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Process Of Arc Moving Affected By External Magnetic Field In Magnetic Driven Arc

机译:磁驱动电弧中外磁场影响电弧运动的过程

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Magnetic driven arc has been applied to DC breaker and fault current limiters. However, it has not been researched, especially stagnation and re-strike of the arc. In this paper, the process of arc moving affected by external magnetic field in magnetic driven arc is elucidated. Specifically, the behavior of magnetic driven arc with external magnetic field is measured by using the oscilloscope and HSVC (High Speed Video Camera). And an external magnetic field (1, 2, 3 mT) was applied by helmholtz coil. As a result, the arc mean moving speed increases with increasing the external magnetic field. The arc of re-strike time increases and stalemate time decreases with increasing the external magnetic field. Therefore, the anode spot moving speed increases 8 times because arc of re-strike occurs easily with the external magnetic field. Thus, the erosion of electrodes decreases and the arc moving becomes the smooth. However, the distance of re-strike decreases with increasing the external magnetic field because re-strike point is affected by cathode jet. The anode restrikes on the extension of the cathode jet. Therefore, the direction of cathode jet contributes to the process of arc moving.
机译:电磁电弧已应用于直流断路器和故障电流限制器。但是,尚未对其进行研究,尤其是电弧的停滞和重新击打。阐明了电磁驱动电弧中外部磁场对电弧运动的影响。具体地,通过使用示波器和HSVC(高速摄像机)来测量具有外部磁场的磁驱动电弧的行为。然后通过亥姆霍兹线圈施加一个外部磁场(1、2、3 mT)。结果,电弧平均移动速度随着外部磁场的增加而增加。随着外部磁场的增加,重击时间的弧度增加,僵持时间减少。因此,阳极点的移动速度增加了8倍,因为在外部磁场的作用下很容易产生重击电弧。因此,电极的腐蚀减小,电弧运动变得平滑。但是,重击距离随着外部磁场的增加而减小,因为重击点受阴极射流的影响。阳极在阴极射流的延伸上重新撞击。因此,阴极射流的方向有助于电弧运动的过程。

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