Investigation of high-current interruption of vacuum circuit breakers

E. Dullni, E. Schade
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引用次数: 60

Abstract

The physical processes occurring during recovery of a vacuum interrupter after high-current interruption are surveyed. New results have been obtained by the application of modern diagnostic techniques like laser shadow imaging, laser-induced fluorescence of atoms and of metal vapor ions, Mie scattering of droplets, and high-resolution recording of voltage and current on digital oscilloscopes. The density of metal vapor produced by the arc determines the kind of breakdown processes occurring after current zero. Liquid droplets and residual plasma play a minor role. The commonly used contact material, i.e., copper-chromium, is compared with pure copper, and its advantage is explained by the surface structure of the melt. >
真空断路器大电流断路的研究
研究了真空断流器在大电流中断后恢复过程中的物理过程。激光阴影成像、激光诱导原子和金属蒸气离子荧光、液滴Mie散射、数字示波器高分辨率电压和电流记录等现代诊断技术的应用取得了新的成果。电弧产生的金属蒸气的密度决定了电流为零后发生的击穿过程的种类。液滴和残余等离子体只起次要作用。常用的接触材料,即铜铬合金,与纯铜进行了比较,其优势是由熔体的表面结构来解释的。>
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