Production line electric control cabinet with heat dissipation structure
A heat dissipation structure and production line technology, which is applied in the direction of electrical components, busbar/line layout, substation/switch layout details, etc., can solve the problems of easy accumulation of dust on the heat dissipation fan, increased workload, and large dust, so as to improve the heat dissipation and cooling effect. Improve the efficiency of use, improve the effect of air flow and circulation speed
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Embodiment 1
[0027] see Figure 1-3 , this embodiment provides a production line electric control cabinet with a heat dissipation structure, including a cabinet body 1 and a heat dissipation plate 6, one side wall of the cabinet body 1 is connected with a cabinet door 2 through hinges, and the cabinet body 1 is opposite to the cabinet door. One side of the inner tank wall of 2 is provided with an electric control component 3, and the inner tank of the bottom of the cabinet body 1 is provided with a water tank 4. The inner wall of the cabinet body 1 close to the upper part of the water tank 4 is bolted with a mounting plate 5, and the surface of the mounting plate 5 is provided with a through groove to dissipate heat. The plate 6 is engaged with the through grooves of the mounting plate 5 and connected by plugging and pulling, and the through grooves on the surface of the mounting plate 5 are engaged with the heat dissipation plate 6, which makes the disassembly and assembly of the heat diss...
Embodiment 2
[0031] see Figure 2-3 , made further improvements on the basis of Example 1:
[0032] There are connecting frames 7 on both sides of the heat dissipation plate 6, the connecting frame 7 is provided with a cooling fan 8, the side walls on the opposite sides of the cabinet body 1 are provided with heat dissipation grooves 14, and the outer side walls of the cabinet body 1 are embedded with bolts to connect with heat dissipation windows 15 to dissipate heat. The window 15 is connected to the heat dissipation slot 14 through, and the inner wall of the heat dissipation window 15 is rotatably connected with a louver 16. The hot and cold gas is guided into the heat dissipation slot 14 through the arc top plate 10, and then the heat dissipation window 15 is discharged, thereby improving the efficiency of heat dissipation. The bottom of the water tank 4 There is a water inlet and outlet rack 17, and the water tank 4 is bolted with a refrigeration pipe 18. The refrigeration pipe 18 coo...
Embodiment 3
[0034] see image 3 and Figure 5-6 , made further improvements on the basis of Example 1:
[0035] The top of the mounting plate 5 is provided with a slot 20. The slot 20 is engaged and connected with a plug-in board 19. The plug-in board 19 is fixedly connected to the relative position of the bottom of the upper limit plate 11. The lower limit plate 12 penetrates one side of the heat sink 6 and inside A limit spring 21 is arranged between the groove walls. The lower limit plate 12 penetrates close to the limit spring 21 and is slidably connected to the limit slide bar 22. The limit slide bar 22 is fixedly connected to the heat sink 6 relative to the inner groove wall, and the upper limit plate 11 passes through. The insertion of the plug-in board 19 and the socket 20 enables the heat dissipation plate 6 to be effectively fixed to the upper half of the installation board 5, and then the lower limit plate 12 at the bottom can be quickly limited by the rebound of the limit spr...
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