Relationship between Morphology Feature of Contact Surfaces and Impulse Breakdown Voltage in Vacuum Gap under a Non-uniform Electric Field

Guoqin Li, Hui Ma, Jian’gang Ding, Zhiyuan Liu, Jianhua Wang, Yingsan Geng
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Abstract

Morphology feature of contact surfaces plays an important role in the impulse breakdown voltage of vacuum gaps. However, surface roughness Ra can’t describe the morphology feature of contact surfaces effectively. Fractal geometry is an effective way to describe the irregular phenomenon of the feature of the contact surfaces in nature. The objective of this paper is to research the relationship between the morphology feature of contact surfaces and the lighting impulse breakdown voltage in vacuum gap under a non-uniform electric field with rod-plane contacts. A surface roughness Ra and a fractal dimension D were used to feature the contact surfaces morphology. In experiments, the material of the rod-plane contacts was Cu. The lighting impulse insulation characteristics of the vacuum gaps were obtained by using up-down method. The morphology features of the contact surfaces were observed by a 3D laser microscopy. The structure function method was used to estimate the fractal dimension D of the contact surfaces. The results indicate that the initial morphology feature of the contact surfaces had little effect on the impulse breakdown voltage of the vacuum gap. For one certain material, it was found that the tip surface of the cathode rod contact has the same fractal dimension D. The 50% impulse breakdown voltage U50 decreased with the increase of the rod tip surface roughness Ra after conditioning. Moreover, this relationship satisfied an approximate power law function. The research can help to understand and improve the insulation of the vacuum interrupters.
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非均匀电场作用下真空间隙接触面形貌特征与脉冲击穿电压的关系
接触面的形貌特征对真空间隙的脉冲击穿电压有重要影响。然而,表面粗糙度Ra不能有效地描述接触面的形貌特征。分形几何是描述自然界中接触面特征的不规则现象的有效方法。本文的目的是研究在非均匀电场条件下具有棒面接触的真空间隙中接触面形貌特征与光脉冲击穿电压之间的关系。用表面粗糙度Ra和分形维数D来表征接触面形貌。在实验中,棒面接触的材料为Cu。采用上下法对真空间隙的绝缘特性进行了分析。用三维激光显微镜观察了接触表面的形貌特征。采用结构函数法估计接触面的分形维数D。结果表明,接触表面的初始形貌特征对真空间隙的脉冲击穿电压影响不大。对于某一材料,发现阴极棒接触尖端表面具有相同的分形维数d, 50%脉冲击穿电压U50随着调节后棒尖端表面粗糙度Ra的增加而降低。而且,这种关系满足近似幂律函数。研究有助于理解和提高真空灭弧器的绝缘性能。
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