介电液体的传导和击穿起始

D. André
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引用次数: 58

摘要

本文介绍了介电液体中从低电场到极高电场范围内可能发生的主要导电现象。这种现象在很大程度上取决于外加电场的强度。我们分析了液体介电常数和外加电场对自由载流子浓度的影响,以及液体体积比金属/液体界面的自由载流子浓度的影响。然后讨论了高场传导现象与击穿引发之间可能存在的关联。液体击穿通常是局部放电(称为“流光”)的结果,这需要非常高的电场(~ 500MV/m),然后在低得多的电场(~ 1MV/m)下传播到液体中。本文将介绍和讨论导致这种放电引发然后导致液体分解的一些可能机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conduction and breakdown initiation in dielectric liquids
In this paper we present the main electrical conduction phenomena which can occur, from low up to very high electric field, in dielectric liquids. Such phenomena are greatly dependent on the applied electric field strength. We analyze the influence of the liquid permittivity and of the applied electric field on the concentration of free charge carriers, as well as in the bulk of the liquid than at the metal/liquid interface. The possible correlation between high field conduction phenomena and breakdown initiation is then discussed. The liquid breakdown is generally the consequence of the initiation of a localized discharge (called “streamers”) which requires a very high electric field (∼500MV/m) followed by its propagation into the liquid under a much lower electric field (∼1MV/m). Some possible mechanisms leading to this discharge initiation and then to liquid breakdown will be presented and discussed.
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