多场耦合下变频电机端绕组绝缘疲劳损伤传播特性研究

IF 2.1 3区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Haijun Zhang;Bangwei Zhang;Jiashun Wang;Haifeng Kong;Guowen Cao
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引用次数: 0

摘要

在逆变器供电的大型电机运行过程中,变频电流可能会影响绕组导体和绝缘的应力状态,进而影响绝缘损伤的传播特性。本文采用有限元法建立了考虑变频电流激励影响的三维磁-热-力耦合损伤演化模型。确定了绝缘层内频率转换和周期应力的复杂分布状态。引入断裂力学中的应力强度因子(SIF)和修正的Paris方程来描述频率(50 ~ 350 Hz)对绝缘损伤扩展程度和趋势的影响。定量研究了多场耦合变频应力作用下电机端部绝缘损伤的疲劳传播特性。结果表明:不同频率对关节部绝缘损伤的疲劳扩展速率影响较大,在200 Hz左右达到最大值;研究结果可为变频电机定子绝缘的检测、诊断和剩余寿命预测提供理论参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Propagation Characteristics of End-Winding Insulation Fatigue Damage in Variable Frequency Motor Under Multi-Field Coupling
During the operation of large motors fed by inverter, the variable frequency current may affect the stress state of the winding conductor and insulation, which will further affect the propagation characteristics of insulation damage. In this article, the 3-D magnetic-thermal-mechanical coupling damage evolution model is established by using the finite element method (FEM), where the effects of variable frequency current excitation are considered. The complex distribution states of the frequency conversion and periodic stress inside the insulation layer are determined. The stress intensity factor (SIF) and modified Paris equation in fracture mechanics are introduced to describe the influence of frequency (50–350 Hz) on the propagation degree and trend of insulation damage. The fatigue propagation characteristics of motor end insulation damage under multi-field coupling variable frequency stress are quantitatively studied. The final results show that the fatigue growth rate of insulation damage at the knuckle part is affected seriously by the variable frequencies, which reach the maximum at about 200 Hz. The results of this research may provide theoretical references for the detection, diagnosis, and residual life prediction of stator insulation for variable frequency electrical machines.
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来源期刊
IEEE Transactions on Magnetics
IEEE Transactions on Magnetics 工程技术-工程:电子与电气
CiteScore
4.00
自引率
14.30%
发文量
565
审稿时长
4.1 months
期刊介绍: Science and technology related to the basic physics and engineering of magnetism, magnetic materials, applied magnetics, magnetic devices, and magnetic data storage. The IEEE Transactions on Magnetics publishes scholarly articles of archival value as well as tutorial expositions and critical reviews of classical subjects and topics of current interest.
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