DC surface flashover characteristics on polyimide under different temperature in vacuum

Zhenjun Zhang, Xiaoquan Zheng, Wenbin Wu, Pei Yang, Ping Peng
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引用次数: 2

Abstract

Researching the effects on different temperature of dc surface flashover characteristics on solid insulating dielectric in vacuum what can improve the reliability applied to complex environments. In this paper, we use the self-made polyimide (PI) sample as the object of study. The dc surface flashover characteristics at different temperatures (193-353K) are experimental studied, with theoretical analysis. It is found that the dc surface flashover voltage presented first decreased and then increased and finally decreased again with the increasing of temperature. The dc flashover voltage reached the maximum at 313K and minimum at 273K respectively. The experiments suggest that the electron emission near the cathode, the charge transport of dielectric insulators and the gas desorption are important reasons for the affecting of PI material dc flashover voltage as the temperature increased. Besides, the characteristics of the material itself also has important effects when the temperature varied.
真空中不同温度下聚酰亚胺直流表面闪络特性
研究不同温度对真空固体绝缘介质直流表面闪络特性的影响,提高其在复杂环境下的可靠性。本文以自制的聚酰亚胺(PI)样品为研究对象。实验研究了不同温度(193 ~ 353k)下直流表面闪络特性,并进行了理论分析。研究发现,随着温度的升高,直流表面闪络电压呈现先降低后升高再降低的趋势。直流闪络电压在313K时达到最大值,273K时达到最小值。实验表明,随着温度的升高,阴极附近的电子发射、介电绝缘体的电荷输运和气体的解吸是影响PI材料直流闪络电压的重要原因。此外,当温度变化时,材料本身的特性也有重要的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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