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首页> 外文期刊>Plasma Science & Technology >Experimental Investigation on the Influence of Axial Magnetic Field Distribution on Resisting the Constriction of a High-Current Vacuum Arc
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Experimental Investigation on the Influence of Axial Magnetic Field Distribution on Resisting the Constriction of a High-Current Vacuum Arc

机译:轴向磁场分布对抵抗大电流真空电弧收缩的影响的实验研究

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摘要

Effect of the axial magnetic field (AMF) on resisting the constriction of a high-current vacuum arc is studied in this paper. Two typical AMF distributions were investigated, i.e., the traditional bell-shaped AMF, and the saddle-shaped AMF. Experiments were conducted in a detachable vacuum chamber with a rms arc current in the range of 10 kA to 25 kA. The arc column was photographed by a high-speed digital camera with an exposure time of 2 microseconds. The constriction of the vacuum arc was compared by processing the images of the arc column under the two different field configurations and numerically determining the dimensions of the arc column near the electrodes. It was also confirmed that the AMF distribution had a significant influence on its effectiveness in resisting arc constriction. Furthermore, the AMF strength near the periphery of the arc is more influential than that at the centre of the electrodes in resisting arc constriction.
机译:本文研究了轴向磁场(AMF)对抵抗大电流真空电弧收缩的影响。研究了两种典型的AMF分布,即传统的钟形AMF和鞍形AMF。实验是在可拆卸的真空室中进行的,均方根电弧电流为10 kA至25 kA。弧形柱由高速数码相机拍摄,曝光时间为2微秒。通过处理两种不同场配置下的电弧柱图像并通过数值确定电极附近电弧柱的尺寸来比较真空电弧的收缩程度。还证实了AMF分布对其抵抗电弧收缩的有效性有重要影响。此外,在电弧的周围,AMF强度比在电极的中心处的AMF强度更能抵抗电弧收缩。

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