100 parts of a power cabinet, 101 parts of a cabinet door, 102 parts of a handle, 103 parts of a base, 104 parts of a power slot, 105 parts of a heat dissipation slot, 106 parts of a heat conduction plate, 107 parts of a power source, 108 parts of a temperature sensor, 109 parts of a heat conduction U-shaped pipe, 110 parts of a heat dissipation plate, 111 parts of a back plate, 112 parts of a groove, 113 parts of a motor, 114 parts of an air inlet, 115 parts of a fixing plate, 116 parts of a motor, 117 parts of a motor shaft, 117 parts of a fan blade, 118 parts of a dust prevention plate, 119 parts of a heat conduction slot, 120 parts of a fixing rod, 121 parts of a heat dissipation pipe, 122 parts of a vent hole, 123 parts of a plate slot.
Detailed Description
The present utility model will be described in further detail with reference to the following examples in order to make the objects, technical solutions and advantages of the present utility model more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
Example 1:
Referring to fig. 1-7, the utility model provides a technical scheme that an outdoor heat exchange power cabinet comprises a power cabinet 100, wherein a power supply groove 104 is arranged in the power cabinet 100, a heat dissipation groove 105 is arranged at the left side of the power supply groove 104, four fixing rods 120 are fixedly connected to the left end wall of the power supply groove 104, a heat conducting plate 106 positioned in the power supply groove 104 is fixedly connected to the fixing rods 120, a power supply 107 is fixedly connected to the right end surface of the heat conducting plate 106, a plurality of heat conducting grooves 119 are arranged on the heat conducting plate 106, heat conducting U-shaped pipes 109 with the other ends positioned in the heat dissipation grooves 105 are fixedly connected to a plurality of heat dissipation fins 110 positioned in the heat dissipation grooves 105, the power cabinet 100 is fixedly connected to a back plate 111 for sealing the heat dissipation grooves 105, a plurality of plate grooves 123 are arranged in the back plate 111, a plurality of heat conducting plates 114 communicated with the heat dissipation grooves 105 are clamped in the plate grooves 123, heat conducting U-shaped pipes 109 are fixedly connected to the right end surfaces of the heat conducting plates 107, heat generated by the power supply 107 is conducted from the heat conducting U-shaped heat conducting pipes 109 to the heat dissipation fins 110, and the heat dissipation fins are fully dissipated through the heat conducting U-conducting pipes 110.
The front side of the radiating groove 105 is provided with a groove 112, a fixed plate 115 is fixedly connected in the middle of the groove 112, a motor 113 is fixedly connected to the rear end surface of the fixed plate 115, a radiating pipe 121 is fixedly connected to a bottom die of the power cabinet 1001, a motor shaft 116 positioned in the radiating pipe 121 is connected to the motor 113 in a power mode, a fan blade 117 positioned in the radiating pipe 121 is fixedly connected to the motor shaft 116, and heat in the radiating groove 105 is blown out through rotation of the fan blade 117;
The upper end surface of the power supply 107 is fixedly connected with a temperature sensor 108, so that the start and stop of the motor 113 can be automatically controlled by the temperature of the power supply 107;
The power cabinet 100 is provided with a plurality of vent holes 122 communicating the power supply groove 104 and the heat dissipation groove 105, and the heat in the power supply groove 104 can be blown out from the heat dissipation pipe 121 through the vent holes 122, so that the heat dissipation of the power supply 107 can be better performed;
The power cabinet 100 is rotatably connected with a cabinet door 101 capable of opening and closing the power supply groove 104, and the right end surface of the cabinet door 101 is fixedly connected with a handle 102;
Two bases 103 which are symmetrical in front-back are fixedly connected to the lower end face of the power cabinet 100, and the bases 103 play a supporting role.
Working principle:
When the power supply 107 starts to be used, generated heat is conducted from the heat conducting plate 106 to the heat conducting U-shaped pipe 109 and is conducted to each heat radiating fin 110 through the heat conducting U-shaped pipe 109, wherein the heat conducting grooves 119 can improve the heat exchange efficiency of the heat conducting plate 106 and the heat conducting U-shaped pipe 109, and the heat radiating fins 110 can improve the heat radiation;
When the temperature sensor 108 detects that the temperature of the power supply 107 is higher, the motor 113 is automatically started, the motor 113 drives the motor shaft 116 to rotate, the motor shaft 116 drives the fan blades 117 to rotate, heat in the heat dissipation groove 105 is collected into the groove 112 along with air flow and then is blown out of the heat dissipation pipe 121, meanwhile, heat in the power supply groove 104 can be blown out of the heat dissipation pipe 121 along with air flow from the vent hole 122 to the heat dissipation groove 105, and outside air enters the heat dissipation groove 105 from the air inlet 114 after water vapor and dust are filtered through the dust-proof plate 118, so that the heat exchange effect of the inner tile of the power cabinet 100 is achieved, and the purpose of heat dissipation is achieved.
It will be apparent to those skilled in the art that various modifications and variations can be made to the disclosed embodiments. Other embodiments will be apparent to those skilled in the art from consideration of the specification and practice of the disclosed system. It is intended that the specification and examples be considered as exemplary only, with a true scope being indicated by the following claims and their equivalents.

