不同磁化强度下无取向钢短路故障效应的研究

Asheraf Eldieb, F. Anayi, A. Fahmy
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引用次数: 0

摘要

在使用中的电机磁芯片之间的短路是由于层间绝缘损坏、制造缺陷、边缘毛刺和绕组故障造成的。这些层间故障导致受影响层之间的循环涡流,比正常运行时看到的要大。研究了在不同设定值和不同磁化频率下,边缘毛刺故障对机械层合的影响。采用带材试验装置进行了试验研究。结果表明,边缘毛刺的存在对磁芯的磁性有显著影响。该研究还表明,感应涡流在很大程度上取决于故障(边缘毛刺)的位置以及短路层的数量。此外,随着短路片数的增加,功率损耗分离显示出涡流损耗分量的显著增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of short-circuit fault effects on non-oriented steel at different range of magnetisations
Short circuits between sheets of magnetic core of electrical machines in service are due to inter-laminar insulation damage, manufacturing defects, edge burrs and winding faults. These inter-laminar faults lead to circulating eddy currents between the affected laminations which are larger than seen in normal operation. This paper focuses on the effect of edge burrs faults on machine laminations at different set-points and different magnetising frequencies. The experimental study is carried out by using strip tester. Based on the obtained results the presence of edge burrs faults have significant effect on the magnetic properties of magnetic cores. This study has also shown that the induced eddy currents are largely dependent on the position of the fault (edge burrs) as well as on the number of shorted laminations. Moreover, power loss separation has shown significant increase in eddy current losses component with increasing number of shorted laminations.
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