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Inception of Electrical Tree from Water-Tree Degradation at High Temperature

机译:从高温下从水树降解中初始化电气树

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In order to clarify the mechanism of electrical-tree inception which often determines the remaining life of power cables, we have been investigating electrical tree inception and propagation from water-tree degradation in polyethylene. Some of the results suggested that at 363 K, the continuous permissible temperature of XLPE cables, the extent of water-tree degradation was much higher than that of water-tree degradation formed at lower temperatures and water-tree degradation at 363 K virtually determines the remaining life. We, therefore, investigated the effects of structural change induced by water-tree degradation at 363 K on AC and impulse tree inception. The experimental results for the samples with water tree dried after it was formed at 363 K showed that the AC and impulse electrical-tree inception voltages were lowered, even though they were slightly higher than those without water tree degradation in the samples with wet water tree. This suggests that the structural change due to severer water-tree degradation such as formation of micro voids leads to lower breakdown strength.
机译:为了澄清电气树初始的机制,这通常决定电力电缆的剩余寿命,我们一直研究了从聚乙烯中的水树降解中的电气树初始化和传播。一些结果表明,在363 k,XLPE电缆的连续允许温度下,水树降解的程度远高于在较低温度下形成的水树降解的程度,并且在363k下的水树降解几乎决定了剩下的生命。因此,我们研究了363 k对AC和脉冲树初始化的水树降解引起的结构变化的影响。在363k形成后,用水树的样品的实验结果表明,即使它们略高于使用湿水树的样品中的水树降解,即使它们略高,也降低了AC和脉冲电气树截头电压。 。这表明由于严格的水树降解导致的结构变化,例如微空隙的形成导致缩小强度较低。

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