Charging pile system for electric vehicle
A charging pile system and electric vehicle technology, applied in the field of electric vehicle charging pile system, can solve the problems that electric vehicles cannot continue to drive, cannot charge the battery, and charge for a long time
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Embodiment 1
[0056] according to Figure 1 to Figure 13 As shown, this embodiment is an electric vehicle charging pile system, including a charging pile, an electric vehicle battery 7 for charging an electric vehicle, and a quadcopter 9 for carrying the electric vehicle battery for movement.
[0057] The charging pile includes a charging pile housing 1 and a rotating assembly 2 rotatably connected in the charging pile housing.
[0058] The rotating assembly includes a disc-shaped rotating disk 21 and a rotating shaft 22 fixedly formed in the center of the rotating disk; the rotating disk is fixedly connected with a charging plate 23 for charging the battery of the electric vehicle near the outer periphery. The upper surface of the disk is far away from the rotating shaft; the middle of each charging disk is screwed with a fastener 231 for fixing the electric vehicle battery; the lower surface of each charging disk is installed with a fastener for driving the fastener to rotate. The first ...
Embodiment 2
[0097] to combine Figure 14 and Figure 15 In this embodiment, on the basis of Embodiment 1, the following improvements are made: a landing gear joint 915 is formed at the lower part of the inner periphery of each of the air outlet rings away from the air outlet pipe, and each of the landing gear joints is connected with a landing gear joint 915. Landing gear 93; the landing gear includes an air outlet pipe body 931 that is fixedly connected with the landing gear joint and communicates with the inside of the air outlet ring through the landing gear joint, and the sliding pipe 932 that is slidably installed in the air outlet pipe body, and the air outlet pipe Body near the support rod 935 that one end of the landing gear joint is rotatably connected, the roller 936 that is connected on the support rod away from the end of the landing gear joint, and the connecting rod 934 that is rotatably connected with the middle part of the sliding tube and the middle part of the support ro...
Embodiment 3
[0103] In this embodiment, the following improvements are made on the basis of Embodiment 2: the roller includes a cylindrical electromagnet and an annular ring of magnetically permeable material rotatably connected to the outer periphery of the electromagnet. The electromagnet is electrically connected with the control circuit board. Before the electromagnet is energized, the rim can rotate relative to the electromagnet, so that when the aircraft lands, the rim can be in contact with the parking position, which is beneficial to the deployment of the landing gear; after the quadcopter is docked, the electromagnet is energized so that the rim can Suction firmly in the stop position of the magnetic material.
[0104] The rear end of the piston is connected to the front end of the spring positioning rod by two permanent magnets that are close to each other and do not touch each other, and the magnetic force of the two permanent magnets is less than the elastic force of the spring...
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Abstract
Description
Claims
Application Information
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