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Influence of Axial Magnetic Field on the Anode Liquid Swirl Flow in High-Current Vacuum Arcs

机译:轴向磁场对大电流真空电弧中阳极液体涡流的影响

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摘要

The anode melting in high-current vacuum arcs leads to the increase of metal vapor and liquid droplets around current zero and even the interruption failure. In our recent experiments of the cup-shaped axial magnetic field (AMF) contacts, an obvious clockwise swirl flow of the liquid copper was detected on the anode surface. However, if an additional external AMF which is reverse to the AMF generated by the contacts was introduced, the rotation direction of the liquid copper swirl flow on the anode surface could reverse to anticlockwise. These phenomena indicate that AMF has great influence on the performance of anode melting and its swirl flow.
机译:大电流真空电弧中的阳极熔化会导致电流零附近的金属蒸气和液滴增加,甚至中断故障。在我们最近的杯形轴向磁场(AMF)接触实验中,在阳极表面检测到液态铜有明显的顺时针旋流。但是,如果引入一个与触点产生的AMF相反的外部AMF,则阳极表面上液态铜旋流的旋转方向可能会逆时针反向。这些现象表明,AMF对阳极熔化的性能及其旋流有很大的影响。

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