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Possible mechanism of electrical treeing and breakdown for polyimide nanocomposite film used in inverter-fed motor

机译:逆变器供给电动机中使用的聚酰亚胺纳米复合膜的电气树和击穿机理

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The failure of magnet wires used in inter-turn insulation of inverter-fed motor winding is the main cause which leads to the motor insulation breakdown. This paper conducted electrical tree breakdown experiments on magnet wire insulating film (FCR 100) used in the inter-turn insulation of JD117 inverter-fed motor and meanwhile combining with energy spectrum analysis and scanning electrical microscope (SEM), by which type and content of elements, breakdown main body and electrical tree channel could be clearly observed, the corresponding failure mechanisms were analyzed. The experiment results reveal that all the breakdown main bodies are located at the pointedness and insulation joint of magnet wires, of which dielectric strength is relatively lower; they are the insulation “weak point”, which should be paid enough attention and strengthened at the manufacturing period. The electrical tree breakdown time is quite long and the life span of magnet wire is 11 hours. The electrical breakdown strength of envelope is very low when containing metal impurity. It is also found that the aluminum occupies the highest content tested by energy spectrum analysis.
机译:用于逆变电机绕组的匝间绝缘的磁铁线的失效是导致电动机绝缘击穿的主要原因。本文对JD117逆变器供给电机的磁丝绝缘膜(FCR 100)进行了电气树击穿实验,同时与能谱分析和扫描电显微镜(SEM)组合,通过哪种类型和含量可以清楚地观察到元素,击穿主体和电气树通道,分析了相应的失效机制。实验结果表明,所有击穿主体都位于磁铁线的尖头和绝缘接头处,其中介电强度相对较低;它们是绝缘“弱点”,应该在制造期内得到足够的重视和加强。电气树击穿时间很长,磁线的寿命为11小时。含有金属杂质时,封套的电击穿强度非常低。还发现铝占据通过能谱分析测试的最高内容。

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