Electrode processes and arc form in miniature circuit breakers

J. McBride, P. Jeffery, P. Weaver
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引用次数: 5

Abstract

The electric arc in current limiting circuit breakers is often depicted as a well defined region of current flow. During a short circuit fault the current through the arc in a current limiting miniature circuit breaker can range from 100 to 10000 Amps. This range of current, along with varying electrode conditions, will lead to variation in both the form of the arc and the processes occurring at the electrodes. These electrode processes, in particular the emission mechanism at the cathode root, dominate the mobility characteristics of the arc. Previously proposed electrode processes are reviewed and the interaction of the mechanisms discussed. Using data recorded on a high speed Arc Imaging System observations about the arc behaviour at different intervals of the arc event are related to possible electrode processes. The variation of arc form in miniature circuit breakers is also discussed.
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微型断路器的电极工艺和电弧形式
限流断路器中的电弧通常被描述为一个明确的电流流动区域。在短路故障期间,通过限流微型断路器电弧的电流可以在100到10000安培之间。这个电流范围,以及不同的电极条件,将导致电弧的形式和发生在电极上的过程的变化。这些电极过程,特别是阴极根部的发射机制,决定了电弧的迁移特性。回顾了以前提出的电极工艺,并讨论了机制的相互作用。利用高速电弧成像系统记录的数据,观察电弧事件在不同间隔的电弧行为与可能的电极过程有关。讨论了微型断路器电弧形态的变化。
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