The influence of oxidation on space charge formation and electrical performance in /spl gamma/-irradiated low-density polyethylene

G. Chen, H. M. Banford, A. Davies
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Abstract

The research presented in this paper investigates the role of oxidation in the formation of space charge in gamma-irradiated low-density polyethylene after being electrically stressed under dc voltage. Polyethylene plaques both with and without antioxidant were irradiated up to 500 kGy using a /sup 60/Co gamma source and space charge distributions were measured using the piezoelectric induced pressure wave propagation method. It has been found that a large amount of positive charge evolved adjacent to the cathode in the sample without antioxidant and was clearly associated with oxidation of the surface. The amount of charge formed for a given applied stress increased with the dose absorbed by the material. A model based on charge separation has been proposed to explain the formation of space charge and its profile. On the other hand, space charge in a sample containing antioxidant under the same applied electric stress was negligible even in the sample exposed to 500 kGy. The main process to form space charge is via charge injection rather than charge separation in the sample without antioxidant. Electrical breakdown strengths in these two types of samples were also measured.
氧化对/spl γ辐照低密度聚乙烯空间电荷形成和电性能的影响
本文研究了在直流电压下经γ辐照的低密度聚乙烯受电应力后,氧化在空间电荷形成中的作用。采用/sup 60/Co γ源对含抗氧化剂和不含抗氧化剂的聚乙烯斑块进行500 kGy的辐射,并使用压电感应压力波传播法测量空间电荷分布。在无抗氧剂的样品中,阴极附近有大量的正电荷析出,这明显与表面氧化有关。在给定的施加应力下形成的电荷量随着材料吸收的剂量增加而增加。提出了一个基于电荷分离的模型来解释空间电荷的形成及其分布。另一方面,含有抗氧化剂的样品在相同的施加电应力下,即使在暴露于500 kGy的样品中,空间电荷也可以忽略不计。在无抗氧剂的样品中,主要通过电荷注入而不是电荷分离来形成空间电荷。还测量了这两种样品的电击穿强度。
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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