Rotary disc type sensing element with multiple magnets and unevenly distributed magnetic fluxes
A technology with uniform distribution and sensing elements, which is applied in power metering, vehicle components, torque metering, etc., can solve problems such as distortion and difference of power-assist demand models, and inconsistency between power-assist output and power-assist demand, and achieve low cost and simple structure Effect
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Embodiment 1
[0062] Embodiment 1. Rotary disk sensor element with non-uniform distribution of magnetic flux by multiple magnetic blocks
[0063] Such as figure 1 , 3 , 4, 5, 20 permanent magnet blocks 2 are fixedly arranged on the rotating disk 1 with a diameter of 10.0 cm by injection molding of a high-strength plastic.
[0064] All permanent magnet blocks 2 are evenly distributed in a circular trajectory, and each permanent magnet block 2 is fixed on a circular trajectory line 5 with a diameter of 9.0 cm, that is, the distance from each permanent magnet block 2 to the center of the circle where the circular trajectory line 5 is located is the same , The distance between adjacent permanent magnet blocks 2 is the same. The magnetic flux of the permanent magnet block 2 is 146---279 (B·H)max / KJ·m -3 Different selection values within the range, and the magnetic flux of adjacent permanent magnet block 2 is not equal. There are two permanent magnet blocks 2 and the holes on the rotating ...
Embodiment 2
[0075] Embodiment 2. Rotary disk sensor element with uneven distribution of magnetic flux with high-density multi-magnetic blocks
[0076] Such as figure 2 , 3 , 4, 5, one surface of a high-strength aluminum rotating disk 1 with a diameter of 10.0 cm is provided with 40 permanent magnet blocks 2 with a diameter of 0.4-0.6 cm. The magnetic flux of the permanent magnet block 2 is 146---279 (B·H)max / KJ·m -3 Different selection values within the range, and the magnetic flux of the adjacent permanent magnet block 2 is not equal, Hall 3 keeps a distance of 0.2 cm from each permanent magnet block 2 in the rotating state, so that each permanent magnet block 2 that is rotating Hall 3, Hall 3 can generate a corresponding rectangular wave electrical signal output. The structures of other rotating disk 1, permanent magnet block 2, and Hall 3 are the same as those in embodiment 1.
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