Structural Integrity Analysis of a Two-Pole Synchronous Reluctance Machine with Non-circular Shaft

Didem Tekgun, B. Tekgun, I. Alan
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Abstract

This paper investigates the structural strength of a 6-inch diameter, two-pole, 4 kW line start synchronous reluctance machine (LS-SynRM) designed with a new noncircular shaft structure that serves as a pump motor. Flux paths on the rotor are widened while narrowing down the shaft of the motor on the q-axis to improve the motor efficiency. By using this method, a wider path is created for the flux in the d-axis. As a result, the inductance in the d-axis, the ratio of inductance between the d-axis and q-axis (referred to as saliency ratio), and the difference in inductance between the d-axis and q-axis are all amplified. To evaluate the structural strength of the machine, a series of analyses are conducted, including modal, harmonic, and static examination on the rotor using ANSYS Structural. The findings indicate that to prevent redundant deformations and undesirable vibrations because of resonance, the maximum safe limit for shaft size reduction is determined as 8 mm.
非圆轴双极同步磁阻电机结构完整性分析
本文研究了采用新型非圆轴结构作为泵电机的6英寸直径、两极、4kw线路启动同步磁阻电机(LS-SynRM)的结构强度。转子上的磁通路径被加宽,同时电机轴在q轴上变窄,以提高电机效率。通过使用这种方法,可以为d轴上的通量创建更宽的路径。因此,d轴的电感、d轴与q轴的电感之比(称为显著性比)、d轴与q轴的电感之差都被放大。为了评估机器的结构强度,利用ANSYS structure对转子进行了模态、谐波和静力等一系列分析。研究结果表明,为了防止由于共振引起的冗余变形和不良振动,确定轴尺寸减小的最大安全限制为8 mm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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