Effects of novel skewed rotor in squirrel-cage induction motor on electromagnetic force and vibration characteristics

L. Wang, X. Bao, C. Di, J. Li
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Abstract

In rotating-field machines, especially in squirrel-cage induction motor, the rotor slots are often assembled in a skew position in order to reduce the influences of permeance harmonics caused by slots [1]; Moreover, induction motor suffers from the vibration and acoustic noise from radial electromagnetic force produced by harmonic field [2]. However, besides the rotary torque, torque of axial component is also generated in rotating machines. Former skewed rotor designs fail to solve those problems. In this paper, a novel skewed rotor is proposed, which can offset the axial component of electromagnetic force. Besides, the ill-effects of the electromagnetic force wave to rotor will be reduced or offset, thus the vibration of the rotor and the noise of the motor will be decreased, which in return further optimizes the air gap flux density. The effects of the novel skewed rotor on air-gap magnetic flux density, torque and radial electromagnetic force characteristics in a squirrel-cage induction motor are investigated.
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新型鼠笼式异步电动机偏转转子对电磁力和振动特性的影响
在旋转磁场电机中,特别是鼠笼式异步电动机中,为了减小槽的磁通谐波的影响,转子槽常以斜置的方式装配[1];此外,感应电动机还受到谐波场产生的径向电磁力的振动和噪声的影响[2]。然而,在旋转机械中,除了产生旋转扭矩外,还会产生轴向分量的扭矩。以前的倾斜转子设计不能解决这些问题。本文提出了一种新型偏转转子,可以抵消电磁力的轴向分量。此外,电磁力波对转子的不良影响将被减小或抵消,从而降低转子的振动和电机的噪声,从而进一步优化气隙磁通密度。研究了新型倾斜转子对鼠笼式异步电动机气隙磁通密度、转矩和径向电磁力特性的影响。
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