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首页> 外文期刊>IEEE Transactions on Plasma Science >Vacuum Surface Flashover of High Gradient Insulators Under Nanosecond Pulse
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Vacuum Surface Flashover of High Gradient Insulators Under Nanosecond Pulse

机译:纳秒级脉冲下高梯度绝缘子的真空表面闪络

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摘要

Vacuum surface flashover of the high gradient insulator (HGI), which consists of many alternative layers of conductors and insulators, was found to generally start from one or several dielectric layers adjacent to the anode under nanosecond pulse by using the fast photography. A simple model is proposed to explain the experimental observations. The secondary electron emission avalanche (SEEA) along the dielectric surface adjacent to the anode will be greatly enhanced due to the upstream SEEA starting from the traditional and the intermediate cathode triple junctions. The 15-mm-thick HGI samples with different numbers of dielectric layers were tested and the samples with six and eight dielectric layers showed the best performance. The experimental result proves that as the number of dielectric layers reaches a certain level, the performance of the HGI will decrease as the number of dielectric layers increases.
机译:高梯度绝缘体(HGI)的真空表面闪络通常由纳秒级脉冲,通过使用快速摄影技术,该表面由许多交替的导体和绝缘体层组成,通常从与阳极相邻的一层或几层介电层开始。提出了一个简单的模型来解释实验观察。由于从传统的和中间的阴极三重结开始的上游SEEA,沿与阳极相邻的介电表面的二次电子发射雪崩(SEEA)将大大增强。测试了具有不同介电层数的15毫米厚的HGI样品,具有六个和八个介电层的样品表现出最佳性能。实验结果证明,随着介电层数量达到一定水平,HGI的性能将随着介电层数量的增加而降低。

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