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THE DEGRADATION OF EPOXY RESIN-COATED ZnO VARISTORS AT ELEVATED TEMPERATURES AND AMBIENT HUMIDITY CONDITIONS

机译:高温和高湿条件下环氧树脂涂层ZnO压敏电阻的降解

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摘要

The degradation of the epoxy resin-coated commercial ZnO varistors at elevated temperatures and ambient humid conditions has been investigated experimentally. It has been observed that the leakage current of the ZnO varistors increases under the voltage stress at elevated temperatures with ambient humidity content. The change in the leakage current corresponding to a fixed electric field with respect to the initial current is taken as the dimensionless degradation index. This index is monitored at various experimental conditions in conjunction with the curing condition of the epoxy resin powder. The results are carefully evaluated, and it has been found that the diffusion process of the moisture into the ZnO varistors plays a key role in the degradation process provided that these varistors had excellent property to begin with. The ionisation of the moisture at the interface between the ZnO block and the epoxy resin coating leads to the increase of the leakage current. Furthermore, the role of the ambient pressure corresponding to the elevated temperatures is considered as the variable to the degradation process. These data are also monitored and analysed as a function of time.
机译:实验研究了环氧树脂涂层的商用ZnO压敏电阻在高温和环境潮湿条件下的降解。已经观察到,ZnO压敏电阻的泄漏电流在环境湿度较高的高温下在电压应力下会增加。对应于固定电场的泄漏电流相对于初始电流的变化被视为无量纲的劣化指标。结合环氧树脂粉末的固化条件,在各种实验条件下监测该指数。仔细评估了结果,发现水分进入ZnO压敏电阻的扩散过程在降解过程中起着关键作用,只要这些压敏电阻具有优异的性能即可。 ZnO嵌段和环氧树脂涂层之间的界面处的水分离子化导致泄漏电流增加。此外,与升高的温度相对应的环境压力的作用被认为是降解过程的变量。这些数据也作为时间的函数进行监视和分析。

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