颗粒尺寸对表面电荷表征的李希滕贝格图技术的影响

Zhijie Shi, W. Wang, K. Han, Yuanyuan Li, Jiancheng Song, Z. Lei
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引用次数: 0

摘要

利希滕贝格图技术是一种可以直接观察绝缘材料表面电荷分布的方法。它广泛应用于气固界面电荷的观察和放电机理的研究。采用针板电极对聚酰亚胺薄膜进行电晕充电。选取不同粒径的粉尘,研究了粒径对李希滕贝格图表面电荷测量空间分辨率的影响。为了验证粉尘是否影响绝缘表面的原始电荷分布,构建了表面电位测量系统。结果表明,随着粉尘粒径的减小,利希滕贝格图的精度得到提高,通过改进测试方法可以减小粉尘对原始电荷分布的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of particle size on Lichtenberg Figure technique for surface charge characterization
The Lichtenberg Figure technique is a method that can directly observe the surface charge distribution of the insulating material. It is widely used in the observation of the charge at the gas-solid interface and the study of the discharge mechanism. A needle-plate electrode was used to corona charge the polyimide film. The influence of the particle size on the spatial resolution of the surface charge measurement presented by the Lichtenberg Figure was studied by selecting dust of different particle sizes. A surface potential measurement system was constructed for verifying whether the dust affects the original charge distribution on the insulating surface. The results show that as the particle size of the dust becomes smaller, the accuracy of the Lichtenberg Figure is improved, and the influence of the dust on the original charge distribution can be reduced through the improvement of the test method.
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