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Polymer Nanocomposites as Insulation for HV DC Cables – Investigations on the Thermal Breakdown

机译:聚合物纳米复合材料作为高压直流电缆的绝缘材料–热击穿研究

摘要

With the advent of nano-particle fillers in insulating materials, the insulating materials of superior quality have come to fore. In the recent past, nanocomposite LDPE/XLPE (Low Density Polyethylene/Cross Linked Polyethelene) power cable dielectrics have been synthesized. A preliminary evaluation of these new class of materials seem to show that, addition of small amounts of sub-micron inorganic fillers improved the dielectric properties of the composite, in particular, the volume resistivity, and the dc breakdown strength. The thermal behaviour, for example, the stability of composites against decomposition and ensuing electrical failure, do not seem to have been addressed. In a conventional XLPE insulated cable, the average thermal breakdown strength and maximum temperature at the onset of breakdown were seen to be markedly lower than the corresponding intrinsic breakdown strength and decomposition temperature. In the present paper, the Authors have presented and demonstrated the methods of estimating the limiting thermal breakdown voltages on a few nanocomposite materials used as power cable insulation. Experimental data on the volume resistivity reported in recent literature has been used in the series of computations. Nanocomposites of LDPE doped with small amounts of nano-particles of MgO, are chosen. The results show a considerable improvement in the thermal maximum voltage and other related parameters.
机译:随着绝缘材料中纳米颗粒填料的出现,高质量的绝缘材料应运而生。在最近的过去,已经合成了纳米复合LDPE / XLPE(低密度聚乙烯/交联聚乙烯)电力电缆电介质。对这些新型材料的初步评估似乎表明,添加少量的亚微米无机填料可改善复合材料的介电性能,特别是体积电阻率和dc击穿强度。似乎还没有解决热性能,例如复合材料抗分解和随之而来的电气故障的稳定性。在常规的XLPE绝缘电缆中,发现击穿开始时的平均热击穿强度和最高温度明显低于相应的固有击穿强度和分解温度。在本文中,作者介绍并演示了估算几种用作电力电缆绝缘材料的纳米复合材料上极限热击穿电压的方法。在最近的文献中报道的有关体积电阻率的实验数据已用于一系列计算中。选择掺杂有少量MgO纳米颗粒的LDPE纳米复合材料。结果表明,最大热电压和其他相关参数有了显着改善。

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    Reddy Chakradhar; Ramu TS;

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  • 年度 2008
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