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首页> 外文期刊>IEEE Transactions on Plasma Science >Over recovery in low pressure spark gaps-confirmation of pressure reduction in over recovery
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Over recovery in low pressure spark gaps-confirmation of pressure reduction in over recovery

机译:低压火花隙中的过度恢复-确认过度恢复时压力降低

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The over recovery in sparkgaps (Nagesh, 1997, Nagesh et al., 1999) operating along the left-hand side of Paschens' characteristics is due to pressure reduction in the gap after the first pulse discharge. This pressure reduction leading to over recovery in low pressure spark gaps has been verified using a low pressure spark gap with two spark gaps placed one above the other in the same chamber. The breakdown voltage strength characteristics of the second gap has been determined for gap spacings of 3.5 mm to 10 mm, diffusion of plasma in the direction of vacuum pumping and opposite, at a pressure of 2.1 Pa for hydrogen gas. The vacuum pumping direction has a great influence on the breakdown strength characteristics of second gap after the first gap discharge. The breakdown voltage of the second gap can exceed its self breakdown voltage only 1) when the diffusion of plasma and vacuum pumping direction are same and 2) when the second gap spacing is greater than or equal to first gap spacing. Shorter gaps can always have breakdown voltage lower than or equal to their self breakdown voltage. The experimental setups, behavior of self breakdown voltages of second gap due to breakdown in the first gap, over recovery characteristics of spark gaps, the results, and discussions are presented here.
机译:沿Paschens特征左侧运行的火花隙的过度恢复(Nagesh,1997; Nagesh等,1999)是由于第一次脉冲放电后间隙中的压力降低。导致低压火花隙过度恢复的压力降低已通过使用低压火花隙进行了验证,其中两个火花隙在同一腔室中一个位于另一个上方。对于3.5mm至10mm的间隙间距,在真空泵方向上等离子体的扩散和相反的,氢气的压力为2.1Pa,已经确定了第二间隙的击穿电压强度特性。真空泵送方向对第一间隙放电后第二间隙的击穿强度特性有很大影响。第二间隙的击穿电压仅在以下情况下可以超过其自击穿电压:1)当等离子体的扩散方向和真空泵浦方向相同时,以及2)当第二间隙间隔大于或等于第一间隙间隔时。较小的间隙始终可以使击穿电压低于或等于其自击穿电压。实验设置,第二间隙的自击穿电压由于第一间隙中的击穿,火花间隙的过恢复特性,结果和讨论在此处进行了介绍。

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