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A mechanism transition between two consecutive breakdowns at short rod-plane vacuum gap

机译:杆平面真空间隙短时两次连续击穿之间的机理转变

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The objective of this paper is to propose a mechanism transition between two consecutive breakdowns at short rod-plane vacuum gap. A rod-plane vacuum gap is designed in a vacuum interrupter. A 50Hz power frequency voltage is applied across the vacuum interrupter to measure the pre-breakdown field emission current. A compensation algorithm removes the displacement current from the measured current and then only field emission current left. The voltage and field emission current fit the Fowler-Nordheim theory and two parameters β value and effective emission area can be obtained. Three vacuum interrupters are applied the power frequency voltage twice and two consecutive breakdowns happen. The experimental results show that: The first breakdown (BD) voltages of the three vacuum interrupters are 49.5 kV, 44.7 kV, 41.1kV (peak value), and the β value are 260,219, 257 respectively. The second breakdown (BD) voltages of the three vacuum interrupters are 51.5 kV, 48.3 kV, 44.1kV (peak value) but pre-breakdown currents β values and effective emission area are too low to be determined. Thus a mechanism transition between the two consecutive breakdowns in a short rod-plane vacuum gap are suggested as follows: field emission current induced breakdown and particle induced breakdown both exist at 1mm vacuum gap. The first breakdown is induced by field emission current and the second breakdown is induced by particles.
机译:本文的目的是提出在短杆平面真空间隙下两次连续击穿之间的机理转换。在真空灭弧室中设计了杆平面真空间隙。在真空灭弧室两端施加一个50Hz的工频电压,以测量击穿前的场发射电流。补偿算法从测得的电流中去除位移电流,然后仅剩下场发射电流。电压和场发射电流符合Fowler-Nordheim理论,可以获得两个参数β值和有效发射面积。向三个真空灭弧室施加两次工频电压,然后连续发生两次故障。实验结果表明:三个真空灭弧室的第一击穿电压(BD)分别为49.5 kV,44.7 kV,41.1kV(峰值),β值分别为260,219和257。三个真空灭弧室的第二击穿电压(BD)为51.5 kV,48.3 kV,44.1kV(峰值),但击穿前电流β值和有效发射面积太低,无法确定。因此,建议在短杆平面真空间隙中两次连续击穿之间的机理转变:场发射电流引起的击穿和粒子引起的击穿都存在于1mm的真空间隙中。第一次击穿是由场发射电流引起的,第二次击穿是由颗粒引起的。

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