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首页> 外文期刊>IEEE Transactions on Plasma Science >Parametric Study of the Current–Voltage Characteristics of a 100-mbar DC Discharge in Argon: From the Diffuse Glow Discharge to the Arc Regime
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Parametric Study of the Current–Voltage Characteristics of a 100-mbar DC Discharge in Argon: From the Diffuse Glow Discharge to the Arc Regime

机译:氩气中100毫巴直流放电电流-电压特性的参数研究:从扩散辉光放电到电弧状态

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摘要

The aim of this paper is to investigate the glow discharge in its diffuse and filamentary regime, and to study its transition to arc in argon at 100 mbar. The structure of the discharge is observed in correlation with its electrical signals in both static and in dynamic modes. Glow discharges were identified with a positive column that can be fully diffuse, fully filamentary, or a mix of the two with the filamentary part of the column always attached to the anode. Spontaneous transitions between glow discharges and arcs have also been observed and their dynamics are studied. Using high-speed imaging, the transition between glow and arc discharge was identified as the occurrence of two distinct phenomena: a propagation mechanism in the positive column and a constriction of the cathode root. An evaluation of the duration of each phenomenon as a function of electrode gap and current intensity was obtained. The duration of the constriction of the cathode root is found to be on the order of tens of nanoseconds and the duration of the propagation mechanism in the range 50–550 ns.
机译:本文的目的是研究辉光在其扩散和丝状状态下的放电,并研究其在100 mbar时在氩气中向电弧的转变。在静态和动态模式下都可以观察到放电的结构与其电信号的相关性。辉光放电是通过正极色谱柱确定的,正极色谱柱可以完全扩散,完全呈丝状或两者混合,且色谱柱的丝状部分始终与阳极相连。还观察到辉光放电和电弧之间的自发转变,并研究了它们的动力学。使用高速成像,辉光和电弧放电之间的过渡被确认为发生了两种不同的现象:正极柱中的传播机制和阴极根部的收缩。获得了每种现象的持续时间与电极间隙和电流强度的函数关系的评估。发现阴极根收缩的持续时间约为数十纳秒,传播机制的持续时间在50-550 ns范围内。

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