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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Estimation of flashover voltage along cylindrical insulator in vacuum
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Estimation of flashover voltage along cylindrical insulator in vacuum

机译:真空中圆柱绝缘子的闪络电压估算

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摘要

This paper deals with a method to estimate the surface flashover voltage of an insulator in vacuum, in which the distribution of surface charge accumulated due to a secondary electron emission avalanche (SEEA) is taken into account. We show experimental and calculated results for a cylindrical insulator made of ceramic, glass or polymer, where each insulator ranges up to 50 mm in length. Since the surface roughness of specimens affects the progression of SEEA, its influence on the flashover voltage is also examined. The calculation results have demonstrated good agreement with experimental ones except for a case in which the SEEA charge is substantially lowered. For further confirmation of the validity and applicability of our estimation method, we have examined the flashover characteristic of a specimen when its surface consists of smooth and rough regions. The calculation result of this case also agreed with the experimental one. To explain the disagreement that appears in the less charged case, we discuss and propose two flashover mechanisms, including one based on SEEA.
机译:本文探讨了一种估算绝缘子在真空中的表面闪络电压的方法,其中考虑了由于二次电子发射雪崩(SEEA)而积累的表面电荷的分布。我们显示了由陶瓷,玻璃或聚合物制成的圆柱状绝缘子的实验和计算结果,其中每个绝缘子的长度最大为50 mm。由于样品的表面粗糙度会影响SEEA的进程,因此还应检查其对闪络电压的影响。除了SEEA费用大大降低的情况外,计算结果与实验结果吻合良好。为了进一步确认我们的估计方法的有效性和适用性,我们检查了当样品表面由光滑和粗糙区域组成时的闪络特性。这种情况的计算结果也与实验结果一致。为了解释在收费较低的情况下出现的分歧,我们讨论并提出了两种闪络机制,包括一种基于SEEA的闪络机制。

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