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Investigation on the Inclination of Cathode Plasma Jets in High-Current Vacuum Arcs in Magnetic Field

机译:磁场中大电流真空电弧中阴极等离子体射流的倾斜度研究

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摘要

The theoretical and experimental studies of cathode plasma jets in vacuum arc and the effect of magnetic field on them have been under way for several years. In this paper, different axial magnetic field electrodes were tested in a vacuum chamber, obvious individual cathode plasma jets were observed, and the cathode-jet inclination was also detected. Based on the numerical calculation of magnetic field in interelectrode region and the measurement of cathode-jet inclination in experimental results, it is proven that the inclination angle of composite magnetic field (the combination of the axial, the azimuthal, and the radial components) is consistent with the inclination angle of cathode plasma jets, which indicates that the cathode plasma jets in the arc column flow along the magnetic-field direction when the high-current vacuum arc is diffused or even constricted slightly. Meanwhile, it was also found that plasma jets far from the cathode surface mixed with each other and became ambiguous when the electrode gap increases to a certain distance.
机译:真空电弧中阴极等离子体射流的理论和实验研究以及磁场对其的影响已经进行了数年。本文在真空室中测试了不同的轴向磁场电极,观察到明显的单个阴极等离子体射流,并且还检测了阴极射流倾斜度。根据电极间区域磁场的数值计算和实验结果中阴极射流倾角的测量,证明了复合磁场的倾角(轴向分量,方位角分量和径向分量的组合)为与阴极等离子体射流的倾斜角一致,这表明当大电流真空电弧扩散甚至略微收缩时,电弧柱中的阴极等离子体射流沿着磁场方向流动。同时,还发现当电极间隙增加到一定距离时,远离阴极表面的等离子体射流彼此混合并且变得模糊。

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