Electrical characterisation of ZnO microvaristor materials and compounds

H. Ahmad, A. Haddad, H. Griffiths, S. Robson, T. Nishimura, N. Tsukamoto
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引用次数: 13

Abstract

One of the most challenging design aspects of high voltage equipment is to ensure adequate electrical field distribution and controlled magnitudes within the insulation regions of the equipment to ensure integrity and long term satisfactory in-service performance. Electrode geometry can be designed to improve distribution and lower peak magnitudes of electrical fields. However, this is not sufficient in many cases. In order to influence the distribution of the field within the insulation medium and its surroundings, a number of techniques were introduced for bushing, cable terminations and electrical machines. These include semi-conducting and specialist grading materials. In recent years, the development of zinc oxide (ZnO) microvaristors has allowed a further opportunity for field control, in particular, in outdoor insulators and cable terminations applications. This paper gives an overview of the fabrication process of ZnO microvaristors loaded grading compound materials for electrical field control and details an experimental approach to characterize the material. Further analysis was carried out to obtain the electrical properties of the material, such as conductivity and permittivity as a function applied voltage. An application to outdoor insulators is proposed and modelled.
ZnO微压敏电阻材料和化合物的电学特性
高压设备最具挑战性的设计方面之一是确保设备绝缘区域内足够的电场分布和控制强度,以确保完整性和长期满意的使用性能。电极的几何形状可以用来改善电场的分布和降低电场的峰值。然而,这在许多情况下是不够的。为了影响绝缘介质及其周围的场分布,介绍了套管、电缆终端和电机的一些技术。这些包括半导体和专业分级材料。近年来,氧化锌(ZnO)微压敏电阻的发展为现场控制提供了进一步的机会,特别是在室外绝缘体和电缆终端应用中。本文综述了用于电场控制的ZnO微压敏电阻级配复合材料的制备工艺,并详细介绍了表征该材料的实验方法。进一步的分析得到了材料的电学特性,如电导率和介电常数作为施加电压的函数。提出了一种应用于室外绝缘子的方法并进行了建模。
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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