Reciprocating motion of magnetically driven arcs in air at low critical atmospheric pressure

Chang Li-chun, Yan Wei
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引用次数: 2

Abstract

Using high-speed photography and an optical-fiber microcomputer system, a series of experimental investigations were performed on the motion of DC short arcs in a transverse magnetic field in air at low critical atmospheric pressure. It is shown that the cold cathode arc runs a long distance forward (ampere's direction) and backward (retrograde direction) without stop. This phenomenon is called reciprocating motion. The reciprocating motion appears to be of three types: reciprocating motion at high speed, motion at low speed, and motion forward and backward at greatly differing speeds. However, the reciprocating or retrograde phenomenon on hot cathode material has not yet been observed. A model of cathode jets for the arc motion has been developed that can fairly well explain the arc motion direction change and the reciprocating phenomenon.<>
低临界大气压下空气中磁驱动电弧的往复运动
利用高速摄影技术和光纤微机系统,对低临界大气压下空气中横向磁场中直流短弧的运动进行了一系列实验研究。结果表明,冷阴极电弧向前(安培方向)和向后(逆行方向)连续运行很长一段距离。这种现象称为往复运动。往复运动表现为三种类型:高速往复运动、低速往复运动和速度相差很大的前后往复运动。然而,热阴极材料的往复或逆行现象尚未被观察到。建立了电弧运动的阴极射流模型,较好地解释了电弧运动方向的变化和往复现象。
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