Device of using electromagnetism to sense rotation motion of starting machines
A technology of rotary motion and electromagnetic induction, which is applied in the direction of electromechanical devices, transmission devices, electric brakes/clutches, etc., can solve the problems of short service life of parts, low transmission efficiency, large energy loss, etc., and achieve long service life of parts and transmission efficiency High, no energy loss effect
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Embodiment 1
[0011] The present embodiment provides a device for initiating mechanical rotary motion by electromagnetic induction, which is characterized in that: the device for initiating mechanical rotary motion by electromagnetic induction includes a driving wheel 1 and a driven wheel 2, which are evenly distributed around the driving wheel 1. A plurality of driving wheel magnets 3 are provided, and a plurality of driven wheel magnets 4 are uniformly arranged on the circumference of the driven wheel 2;
[0012] Wherein: an even number of driving wheel magnets 3 are evenly arranged on the outer circumference of the driving wheel, and an even number of driven wheel magnets 4 are evenly arranged on the inner circumference of the driven wheel 2, and the polarities of adjacent driving wheel magnets 3 are opposite, The polarities of adjacent driven wheel magnets 4 are opposite, and the arc length between two adjacent driven wheel magnets 3 is equal to the arc length between two adjacent driven...
Embodiment 2
[0015] The present embodiment provides a device for initiating mechanical rotary motion by electromagnetic induction, which is characterized in that: the device for initiating mechanical rotary motion by electromagnetic induction includes a driving wheel 1 and a driven wheel 2, which are evenly distributed around the driving wheel 1. A plurality of driving wheel magnets 3 are provided, a plurality of driven wheel magnets 4 are uniformly arranged on the circumference of the driven wheel 2, and a coil 5 is wound on the driving wheel magnet 3;
[0016] Among them: the difference between this embodiment and the first embodiment is that a coil 5 is wound on the driving wheel magnet 3, and other components and connections are the same as those of the first embodiment.
[0017] Its working process is: when the driving wheel 1 rotates clockwise, the S pole of the driving wheel magnet 3 attracts the N pole of the driven wheel magnet 4 and pushes the S pole of the adjacent driven wheel m...
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