Quick charging system of new energy automobile
A new energy vehicle and fast charging technology, applied in charging stations, electric vehicles, vehicle parts, etc., can solve problems such as cable friction and cable damage, and achieve the effect of prolonging service life and improving maintenance quality
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Embodiment 1
[0033] The baffle plate 12 is in contact with the baffle plate 10, so that the retracting speed of the conductive cable 7 will be very slow, so that the cleaning roller 11 can wipe the moisture on the surface of the conductive cable 7 for a long time, thereby improving the maintenance quality and prolonging the conduction time. Service life of cable 7, see Figure 1-3 , a fast charging system for a new energy vehicle, comprising a protective shell 1 and a cavity 2 provided in the protective shell 1, a rotating disk 4 is also rotatably connected in the protective shell 1, and a conductive cable 7 is connected to the rotating disk 4 to protect the The interior of the shell 1 is also rotatably connected with a connecting ring 9, a blocking plate 10 is connected on the connecting ring 9, and a cleaning roller 11 is rotatably connected on the blocking plate 10, and the cleaning roller 11 is used to abut on the conductive cable 7;
[0034] An adjustment cavity 13 is arranged inside ...
Embodiment 2
[0038] This embodiment is an improvement made on the basis of Embodiment 1. For details, please refer to Figure 1-3 , a pressing block 16 is installed inside the blocking plate 10 , and the pressing block 16 is in contact with the cleaning roller 11 .
[0039] Continuous water absorption: According to image 3 As shown, the cleaning roller 11 is squeezed by the pressing block 16, so that after the lower end of the cleaning roller 11 wipes the outer surface of the conductive cable 7, the conductive cable 7 is squeezed by the cleaning roller 11, so that the water flow wiped by the cleaning roller 11 The cleaning roller 11 can be kept dry all the time, so that the cleaning roller 11 can continuously absorb the moisture on the conductive cable 7 to avoid.
Embodiment 3
[0041] The rotating shaft 5 is driven to rotate and reset by the torsion spring 6, and the rotating shaft 5 drives the rotating disk 4 to receive the conductive cable 7, thereby realizing the automatic contraction of the conductive cable 7 into the interior of the protective shell 1. This embodiment is based on the second embodiment. Improvements made, for details, see Figure 1-3 , a fixed sleeve 3 is also installed inside the protective shell 1, and a rotating shaft 5 is also installed on the conductive cable 7. The rotating shaft 5 is rotatably connected to the inside of the fixed sleeve 3, and the inside of the fixed sleeve 3 is also installed with a torsion spring 6. The spring 6 is connected to the rotating shaft 5 .
[0042] Auto Shrink: According to figure 2 As shown, when the conductive cable 7 is pulled out of the protective shell 1, the conductive cable 7 will drive the rotating disk 4 to rotate, and the rotating disk 4 will drive the rotating shaft 5 to rotate, s...
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