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Method to determine rotation velocity of constricted vacuum arcs driven by transverse magnetic field

机译:确定横向磁场驱动的收缩真空弧的旋转速度的方法

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The objective of this paper is to propose a new method to quantitatively determine the arcing rotation velocity of the constricted vacuum arc driven by a transverse magnetic field (TMF). This method is based on a split anode and TMF cathode configuration system. Experiments were set in a demountable vacuum chamber. Both electrodes have a contact diameter of 60 mm. The anode surface was divided into four regions: one central region (Area I) and three symmetrically peripheral annular regions (Area II, III and IV). The currents of the four areas on the anode contact were measured using four Rogowski coils situated outside the vacuum chamber. The observed arc modes were recorded by a high-speed CCD video camera. The rotation velocity of the constricted arc column is calculated from the arc current waveforms of the four split areas. The experimental results indicate that the maximum speed is approximately 471 m/s with the arc current of 16 kA rms. The results also reveal the corresponding anode current distribution characteristics under TMF in different arc stages during the arcing time.
机译:本文的目的是提出一种新方法,以定量地确定由横向磁场(TMF)驱动的收缩真空电弧的电弧旋转速度。该方法基于分割阳极和TMF阴极配置系统。实验设置在可拆卸的真空室中。两个电极的接触直径为60mm。将阳极表面分成四个区域:一个中心区域(区域I)和三个对称周边环形区域(区域II,III和IV)。使用位于真空室外部的四个rogowski线圈测量阳极接触上的四个区域的电流。观察到的电弧模式由高速CCD摄像机记录。收缩弧柱的旋转速度由四个分裂区域的电弧电流波形计算。实验结果表明,最大速度约为471米/秒,电弧电流为16ka rms。结果还揭示了电弧时间在不同电弧阶段的TMF下的相应阳极电流分布特性。

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