Investigation on the electrical characterization of silicone rubber using DC conductivity measurement

Christoph Felix Niedik, Claudius Freye, F. Jenau, D. Haring, Gero Schroder, Jurgen Bittmann
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引用次数: 9

Abstract

Extruded cable systems and accessories are key components within the area of power transmission systems. Taking into account that the number of high voltage direct current (HVDC) transmission solutions is continuously increasing the role of its components and insulating materials becomes more and more important. In addition to transient and alternating current (AC) field stress the more important material characteristic for designing electrical equipment under DC stress is DC conductivity. For this reason, the purpose of this paper is to investigate the material characteristics of silicone-based insulation materials used in cable accessories in terms of temperature- and field-dependent conductivity. Although silicone rubber is a common application in cable accessories the knowledge about dc conductivity can be increased. Thin layers of LSR as representatives for insulation materials of cable joints are prepared. The variation of field strengths and temperatures are kept with regard to operating conditions. The electrical characterization is done based on ASTM D257-14 using guard ring electrodes. A variation of electrical contacting is carried out in compliance with this standard.
用直流电导率法研究硅橡胶的电学特性
挤压电缆系统及其附件是电力传输系统领域的关键部件。考虑到高压直流(HVDC)输电解决方案的数量在不断增加,其元器件和绝缘材料的作用变得越来越重要。除了瞬态和交流场应力外,设计在直流应力下的电气设备更重要的材料特性是直流导电性。因此,本文的目的是研究用于电缆附件的硅基绝缘材料在温度和场相关电导率方面的材料特性。虽然硅橡胶在电缆附件中是一种常见的应用,但关于直流导电性的知识可以增加。制备了薄层LSR作为电缆接头绝缘材料的代表。场强和温度随操作条件的变化而变化。电气特性是基于ASTM D257-14使用保护环电极完成的。根据本标准进行电接触的变化。
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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