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Accelerated life tests on a new water tree retardant insulation for power cables

机译:电力电缆新型耐水树绝缘层的加速寿命测试

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This paper describes the results of an investigation in which 15 kV rated cables insulated with a new water tree retardant cross-linked polyethylene (TR XLPE) were subjected to accelerated aging tests under a controlled voltage stress and thermal load cycle conditions. Cables insulated with conventional XLPE and a commercially available TR XLPE were used as reference test populations to affirm the test methodology. Under the chosen conditions, cable life of the new TR XLPE as calculated using Weibull and log normal statistical distributions, was more than twice that for the reference TR XLPE. Extensive diagnostic measurements (water content, dissipation factor, water tree analysis) were performed on failed cable samples to bring out the differences between the three insulations. Electron micrographic investigations revealed the size and distribution of micro voids in the new TR XLPE to be smaller supporting its extended life under these tests. The experimental details of the accelerated life tests are also documented in a clear manner facilitating any archival of the data for future analysis and comparison.
机译:本文介绍了一项研究结果,其中在控制电压应力和热负荷循环条件下,对用新型水树阻燃性交联聚乙烯(TR XLPE)绝缘的15 kV额定电缆进行了加速老化测试。使用常规XLPE和市售TR XLPE绝缘的电缆作为参考测试人群,以确认测试方法。在所选条件下,使用威布尔(Weibull)和对数正态统计分布计算得出的新TR XLPE的电缆寿命是参考TR XLPE的两倍以上。对失败的电缆样本进行了广泛的诊断测量(水含量,耗散因数,水树分析),以找出三种绝缘之间的差异。电子显微研究表明,新型TR XLPE中微孔的尺寸和分布较小,从而支持了这些测试中的延长寿命。加速寿命测试的实验细节也以清晰的方式记录在案,以方便对数据进行存档,以供将来进行分析和比较。

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