Claims (6)

1. An outdoor heat exchange power cabinet comprises a power cabinet (100) and is characterized in that a power supply groove (104) is formed in the power cabinet (100), a heat dissipation groove (105) is formed in the left side of the power supply groove (104), four fixing rods (120) are fixedly connected to the left end wall of the power supply groove (104), each fixing rod (120) is fixedly connected with a heat conducting plate (106) in the power supply groove (104), a power supply (107) is fixedly connected to the right end face of each heat conducting plate (106), a plurality of heat conducting grooves (119) are formed in each heat conducting plate (106), heat conducting U-shaped pipes (109) with the other ends located in the heat dissipation grooves (105) are fixedly connected with a plurality of heat dissipation fins (110) located in the heat dissipation grooves (105), plate grooves (123) are formed in the back plates (111) in a sealing mode, a plurality of heat conducting plates (123) are arranged in the plate grooves (123), and the heat conducting U-shaped pipes (109) are fixedly connected with heat dissipation plates (114) in the heat dissipation grooves (105).
2. The outdoor heat exchange power supply cabinet according to claim 1, wherein the front side of the heat dissipation groove (105) is provided with a groove (112), a fixing plate (115) is fixedly connected in the middle of the groove (112), a motor (113) is fixedly connected to the rear end face of the fixing plate (115), a heat dissipation pipe (121) is fixedly connected to the bottom die of the power supply cabinet (100) 1, a motor shaft (116) positioned in the heat dissipation pipe (121) is connected to the motor (113) in a power mode, and fan blades (117) positioned in the heat dissipation pipe (121) are fixedly connected to the motor shaft (116).
3. The outdoor heat exchange power cabinet of claim 2, wherein the upper end surface of the power supply (107) is fixedly connected with a temperature sensor (108).
4. An outdoor heat exchange power cabinet according to claim 3, wherein said power cabinet (100) is provided with a plurality of vent holes (122) communicating said power slots (104) with said heat sink slots (105).
5. The outdoor heat exchange power supply cabinet according to claim 4, wherein the power supply cabinet (100) is rotatably connected with a cabinet door (101) capable of opening and closing the power supply groove (104), and a handle (102) is fixedly connected to the right end face of the cabinet door (101).
6. The outdoor heat exchange power supply cabinet according to claim 5, wherein the lower end face of the power supply cabinet (100) is fixedly connected with two bases (103) which are symmetrical in front-back.
CN202421122215.6U 2024-05-22 2024-05-22 Outdoor heat exchange power cabinet Active CN222706844U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202421122215.6U CN222706844U (en) 2024-05-22 2024-05-22 Outdoor heat exchange power cabinet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202421122215.6U CN222706844U (en) 2024-05-22 2024-05-22 Outdoor heat exchange power cabinet

Publications (1)

Publication Number Publication Date
CN222706844U true CN222706844U (en) 2025-04-01

Family

ID=95147505

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202421122215.6U Active CN222706844U (en) 2024-05-22 2024-05-22 Outdoor heat exchange power cabinet

Country Status (1)

Country Link
CN (1) CN222706844U (en)

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GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20250821

Address after: 250000 Shandong Province, Tiantai District, Jinan City, Yifu Garden, Building 11, Unit 1, Room 201

Patentee after: Lei Yang

Country or region after: China

Address before: 528247 Guangdong Province Foshan City Nanhai District Dalin Town Yanbu He Dongjing Industrial Zone

Patentee before: Foshan qinzhan Technology Co.,Ltd.

Country or region before: China

TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20251014

Address after: 250000 North of No. 82 Gongye North Road, Licheng District, Jinan City, Shandong Province

Patentee after: SHANDONG BOSHUN POWER Co.,Ltd.

Country or region after: China

Address before: 250000 Shandong Province, Tiantai District, Jinan City, Yifu Garden, Building 11, Unit 1, Room 201

Patentee before: Lei Yang

Country or region before: China