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Luminescence characteristics before flashover across alumina ceramic under steady voltage in vacuum

机译:真空恒压下氧化铝陶瓷闪蒸前的发光特性

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The surface flashover issue has always been a hot topic in the insulation field and it has been reported that various luminescent phenomena occur before flashover under a high electrical field in vacuum, which are closely related to the behavior of charge carriers induced by discharge. However, it is still not so clearly about the intrinsic relationship between the luminescence phenomenon and the mechanism of flashover. This paper studies the luminescence on alumina ceramic under DC and AC excitation in vacuum, and the results show that under a relatively low voltage, the electroluminescence phenomenon on sample surface will be caused by radiative electron-hole recombination following charge injection. The luminescence intensity and spatial distributions for DC and AC voltage are obviously distinctive with each other due to the quite different recombination process. However, when it comes to a relatively higher voltage, making it possible for electrons to release from cathode triple junction due to field-enhanced emission, the cathode-like luminescence process will dominate, which is generated by a self-stabilizing secondary electron emission process and subsequent collision on insulator surface. This study might be helpful to comprehensively reveal the luminescence phenomenon regarding surface flashover.
机译:表面闪络问题一直是绝缘领域的热门话题,据报道,在真空高电场下闪络之前会发生各种发光现象,这与放电引起的电荷载流子的行为密切相关。然而,关于发光现象和闪络机理之间的内在联系还不是很清楚。本文研究了在真空下直流和交流激励下氧化铝陶瓷的发光,结果表明,在相对较低的电压下,样品表面的电致发光现象将由电荷注入后的辐射电子-空穴复合引起。直流和交流电压的发光强度和空间分布由于重组过程的不同而彼此明显不同。但是,当电压相对较高时,由于场增强的发射,使得电子有可能从阴极三重结释放,阴极状的发光过程将占主导地位,这是由自稳定的二次电子发射过程产生的并随后在绝缘子表面发生碰撞。这项研究可能有助于全面揭示有关表面闪络的发光现象。

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