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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Effects of thermal conductivity on dc resistance to erosion of silicone rubber/BN nanocomposites
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Effects of thermal conductivity on dc resistance to erosion of silicone rubber/BN nanocomposites

机译:导热系数对硅橡胶/ BN纳米复合材料直流耐蚀性的影响

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摘要

Silicone rubber (SiR) is widely employed as an insulating material in transmission lines because of its excellent electrical properties and superior performance under wet and polluted conditions. However, the discharges that occur during operation can cause electrical erosion on the surface of silicone rubber insulators. The thermal conductivity of insulators has a correlation with the resistance to tracking and erosion. This study attempts to clarify whether the addition of boron nitride (BN) particles can improve the resistance to tracking and erosion of SiR by increasing its thermal conductivity. Before the tests, specimens were prepared by dispersing nano-BN particles into room temperature vulcanizing (RTV) silicone rubber at different loadings. In this paper, the dc test has been developed from the current IEC 60587 inclined plane tracking and erosion test to compare the phenomena occurring during the tests. Temperature distribution was observed by an infrared thermal imager. The experimental results indicate that the filled specimens have a lower degree of surface damage than the unfilled specimens. In addition, with the increase in content of fillers from 0 to 7 wt%, the thermal dissipation is improved and both the erosion depth and the weight loss show a decreasing trend, which proves the resistance of silicone rubber to tracking and erosion is improved.
机译:硅橡胶(SiR)由于其优异的电性能和在潮湿和污染条件下的卓越性能而被广泛用作传输线中的绝缘材料。但是,在操作过程中发生的放电会在硅橡胶绝缘子的表面上引起电蚀。绝缘子的导热系数与耐漏电起痕性有关。这项研究试图弄清楚添加氮化硼(BN)颗粒是否可以通过提高SiR的热导率来提高其抗跟踪和侵蚀的能力。在测试之前,通过将纳米BN颗粒以不同的载荷分散到室温硫化(RTV)硅橡胶中来制备样品。在本文中,直流电测试是根据当前的IEC 60587斜面跟踪和腐蚀测试而开发的,用于比较测试中出现的现象。用红外热像仪观察温度分布。实验结果表明,与未填充样品相比,填充样品的表面损伤程度更低。此外,随着填料含量的增加(从0到7 wt%),热耗散得到改善,腐蚀深度和重量损失均呈下降趋势,这证明硅橡胶的耐漏电起痕性得到改善。

著录项

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  • 作者

    Du B.X.; Xu H.;

  • 作者单位

    Key Laboratory of Smart Grid of Education Ministry, School of Electrical Engineering and Automation, Tianjin University, Tianjin 300072, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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