高发散场空间电荷注入与提取

L. Dissado, O. Paris, T. Ditchi, C. Alquié, J. Lewiner
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引用次数: 0

摘要

压力波传播法已被用于在高发散电场下直接测量注入环氧树脂的空间电荷。在这里,我们报告了一系列实验的结果,这些实验旨在通过跟踪电压去除后测量电荷的衰减来研究这种注入电荷的提取动力学。所研究的注入条件涵盖了电压范围(10 kV至30 kV),相当于最大施加电场为190 MV/m至590 MV/m,以及施加时间(5至100 ms)。对Lindmayer模型进行了修正,将观察到的电荷衰减图与填充陷阱的能量范围联系起来。不同注入条件下圈闭范围的变化,以及观察到的穿透深度的变化,使我们能够定性地描述高发散场中电荷注入的方式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Space charge injection and extraction in high divergent fields
The pressure wave propagation method has previously been used to obtain a direct measurement of space charge injection into an epoxy resin at high divergent electric fields. Here we report the results of a series of experiments designed to investigate the extraction dynamics of such injected charge by following the decay of the measured charge subsequent to voltage removal. The investigated injection conditions covered a range of voltages (10 kV to 30 kV) equivalent to maximum applied fields of 190 MV/m to 590 MV/m, and times of application (5 to 100 ms). A modification of Lindmayer's model has been used to relate the observed charge decay plots to the energy range of filled traps. The variation of the trap range with different injection conditions, together with the observed changes in the depth of penetration allow us to make qualitative statements about the way in which charge injection proceeds in high divergent fields.
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