Full-automatic switch electromagnetic lock of shared bicycle
A technology for sharing bicycles and electromagnetic locks, which is applied to locks operated by non-mechanical transmissions, building locks, bicycle accessories, etc., which can solve the problems of affecting user experience and inability to lock remotely, and achieve good shock absorption, anti-skid, and weight reduction Effect
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Embodiment 1
[0031] see Figure 1-2 A fully automatic switch electromagnetic lock for a shared bicycle comprises an electromagnetic lock housing 10, a wheel 12, a controller 13, an arc block 19, a wheel hub 21, a No. 1 locking mechanism, a No. 2 locking mechanism and a limit mechanism.
[0032] The wheel 12 is fixedly connected in the hub 21, the electromagnetic lock housing 10 is fixedly connected above the wheel 12 on the shared bicycle, the lower wall of the electromagnetic lock housing 10 is provided with an arc hole, the controller 13 is located in the electromagnetic lock housing 10, and the arc block 19 It is fixedly connected to the middle part of the arc-shaped hole on the lower wall of the electromagnetic lock housing 10 .
[0033] No. 1 locking mechanism and No. 2 locking mechanism are arranged in the arc-shaped hole on the lower wall of the electromagnetic lock housing 10 , and the limit mechanism is arranged on the inner side of the lower wall of the electromagnetic lock housi...
Embodiment 2
[0039] see image 3 A fully automatic switch electromagnetic lock for shared bicycles, No. 2 spring 22 is arranged between the limit rod 14 and the inner side of the lower wall of the electromagnetic lock housing 10, which can prevent the limit rod 14 from deviating from the electromagnetic lock housing 10 lower wall.
Embodiment 3
[0041] see Figure 4 A fully automatic switch electromagnetic lock for shared bicycles, the end of the electromagnetic lock lever 11 away from the electromagnet 16 is fixedly connected with a rubber sheet 23, which can obtain better shock absorption and anti-skid effects.
[0042] In the initial state, the electromagnetic lock is in a locked state. When the user needs to use it, the controller 13 receives a signal from the cloud, and the No. 1 permanent magnet 18 and the limit electromagnet 15 are energized, and the No. 1 permanent magnet 18 attracts the electromagnet 16 to make it work. The electromagnet 16 moves towards the direction close to the No. 1 permanent magnet 18, and the electromagnet 16 drives the electromagnetic lock bar 11 to move. The permanent magnets 20 attract each other, and the limit electromagnet 15 drives the limit rod 14 to snap into the groove on the electromagnetic lock rod 11. After a period of time, the power is cut off. At this time, the electromag...
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