A stator for an electric wheel hub motor and a motor containing the stator
A technology for in-wheel motors and electric vehicles, applied in the field of electric vehicles, can solve problems such as low conversion efficiency of motors, structural changes of electric vehicles, and sharp increase in motor failure rate, so as to prevent the failure of Hall position sensors, increase the area of stator slots, Improve the effectiveness of the efficiency platform
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Embodiment 1
[0041] Such as Figure 1 to Figure 5 As shown, the present embodiment provides a 10-inch electric wheel hub motor stator, including a stator core 1 and a bracket 2. The stator core 1 is fixed on the bracket 2, and the stator core 1 is laminated by a plurality of stator sheets. As a result, a copper wire winding 8 is wound on the stator core 1. In this embodiment, two brackets 2 of the same shape are used to fix the stator core 1 between the two brackets 2 through press buckles. The center of the bracket 2 is provided with a mounting hole, and a shaft sleeve 3 is penetrated in the mounting hole. The stator core 1 is provided with an anti-rotation groove 15 and the bracket 2 is provided with an anti-rotation rib 21. The above-mentioned anti-rotation groove 15 corresponds to the anti-rotation rib 21 one by one, which can ensure that the stator is under the action of electromagnetic shear force when the motor rotates. Will not rotate with it. In this embodiment, the structure of ...
Embodiment 2
[0063] The technical solution in this embodiment is mostly the same as the technical solution in Embodiment 1. This embodiment only details the different parts, and the same parts in this embodiment and Embodiment 1 will not be repeated.
[0064] The outer diameter of the stator core 1 is 205.01 ~ 212mm, preferably, the outer diameter of the stator core 1 is 206 ~ 210mm, the slot width A2 of the stator core slot and the outer diameter of the stator core, the inner diameter of the stator core, and the yoke of the stator core The radial width A3 and the number of stator core slots satisfy the following relationship:
[0065] In this embodiment, the structure of the stator is a 48-slot 44 permanent magnet structure. The slot width of the stator core slot A2 = (α + the value of the thickness of the single-layer silicon steel sheet of the stator core) × π × (outer diameter of the stator core-inner diameter of the stator core-radial width of the yoke of the stator core A3 ) / Number of st...
Embodiment 3
[0068] In this embodiment, the structure of the stator is a 48-slot 52-piece permanent magnet structure. The technical solution in this embodiment is mostly the same as the technical solution in Embodiment 1. This embodiment only details the different parts, and the same parts in this embodiment and Embodiment 1 will not be repeated.
[0069] The outer diameter of the stator core 1 is 205.01 ~ 212mm, preferably, the outer diameter of the stator core 1 is 205.5 ~ 211mm, the slot width A2 of the stator core slot and the outer diameter of the stator core, the inner diameter of the stator core, and the yoke of the stator core The radial width A3 and the number of stator core slots satisfy the following relationship:
[0070] The slot width of the stator core slot A2 = (α + the value of the thickness of the single-layer silicon steel sheet of the stator core) × π × (outer diameter of the stator core-inner diameter of the stator core-radial width of the yoke of the stator core A3 ) / Numb...
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