Electrical breakdown in atmospheric air between closely spaced (0.2 /spl mu/m-40 /spl mu/m) electrical contacts

P. Slade, E. Taylor
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引用次数: 176

Abstract

The increasing importance of electrical contacts in air with micrometer spacing prompted recent experiments on the electrical breakdown behavior of these gaps. The electrical field between the contacts used in one of the experiments was analyzed, using finite element analysis to model the electric field. The experimental data on the electrical breakdown voltage could be divided into three regions as a function of the gap spacing. First, at close gap spacing (/spl les/4 /spl mu/m), both the breakdown voltages and the electrical fields at the cathode were similar to values measured during the breakdown of vacuum gaps of less than 200 /spl mu/m. Second, at larger gaps (>6 /spl mu/m), the breakdown voltages followed Paschen's curve for the Townsend electron avalanche process in air. Finally, in between these two regions, the breakdown values were below the expected values for purely vacuum breakdown or purely Townsend breakdown. The breakdown phenomena have been discussed in terms of field emission of electrons from the cathode and their effect on initiating the observed breakdown regimes.
在紧密间隔(0.2 /spl mu/m-40 /spl mu/m)的电触点之间的大气中发生电击穿
在微米间距的空气中,电接触的重要性日益增加,促使最近对这些间隙的电击穿行为进行了实验。对其中一个实验中使用的触点之间的电场进行了分析,采用有限元方法对电场进行了建模。击穿电压的实验数据可以分为三个区域,作为间隙间距的函数。首先,在接近真空间隙(/spl les/4 /spl mu/m)时,阴极击穿电压和电场与小于200 /spl mu/m的真空间隙击穿时的测量值相似。其次,在较大的间隙(>6 /spl mu/m)下,空气中Townsend电子雪崩过程的击穿电压遵循Paschen曲线。最后,在这两个区域之间,击穿值低于纯真空击穿或纯汤森击穿的期望值。从阴极的场发射电子及其对引发所观察到的击穿机制的影响的角度讨论了击穿现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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