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The Combined Influence of Contact Gap and Axial Magnetic Field on the Expansion Speed of Cathode Spots in High-Current Triggered Vacuum Arc

机译:接触间隙和轴向磁场对大电流触发真空电弧阴极点扩展速度的综合影响

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摘要

The expansion speed of cathode spots (CSs) in the initial expansion stage of high-current triggered vacuum arc 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 $mu{rm s}$. The uniform constant axial magnetic field (AMF) was supplied by an external magnetic field coil. The combined influence of contact gap of 2–10 mm and AMF of 0–70 mT on CSs expansion speed in the initial expansion stage was mainly investigated. Investigation results indicated that the variation of contact gap could influence the CSs expansion speed by changing the plasma density inside the cathode arc root in two ways: loss of arc plasma and constriction of arc column. AMF could weaken these two effects caused by the variation of contact gap. In addition, experimental results indicated that there existed a critical current for a given AMF. If the arc current peak was less than the critical current, the given AMF could inhibit the arc column constriction effectively both at contact gap of 8 and 10 mm, which could maintain the dependence that CSs expansion speed increased with contact gap; otherwise, the constriction of arc column played a major role in the influence on CSs expansion speed. In this case, the CSs expansion speed was lower at contact gap of 10 mm than that at 8 mm.
机译:实验研究了大电流触发真空电弧初始膨胀阶段阴极斑点(CSs)的膨胀速度。在可拆卸的真空室中对接触点进行实验。 CS的图像是用高速数码相机拍摄的,曝光时间为2 mu。均匀的恒定轴向磁场(AMF)由外部磁场线圈提供。主要研究了接触间隙2–10 mm和AMF 0–70 mT在初始膨胀阶段对CS膨胀速度的综合影响。研究结果表明,接触间隙的变化可以通过两种方式改变阴极电弧根内部的等离子体密度来影响CS的膨胀速度:电弧等离子体的损失和电弧柱的收缩。 AMF可以减弱由接触间隙变化引起的这两种影响。此外,实验结果表明,对于给定的AMF,存在临界电流。如果电弧电流峰值小于临界电流,则给定的AMF可以在8和10 mm的接触间隙处有效抑制电弧柱收缩,这可以保持CSs膨胀速度随接触间隙增加的依赖性。否则,弧形柱的收缩对CS扩展速度的影响很大。在这种情况下,CSs的膨胀速度在接触间隙为10 mm时比在8 mm时要低。

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