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Transient charging for impulse surface flashover development in vacuum

机译:真空脉冲表面闪络开发的瞬态充电

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Surface discharge on solid insulator in vacuum is one of the significant issues in the development of vacuum circuit breakers and vacuum interrupters. By measuring induced current in electrostatic probes behind alumina dielectrics due to explosive electron emission (EEE) at surface flashover inception, we studied transiently formed charge characteristics on the alumina dielectrics in the development process of surface flashover. From experimental results, we found that EEE affects the flashover development through two effects of the transient charge: one is the suppression of the EEE current by the relaxation of the electric field below the cathode, the other is promotion of the secondary electron emission avalanche. In the latter effects, because of negative charge on the alumina dielectrics below the cathode, the secondary electron can fly longer along the alumina surface. As a result, the current channel on the alumina dielectrics is formed more easily.
机译:真空中固体绝缘体上的表面放电是真空断路器和真空中断器开发中的重要问题之一。通过在表面闪光型从爆炸电子发射(EEE)上测量氧化铝电介质的静电探针中的诱导电流,我们在表面闪过透过的开发过程中研究了氧化铝电介质的瞬时形成的电荷特性。从实验结果中,我们发现EEE通过瞬态电荷的两个效果影响闪络开发:一个是通过在阴极下方放松的电场抑制EEE电流,另一个是促进二次电子发射雪崩。在后一种效果中,由于阴极下方的氧化铝电介质上的负电荷,二次电子可以沿氧化铝表面飞行更长。结果,更容易形成氧化铝电介质上的电流通道。

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