An experimental investigation into field enhanced ionic migration

M. Given, V. Banks, R. Fouracre
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Abstract

Experiments have been carried out to measure the effects of field and field gradient on ionic penetration in a practical cable insulation material, namely, cross-linked polyethylene (XLPE). Application of an alternating electric field is shown to increase the flux of ions into XLPE. Flux enhancement is dependent on the field gradients present in the system. The flux also increases as the temperature is raised. The experimental results are in a qualitative agreement with the mechanism of field- and field-gradient-assisted ion migration proposed by R.A. Fouracre et al. (1986).<>
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场增强离子迁移的实验研究
在交联聚乙烯(XLPE)电缆绝缘材料中进行了电场和电场梯度对离子渗透的影响实验。交变电场的应用增加了离子进入交联聚乙烯的通量。磁通增强取决于系统中存在的场梯度。通量也随着温度的升高而增加。实验结果与R.A. Fouracre等人(1986)提出的场和场梯度辅助离子迁移的机制在定性上一致。
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On the mechanism of partial discharges in gaseous cavities in contact with solid or liquid insulators The initiation and growth of AC tree in polyethylene Effects of the field dependent occupation of electrical-stress-generated traps on the conduction and breakdown of thin SiO/sub 2/ films A model of the electrical breakdown process due to electrical treeing growth Dielectric breakdown and partial discharge in BaTiO/sub 3/ ceramics
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