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Cathode Spots Dynamic in the Initial Expansion Stage of High-Current Triggered Vacuum Arc and the Influence of Axial Magnetic Field

机译:大电流触发真空电弧初期扩展过程中的阴极斑点动态及轴向磁场的影响

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摘要

Cathode spots (CSs) dynamics in the initial expansion stage of high-current triggered vacuum arc and the influence of axial magnetic field (AMF) was investigated experimentally. Experiments were conducted with butt contacts in a demountable vacuum chamber. Images of CSs were photographed with a high-speed digital camera with exposure time of 2 (mu ) s. The uniform and constant AMF in the intercontacts region was supplied by external magnetic field coil. In high-current triggered vacuum arc, CSs expanded across the cathode surface in basically a ring-shaped pattern. Experimental results showed that the expansion ring consisted of group CSs (GCSs) and individual CSs at the beginning of the expansion process. The GCS moved outward faster than individual CS. Research results indicated that an AMF could reduce the tendency of formation of GCS. The effect of local plasma and global plasma, which could be significantly influenced by AMF, on the motion pattern and distribution of CSs in the initial expansion stage was investigated.
机译:实验研究了大电流触发真空电弧初始扩展阶段的阴极斑点(CSs)动力学以及轴向磁场(AMF)的影响。在可拆卸的真空室中对接触点进行实验。 CS的图像用高速数码相机拍摄,曝光时间为2 (mu) s。接触区域内的均匀且恒定的AMF由外部磁场线圈提供。在大电流触发的真空电弧中,CS基本上呈环形分布在阴极表面上扩展。实验结果表明,在膨胀过程开始时,膨胀环由CS组(GCS)和单个CS组成。 GCS向外移动的速度比单个CS快。研究结果表明,AMF可以减少GCS的形成趋势。研究了可能受AMF影响的局部血浆和整体血浆对CSs在扩张初期的运动方式和分布的影响。

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