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Inrush Current Arc Characteristics In Vacuum Interrupters With Axial Magnetic Field Contact And Butt-Type Contact

机译:浪涌电流电弧特性在真空中断器中,具有轴向磁场接触和对接型接触

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In the case of switching back-to-back capacitor banks, there will be inrush current while closing the circuits which will damage the contact surface of vacuum interrupters (VIs). The objective of this paper is to investigate the characteristics of the prestrike arc under the influence of axial magnetic field with different amplitudes of inrush current. Two groups of VIs with a rated voltage of 12kV and glass insulating shell have been tested while the metal shield in VIs has been removed. The prestrike arc is videoed by a high speed CCD. The contact travel, the voltage and current value of the prestrike arc are also measured and recorded with an oscilloscope. The experimental results may indicate the reason for the damage to contacts of VIs caused by prestrike arc. For the cup-type AMF contacts, when the inrush current is 5kA-10kA, slots on the contacts has a significant impact on the prestrike arc. It could make the electric field distribution much more nonuniform than that of the butt-type contact. When the inrush current become stronger, especially in 20kA, the axial magnetic field plays a major role. The prestrike arc is diffused for the most of time, and the contact surfaces are less damaged.
机译:在切换背对背电容器组的情况下,在关闭电路的同时会有浪涌电流,这将损坏真空中断器的接触表面(VI)。本文的目的是研究轴向磁场对不同浪涌电流幅度的影响下的预克斯弧的特性。在VI中的金属屏蔽被移除时,已经测试了两组具有12kV和玻璃绝缘壳的额定电压。 Prestice Arc通过高速CCD进行视频。普通电弧的接触行程,电压和电流值也用示波器记录并记录。实验结果可能表明了普通弧弧引起的Vis接触损伤的原因。对于杯式AMF触点,当浪涌电流为5kA-10KA时,触点上的槽对PRSTRICT弧产生显着影响。它可以使电场分布远比对接型接触更加非均匀。当浪涌电流变得更强时,特别是在20KA中,轴向磁场起到了重要作用。普通电弧在大部分时间上被扩散,并且接触表面损坏较小。

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