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Experimental investigation of influence of a contact separation time on the breaking capacity of a vacuum circuit breaker

机译:接触分离时间对真空断路器断裂能力的实验研究

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In the present work, influence of the beginning of the contact opening of the vacuum circuit breaker on the main characteristics of the discharge and the breaking capacity of the breaker is studied. In the experiment, Cu-Cr bulk electrodes with a diameter of twenty millimeters were used. Synthetic circuit generated a half-sinusoidal current with duration of 10 ms and amplitude of 10 kA, followed by the transient recovery voltage with amplitude of 30 kV. The velocity of a movable electrode was close to 1.35 m/s. In the experiment, only the beginning of movement of electrode was changeable. All other parameters were fixed. Traces of arc voltage, post-arc current, Langmuir probe current, as well as images of the arcing gap were recorded and analyzed. The earlier electrode starts moving, the longer both time interval at arc operation and interelectrode gap distance during the arc. With this, radial contraction of the arc column is amplified, arc voltage increases, thermal energy dissipated in the anode increases also, and the breaking capacity goes down.
机译:在本作工作中,研究了真空断路器的接触开口的开始对排出的主要特性以及断路器的断裂容量的影响。在实验中,使用直径二十毫米的Cu-Cr散装电极。合成电路产生的半正弦电流,持续时间为10ms和10ka的幅度,然后具有30kV的振幅的瞬态恢复电压。可动电极的速度接近1.35米/秒。在实验中,电极运动的开始是可变的。所有其他参数都是固定的。记录和分析电弧电压,电弧电流,隆起电流,Langmuir探针电流的迹线,以及电弧差距的图像。较早的电极开始移动,电弧操作的时间间隔越长,电弧期间的电极间隙距离。由此,放大电弧塔的径向收缩,电弧电压增加,在阳极中散发的热能也增加,并且断裂能力下降。

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