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DC vacuum arc voltage characteristics subjected to an external transverse rotating magnetic field

机译:外部横向旋转磁场作用下的直流真空电弧电压特性

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A well-known method of low voltage DC current interruption is to increase the arc voltage to exceed the electric source voltage. The objective of this paper is to experimentally determine DC vacuum arc voltage characteristics subjected to an external applied transverse rotating magnetic field. In the experiments, the DC arc current was in a range from 100A to 200A. A Transverse rotating magnetic field was generated by two pairs of crossed placed coils, and the phase angles of the alternating currents driving the two pairs of coils were shifted by 90°. The transverse magnetic flux density was in a range from 0-15mT by adjusting the currents in the coils. The frequency of the rotating transverse magnetic field was set as 800 Hz. The experimental results show that the DC vacuum arc voltage increased over a hundred Volts with applying the transverse rotating magnetic field in the first two runs of the tests. But the arc voltage did not increase in further tests, in which it increased only by 5-10V.
机译:低压直流电流中断的一种众所周知的方法是增加电弧电压以超过电源电压。本文的目的是通过实验确定在外部施加的横向旋转磁场作用下的直流真空电弧电压特性。在实验中,直流电弧电流在100A至200A的范围内。两对交叉放置的线圈产生了横向旋转磁场,驱动两对线圈的交流电的相角偏移了90°。通过调节线圈中的电流,横向磁通密度在0-15mT的范围内。旋转横向磁场的频率设定为800Hz。实验结果表明,在测试的前两次运行中,通过施加横向旋转磁场,直流真空电弧电压增加了一百伏。但是电弧电压在进一步的测试中并未增加,仅增加了5-10V。

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