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Experimental Investigation of Anode Activities in High-Current Vacuum Arcs

机译:大电流真空电弧中阳极活性的实验研究

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It is well known that the melting of electrodes (mainly anode melting) in vacuum arc can increase the metal vapor density around current zero and even lead to interruption failure. In order to clarify the anode activities and their influence on arc appearance and interruption capacity, series experiments of cup-shaped axial magnetic field copper electrodes were conducted. Obvious anode melting was detected; the liquid copper flowed on the contact plate of anode and formed a clockwise swirl flow. The appearance of anode melting is likely to correlate to the transition of arc mode from high-current diffuse mode to high-current diffuse column mode. The melting of anode was severer than cathode and was influenced by the distribution of cathode spots. Various kinds of copper particles at macroscopic level can be seen in arc column. Even at the interruption limit, the majority of melted copper of anode sputtered out of gap in form of liquid droplets or was pressed into the cup of anode, the copper vapor evaporated into arc column only accounted for a few portion and no obvious anode jets was found due to large plasma pressure in arc column.
机译:众所周知,真空电弧中的电极熔化(主要是阳极熔化)会增加电流零附近的金属蒸气密度,甚至导致中断故障。为了阐明阳极活性及其对电弧外观和中断能力的影响,进行了杯形轴向磁场铜电极的系列实验。检测到明显的阳极熔化;液态铜在阳极的接触板上流动并形成顺时针旋流。阳极熔化的出现可能与电弧模式从高电流扩散模式到高电流扩散柱模式的转变有关。阳极的熔化比阴极严重,并且受阴极斑点分布的影响。在电弧柱中可以看到各种宏观水平的铜颗粒。即使在中断极限,阳极的大部分熔融铜也会以液滴的形式从间隙中喷出或压入到阳极杯中,蒸发到电弧塔中的铜蒸气仅占少数,并且没有明显的阳极射流。发现是由于电弧塔中的等离子压力大。

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