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Time behavior and breakdown of XLPE cable models subjected to multiple stresses

机译:经过多次应力的XLPE电缆模型的时间行为和故障

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Cross-linked polyethylene (XLPE) cable models obtained by a steam curing process have been investigated. These models were subjected to life tests with electrical, thermal, and multiple thermal-electrical stresses. The tests were performed by means of the progressive-censoring procedure in order to obtain information on both failure time percentiles and aging mechanisms by the study of significant properties related to breakdown. The results of multiple-stress tests are presented, and the behavior of such properties as density, melting enthalpy, and DC electrical conductivity is investigated as a function of aging conditions, and is related to the failure times obtained from each life test. It is shown that changes occur in the material during aging under multiple stresses which are not detected at the same aging times when electrical and thermal stresses are applied singly. Moreover, failure times are strongly reduced when stresses are combined, so that the electrical threshold decreases as temperature grows and seems to disappear at temperatures higher than 100 degrees C. The appearance of heterogeneous regions in the bulk of cable models aged under multiple stresses and the time behavior of the investigated properties suggest that the breakdown is mainly due to localized phenomena, even if bulk degradation processes occur in the insulation.
机译:研究了通过蒸汽固化过程获得的交联聚乙烯(XLPE)电缆型号。这些模型与电气,热和多个热电应力进行终身测试。通过渐进的审查程序进行测试,以便通过研究与细分相关的重要性质来获得有关失效时间百分比和老化机制的信息。提出了多重应激试验的结果,并作为密度,熔化焓和直流电导率的这种性能的行为作为老化条件的函数,并且与从每个寿命测试获得的失效时期有关。结果表明,在单独施加电气和热应力时未在同一老化时代未检测到的多个应力期间在材料中发生变化。此外,当压力组合时,失效时间被强烈降低,使得电阈值随着温度的增长而降低并且似乎在高于100摄氏度的温度下消失。在多次应力下老化的大部分电缆模型中的异构区域的外观。调查特性的时间行为表明,即使在绝缘体中发生大量劣化过程,击穿主要是由于局部现象。

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