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Effect of Silane-Grafting on Water Tree Resistance of XLPE Cable Insulation

机译:硅烷接枝对交联聚乙烯电缆绝缘水树电阻的影响

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Water treeing is one of the main deterioration phenomena observed in the polymeric insulation of extruded crosslinked polyethylene (XLPE) cables, which can affect the service life of power cables. In this work, we investigated the effect of grafting of a silane (vinyl trimethoxysilane, VTMS) on the resistance of XLPE to water treeing. A series of water-treeing tests, the mechanical and dielectric measurements indicated that the silane-grafting could significantly improve the water tree resistance of the conventional XLPE cable insulation with little influences on its dielectric properties, e.g., the dielectric breakdown strength, dielectric constant and loss tangent, and its mechanical performance. It was found that there exists an optimum value of VTMS concentration (about 0.6 phr) corresponding to the minimum water tree length. The water tree resistance mechanism of silane-grafted XLPE was proposed on the basis of the process of silane hydrolysis and crosslinking.
机译:水树是在挤出交联聚乙烯(XLPE)电缆的聚合物绝缘中观察到的主要劣化现象之一,它会影响电力电缆的使用寿命。在这项工作中,我们研究了硅烷(乙烯基三甲氧基硅烷,VTMS)的接枝对XLPE耐水树的影响。一系列的水树测试,机械和介电测量表明,硅烷接枝可以显着提高常规XLPE电缆绝缘子的抗水树性能,而对其介电性能的影响很小,例如介电击穿强度,介电常数和损耗角正切及其机械性能。发现存在与最小水树长度相对应的VTMS浓度的最佳值(约0.6phr)。在硅烷水解交联过程的基础上,提出了硅烷接枝XLPE的耐水树机理。

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