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Stability of stationary solutions in the theory of cathode spots in arcs in vacuum and ambient gas

机译:真空和环境气体中弧形阴极斑点理论中固定溶液的稳定性

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Stability of stationary spots on cathodes of arcs in vacuum and ambient gas has been investigated by means of simulation of development in time of perturbations imposed over steady-state solutions. Two cases of loading conditions have been considered, namely, spots operating at fixed current (the case typical of small-scale experiments) and spots operating at fixed voltage (the case typical of high-power circuit breakers). Results are reported on spots on large copper cathodes of vacuum arcs and on spots on tungsten cathodes of high-pressure argon arcs. It is shown, in particular, that if the ballast resistance in a small-scale laboratory experiment with a high-current arc is insufficient, potential consequence may be a thermal explosion of a spot, if the arc burns in vacuum, and massive melting of the cathode surface, if the arc burns in ambient gas. This conclusion conforms to trends observed in the experiment.
机译:通过模拟稳态条件下扰动时间的发展,已经研究了真空和环境气体中电弧阴极上固定点的稳定性。已经考虑了两种情况的负载情况,即以固定电流工作的点(小规模实验的典型情况)和以固定电压工作的点(大功率断路器的典型情况)。在真空电弧的大铜阴极上的斑点和高压氩弧的钨阴极上的斑点上报告了结果。特别表明,如果在小规模实验室实验中使用大电流电弧时的镇流电阻不足,则潜在的结果可能是斑点的热爆炸,如果电弧在真空中燃烧,并且电弧会大量熔化。如果电弧在环境气体中燃烧,则阴极表面。该结论符合实验中观察到的趋势。

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