Modified Cable Insulation Characteristics Using Nano Composites for the Nuclear Power Plant

Q2 Engineering
S. Esa, Othman Es, M. Ezz-eldin, H. Taha, Walaa El-kattan
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引用次数: 1

Abstract

Nowadays, The Nuclear Power Plant (NPP) Lifetime can be extended to around 80 Years; This Is Assist to Recommend the Modifications Some Properties of Polymeric Cross Linked Polyethylene (XLPE) Cable Insulation. This Work is A Laboratory Implementing the Nano-fillers as Silicon Dioxide (Sio2) and Clay to Enhance Cable Insulation. The Volume Resistivity, Capacitance, Dielectric Loss, Tensile Strength and Elongation Properties Were Tested and Measurement for the Nanorized Samples. Furthermore, These Measurements Have Been Carried Out for the (XLPE) with Modified XLPE/Sio2 and XLPE/Clay, at Additive Concentration of 1, 2.5, 4 and 5 Weight Percentage (Wt%). The Officially Documented Results Have Been Provided Much Better Cable Electrically Insulation and Mechanically Profile. A 205% and 189% for Volume Resistivity and Instance were improved for The XLPE/Sio2 and XLPE/Clay Respectively, and The Analytical Calculations were in Agreement with the Experimental Results.
用纳米复合材料改进核电站电缆绝缘特性
如今,核电站(NPP)的使用寿命可以延长到80年左右;这有助于推荐修改聚合物交联聚乙烯(XLPE)电缆绝缘的一些性能。本工作是一个实验室实现纳米填料二氧化硅(Sio2)和粘土增强电缆绝缘。测试和测量了纳米化样品的体积电阻率、电容、介电损耗、抗拉强度和伸长率等性能。此外,在添加物浓度为1、2.5、4和5重量百分比(Wt%)时,对改性XLPE/Sio2和XLPE/Clay的XLPE进行了这些测量。官方记录的结果已经提供了更好的电缆电气绝缘和机械轮廓。XLPE/Sio2和XLPE/Clay的体积电阻率和电阻率分别提高了205%和189%,分析计算与实验结果吻合较好。
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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CiteScore
2.10
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