Active diversion type communication power cabinet heat dissipation device
A technology for heat dissipation devices and power cabinets, which is applied in cooling/ventilation/heating transformation, electrical components, electrical equipment structural parts, etc., can solve the complex use environment of power cabinets, the difficulty of dust removal process of the heat dissipation mechanism of power cabinets, and the decrease in heat dissipation capacity. and other problems, to achieve the effect of improving efficiency and accuracy, improving maintenance performance, and rapid replacement
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Embodiment 1
[0022] see Figure 1~4 , in an embodiment of the present invention, an active diversion type communication power cabinet cooling device includes a vertically arranged support installation cylinder 15, a spherical installation plate 4 is horizontally arranged at the lower end of the support installation cylinder 15, and the lower edge of the spherical installation plate 4 Several telescopic support columns 1 are vertically arranged at equal angles, and the lower ends of the telescopic support columns 1 are all provided with support ball shafts 2, and the lower ends of the support ball shafts 2 are all provided with swing support pads 3, and the middle position of the support installation cylinder 15 An active guide tube 12 is vertically arranged, and the active guide tube 12 runs through the supporting installation tube 15. The upper end of the active guide tube 12 is provided with an air outlet filter screen 14, and the active guide tube 12 protrudes downward from the spherical...
Embodiment 2
[0025] On the basis of Embodiment 1, the adjustment of the ground clearance of the support installation cylinder 15 is realized through the telescopic support column 1, the air intake volume is changed, the support ball shaft 2 cooperates with the swing support pad 3 to realize stable support, and the steering shaft 33 is driven by the steering motor 34 , so that the dislocation guide support column 31 and the dislocation guide plate 32 are opened and closed in dislocation to control the air guide speed. When they are completely facing each other, the air is led out from the guide guide tube 16 to perform local high-speed cooling.
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