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Effect of positive DC corona discharge intensity on the variation of conductor surface conditions under contaminated environment

机译:直流正电晕放电强度对受污染环境中导体表面条件变化的影响

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In order to study the effect of positive DC corona discharge intensity on the variation of conductors' surface conditions, an artificial contamination system was developed to perform contamination experiments. The conductor in the experiments was applied to different DC voltages. Scanning electron microscopy (SEM) and energy-dispersive X-ray (EDX) analysis were employed to characterize the surface morphologies and compositions of the conductors respectively. In this paper, the charging properties of the suspended particles in the ionized field were analyzed. The ionization intensity ξ was calculated to represent corona discharge intensity. The relationship between the ionization intensity ξ and a parameter related to the conductor surface conditions was also established.
机译:为了研究正直流电晕放电强度对导体表面条件变化的影响,开发了一种人工污染系统来进行污染实验。实验中的导体被施加到不同的直流电压。使用扫描电子显微镜(SEM)和能量色散X射线(EDX)分析分别表征导体的表面形态和组成。本文分析了电离场中悬浮粒子的带电特性。计算出电离强度ξ以表示电晕放电强度。还建立了电离强度ξ和与导体表面条件有关的参数之间的关系。

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