Long-delayed breakdown in vacuum gaps under DC pulses

E. Dullni
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引用次数: 14

Abstract

Concerning HV insulation in vacuum, there is still some uncertainty about the processes leading to breakdown, especially in the case of long time lags and large contact spacing. The present measurements show that mechanical shocks cause breakdown of the gap. Breakdown probability is highest for virgin contacts and decreases after heavy arcing. The role of nonmetallic inclusions and organic impurities is highlighted. In comparison with a demountable vacuum device industrial vacuum interrupters do not show any sensitivity to mechanical shocks. Besides breakdown probabilities and time lags, the temporal development of voltage and current during breakdown was measured. For a contact spacing of >14 mm and for breakdown sites located on the side face of the contacts, HV discharges were observed lasting for approximately 500 mu s. In this case, current is limited by a negative space charge layer in front of the anode. >
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直流脉冲作用下真空间隙的长延时击穿
高压绝缘在真空环境下的击穿过程仍然存在一定的不确定性,特别是在长滞后和大接触间距的情况下。目前的测量表明,机械冲击会导致间隙破裂。初次接触击穿的概率最高,在强电弧后击穿概率降低。强调了非金属夹杂物和有机杂质的作用。与可拆卸真空装置相比,工业真空断路器对机械冲击没有任何敏感性。除了击穿概率和时间滞后外,还测量了击穿过程中电压和电流的随时间变化。对于触点间距>14 mm和击穿点位于触点侧面的情况,观察到高压放电持续约500 μ s。在这种情况下,电流受到阳极前方负空间电荷层的限制。>
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