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Trap features of retired high-voltage XLPE cable insulation material by thermally stimulated depolarization current

机译:退役高压交联聚乙烯绝缘电缆的热激发去极化电流陷阱特征

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摘要

The properties of the crosslink polyethylene (XLPE) after laboratory accelerated aging and the materials from retired cables may have some difference for different ageing condition. Then, it is necessary to understand the insulation property of the high-voltage XLPE cable after operation. In this paper, a total of three high-voltage XLPE cables operated for different years were collected. Then, the cable insulation material was divided into inner, middle, and the outer layers. Trap features of the three layers were studied by using the thermally simulated depolarization current (TSDC). According to the results of TSDC experiment, the trap features such as trap depth, trap charge, and temperature of current peak were calculated. Experiment results showed that two current peaks existed at 190 K to 375 K; one peak showed β relaxation (low temperature) and the other showed α relaxation (high temperature) for the XLPE insulation material. Trap parameters of α relaxation showed that the middle layer samples had relatively low value of trap depth and trap charge, whereas the outer layer samples had the largest values of these parameters. The trap charge of the outer layer decreased with the service time of XLPE cables. However, the trap parameters of the inner and middle layers of the three cables were almost the same.
机译:实验室加速老化后,交联聚乙烯(XLPE)的性能以及退役电缆的材料可能因不同的老化条件而有所不同。然后,有必要了解高压XLPE电缆在操作后的绝缘性能。在本文中,总共收集了3条在不同年份运行的高压XLPE电缆。然后,将电缆绝缘材料分为内层,中间层和外层。通过使用热模拟去极化电流(TSDC)研究了三层的陷阱特征。根据TSDC实验的结果,计算出陷阱深度,陷阱电荷和电流峰值温度等陷阱特征。实验结果表明,在190 K至375 K处存在两个电流峰值。对于XLPE绝缘材料,一个峰显示出β松弛(低温),另一个峰显示出α松弛(高温)。 α弛豫的陷阱参数表明,中层样品的陷阱深度和陷阱电荷值相对较低,而外层样品的这些参数值最大。随着XLPE电缆的使用寿命,外层的陷阱电荷减少。但是,三根电缆的内层和中间层的陷阱参数几乎相同。

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