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Effect of electrode surface roughness on breakdown conditioning under non-uniform electric field in vacuum

机译:真空中非均匀电场下电极表面粗糙度对击穿条件的影响

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摘要

Breakdown (BD) characteristics in vacuum are strongly dependent on the electrode surface conditions, such as surface roughness. However, there is little known concerning the details of the relationship between the surface roughness and BD conditioning effect. In practical application, it is important to clarify how the surface roughness affects the breakdown conditioning characteristics, especially for the non-uniform field configuration. This paper discusses the effect of surface roughness on breakdown conditioning characteristics under non-uniform electric field in vacuum under applications of negative standard lightning impulse voltage. For this purpose, we examined the BD conditioning of a rod-to-plane electrode made of SUS304 and Cu-Cr. The surface roughness of Ra is controlled from 0.3 to 2.5 mum. Experimental results revealed that the enhancement of surface roughness of electrodes increases the number of BD to complete the conditioning effect. We explained the results from the observed results of the electrode surface. Consequently, we could clarify the effect of surface roughness on the conditioning effect under non-uniform electric field in vacuum quantitatively.
机译:真空中的击穿(BD)特性在很大程度上取决于电极表面条件,例如表面粗糙度。然而,关于表面粗糙度和BD调节效果之间的关系的细节鲜为人知。在实际应用中,弄清表面粗糙度如何影响击穿条件特性非常重要,尤其是对于非均匀场配置。本文讨论了在负标准雷电冲击电压作用下,真空中非均匀电场下表面粗糙度对击穿条件的影响。为此,我们检查了由SUS304和Cu-Cr制成的棒对平面电极的BD调节。 Ra的表面粗糙度控制在0.3至2.5μm。实验结果表明,电极表面粗糙度的增加增加了BD的数量,从而完成了调节作用。我们从电极表面的观察结果解释了结果。因此,我们可以定量地阐明在真空中非均匀电场下表面粗糙度对调理效果的影响。

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