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Discharge formation processes and glow-to-arc transition in pseudospark switch

机译:伪火花开关中的放电形成过程和辉光到电弧过渡

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摘要

Deals with an interpretation of the current sustaining mechanisms at different stages of the high-current low pressure pulsed gas discharge with hollow cathode (pseudospark discharge). The analysis of experimental data for the stage of delay time to breakdown and the subsequent stages is presented. The principal features of glow stages are interpreted in the framework of the concept of nonmonotonic potential distribution in the near cathode regions. It is shown that in spite of extremely high current density the main fraction of the discharge current at the cathode surface is carried by the ion component. In the superdense glow stage the ion current is provided due to numerous microexplosions of the cathode surface, ionization of the metal vapor inside the cathode voltage drop region, and returning the metal vapor back to the cathode in a form of ions. The glow mode in this case is determined by a uniform distribution of the explosion centers over the cathode.
机译:对带有空心阴极的高电流低压脉冲气体放电(伪火花放电)的不同阶段的电流维持机理进行了解释。给出了故障击穿延迟阶段和后续阶段的实验数据分析。辉光阶段的主要特征是在阴极附近区域的非单调电位分布概念的框架内进行解释的。结果表明,尽管电流密度极高,但阴极表面放电电流的主要部分仍由离子成分承载。在高密度辉光阶段,由于阴极表面的大量微爆炸,阴极电压降区域内的金属蒸气的电离,以及金属蒸气以离子形式返回阴极,因此提供了离子电流。在这种情况下,辉光模式由爆炸中心在阴极上的均匀分布确定。

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