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The impact of DC bias on electrical tree growth characteristics in epoxy resin samples

机译:直流偏置对环氧树脂样品中电树生长特性的影响

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The effect of DC bias on electrical tree growth characteristics in epoxy resin samples is investigated, using three waveforms types: AC, AC with positive DC bias, and AC with negative DC bias. Point-to-plane samples were used. AC tests resulted in 62% and 48% longer average time to breakdown than positive and negative DC biased tests respectively. The negative DC bias test had 14% longer average time to breakdown than positive DC bias test. It is suggested that this is due to space charge injection modifying the field at the tree tip. 4 stages of distinct tree growth are identified in AC tests compared to 3 stages in DC bias tests. In particular, the phenomena of trees growing in the `reverse direction' (from the planar to the point electrode) observed in the latter stages of AC tests, is not seen in the DC tests reported here. This is thought to be due to the peak field magnitudes involved in each case.
机译:研究了DC偏置对环氧树脂样品中的电气树生长特性的影响,采用三种波形类型:AC,AC,具有正直流偏置的AC,AC,带负直流偏压。使用点对平面样本。 AC测试分别导致分别的平均和阴性直流偏置测试的平均平均时间为62%和48%。负直流偏置测试比阳性直流偏置试验击穿的平均时间增加14%。建议这是由于空间电荷注射修改树尖处的区域。在AC测试中,在AC测试中鉴定了4种不同树生长的阶段,而DC偏置试验中的3个阶段相比。特别地,在在这里报道的DC测试中,在后一级观察到的“反向”(从平面到点电极)的树木的现象(从平面电极)。这被认为是由于每种情况下涉及的峰值场幅度。

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