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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Temperature dependent electrical properties of thermoplastic polypropylene nanocomposites for HVDC cable insulation
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Temperature dependent electrical properties of thermoplastic polypropylene nanocomposites for HVDC cable insulation

机译:用于HVDC电缆绝缘的热塑性聚丙烯纳米复合材料的温度相关电性能

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摘要

Polypropylene has been regarded as a potential recyclable insulation material for HVDC cable, which is beneficial to improve the working temperature and transmission capacity of HVDC cables. However, the electrical properties of polymeric insulation materials exhibit apparent temperature dependent characteristics. Temperature influences the generation and migration of charge carriers, thereby affecting the electrical properties. This paper focuses on the electrical properties of polypropylene nanocomposites at different temperatures, including volume resistivity, space charge and DC breakdown strength. The temperature dependent electrical properties of polypropylene are regulated by adding MgO nanoparticles. Based on the characterization of microstructure and trap characteristics, the mechanism of regulating the charge carrier transport process and the electrical properties of the nanocomposites by introducing MgO nanoparticles is explained. The polypropylene nanocomposites show decreased electrical conduction, suppressed space charge accumulation and increased DC breakdown strength, which are desirable for recyclable HVDC cable insulation application. This work may pave a way for tailoring the high temperature electrical properties of polymeric insulation material.
机译:聚丙烯被认为是高压直流输电电缆的一种潜在的可回收绝缘材料,有利于提高高压直流输电电缆的工作温度和传输能力。但是,聚合物绝缘材料的电性能表现出明显的温度依赖性。温度影响电荷载流子的产生和迁移,从而影响电性能。本文着重研究聚丙烯纳米复合材料在不同温度下的电性能,包括体积电阻率,空间电荷和直流击穿强度。聚丙烯的温度依赖性电学性能可通过添加MgO纳米颗粒来调节。基于微观结构和俘获特性的表征,解释了通过引入MgO纳米粒子调节电荷载流子传输过程和纳米复合材料电性能的机理。聚丙烯纳米复合材料显示出降低的导电性,抑制的空间电荷积累和增加的DC击穿强度,这对于可回收的HVDC电缆绝缘应用是理想的。这项工作可以为定制聚合物绝缘材料的高温电性能铺平道路。

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