Control of water tree length and density in cable insulation polyethylenes

Florin Ciuprina, G. Teissèdre, J. Filippini, N. Hampton, A. Smedberg, A. Campus
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引用次数: 3

Abstract

The goal of this paper is to study the influence of the chemical crosslinking of polyethylene on the water tree initiation and propagation in polymer insulation. For this, the water tree resistances of crosslinked and thermoplastic low density polyethylene were compared. Three types of crosslinked polyethylene systems were evaluated: one containing only peroxide and the other two having, beside peroxide, a free retarding additive system. The results were compared with those obtained on their thermoplastic correspondents. The data show that there are differences in both the water tree length and density that can be ascribed to the polyethylene systems. However, only differences in the water tree density could be ascribed to the material form (thermoplastic or crosslinked). The observed results are consistent with differences, on microscopic level, in permittivities and local breakdown strengths
电缆绝缘聚乙烯水树长度和密度的控制
本文的目的是研究聚乙烯的化学交联对聚合物绝缘材料中水树形成和繁殖的影响。为此,比较了交联低密度聚乙烯和热塑性低密度聚乙烯的耐水性。对三种类型的交联聚乙烯体系进行了评价:一种只含有过氧化物,另两种除了过氧化物外还含有自由缓凝剂体系。并与热塑性介质的结果进行了比较。数据表明,水树的长度和密度都存在差异,这可以归因于聚乙烯体系。然而,只有水树密度的差异可以归因于材料形式(热塑性或交联)。观察到的结果与微观层面上介电常数和局部击穿强度的差异一致
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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