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Comparison with the influence of different types of impulse currents on the degradation of Zinc-oxide varistors

机译:与不同类型脉冲电流对氧化锌变阻器劣化的影响的比较

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摘要

To compare different types of impulse currents on the degradation of Zinc-oxide varistors, 2 milliseconds square wave and 10/1000 microseconds impact current with the same impact energy were respectively applied to the same type of ZnO varistor samples. The three characteristic parameters' trends of samples with a diameter of 20 millimeters after multiple pulses are different, and the sample after 940 times impacts by 2 milliseconds square wave with an amplitude of 160 amperes remained intact, while the one exploded after 499 times impacts by 10/1000 microseconds impact current with an amplitude of 260 amperes. And the microstructure of samples with a diameter of 10 millimeters after the single pulse by using scanning electron microscopy (SEM) are observed. We find that with the same impact energy, the damage degree of 10/1000 microseconds impact current on ZnO varistor is relatively greater than that of 2 milliseconds square wave, which is more likely to cause the deterioration and aging of ZnO varistors.
机译:为了比较氧化锌压敏电阻的劣化对不同类型的脉冲电流,2毫秒的方波和10/1000微秒的冲击电流分别应用于相同类型的ZnO变阻器样本。在多个脉冲之后,直径为20毫米的样品的三个特征参数的趋势不同,并且在940倍的冲击后的样品幅度为2毫秒,幅度为160安培,仍然完好无损,而在499倍的影响之后爆炸10/1000微秒的冲击电流,幅度为260安培。观察到通过使用扫描电子显微镜(SEM)在单脉冲之后直径为10毫米的样品的微观结构。我们发现,具有相同的影响能量,ZnO变阻器的10/1000微秒的损坏程度相对大于2毫秒的方波,这更有可能导致ZnO变阻器的劣化和老化。

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