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Surface flashover of oil-immersed dielectric materials in uniform and non-uniform fields

机译:油浸介电材料在均匀和非均匀场中的表面闪络

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摘要

The applied electrical fields required to initiate surface flashover of different types of dielectric material immersed in insulating oil have been investigated, by applying impulses of increasing peak voltage until surface flashover occurred. The behavior of the materials in repeatedly over-volted gaps was also analyzed in terms of breakdown mode (some bulk sample breakdown behaviour was witnessed in this regime), time to breakdown, and breakdown voltage. Cylindrical samples of polypropylene, low-density polyethylene, ultra-high molecular weight polyethylene, and Rexolite, were held between two electrodes immersed in insulating oil, and subjected to average applied electrical fields up to 870 kV/cm. Tests were performed in both uniform- and non-uniform-fields, and with different sample topologies. In applied field measurements, polypropylene required the highest levels of average applied field to initiate flashover in all electrode configurations tested, settling at similar to 600 kV/cm in uniform fields, and similar to 325 kV/cm in non-uniform fields. In over-volted point-plane gaps, ultra-high molecular weight polyethylene exhibited the longest pre-breakdown delay times. The results will provide comparative data for system designers for the appropriate choice of dielectric materials to act as insulators for high-voltage, pulsed-power machines.
机译:通过施加增加峰值电压的脉冲直到发生表面闪络,已经研究了引发浸入绝缘油中的不同类型介电材料的表面闪络所需的施加电场。还根据击穿模式(在这种情况下见证了一些样品的击穿行为),击穿时间和击穿电压对材料在反复过电压间隙中的行为进行了分析。将聚丙烯,低密度聚乙烯,超高分子量聚乙烯和Rexolite的圆柱形样品固定在浸入绝缘油中的两个电极之间,并承受平均870 kV / cm的施加电场。测试在统一和非统一字段中进行,并使用不同的样本拓扑。在外加电场测量中,聚丙烯需要最高水平的平均外加电场才能在所有测试的电极配置中引发闪络,在均匀电场中的沉降速率接近600 kV / cm,在非均匀电场中的沉降速率接近325 kV / cm。在过电压的点平面间隙中,超高分子量聚乙烯表现出最长的预分解延迟时间。结果将为系统设计人员提供适当的介电材料以用作高压脉冲功率机器的绝缘子的比较数据。

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