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Enhanced Electrical and Thermal Rating Materials for Renewable Power Cable Connections

机译:可再生电源电缆连接增强的电气和热额定值材料

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The simultaneous improvement of electrical and thermal ratings of XLPE and thermoplastic based electrical insulation materials can be achieved reliably using nanocomposite formulations for power cable applications used in electrical power networks. This paper discusses the development of materials for two insulation exemplars in (i) crosslinked polyethylene (XLPE) and (ii) a new generation of high thermal performance thermoplastic polymer blends based on polypropylene. Both employ hexagonal boron nitride (h-BN), treated to promote exfoliation and surface modification, in order to optimize both the electrical and thermal properties of the materials. Through composites featuring homogeneously dispersed nano-h-BN, substantial enhancement in AC and DC electrical insulation performance was attained, with maintenance of other critical properties.
机译:通过用于电力网络中使用的电力电缆应用,可以可靠地实现XLPE和热塑性电绝缘材料的电气和热塑料的热额定值的同时改进。本文讨论了(I)交联聚乙烯(XLPE)和(ii)基于聚丙烯的新一代高热性能热塑性聚合物共混物的含有两种绝缘样品的材料的发展。均采用六边形氮化硼(H-BN),处理以促进剥离和表面改性,以优化材料的电气和热性质。通过复合材料,具有均匀分散的纳米H-BN,实现了AC和DC电绝缘性能的显着增强,维持了其他关键特性。

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