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Study on the transformation of electrical tree from water tree degradation in XLPE

机译:XLPE水树降解电气树改造的研究

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During the experiments, peroxide cross-linked polyethylene is chosen as the experimental material, liquid needle electrode and high frequency accelerated aging method are used for water tree development, and real-time digital microscopic camera system is used for observation of water-tree-transformed electrical treeing. In this paper, the transformation of electrical trees from wetting and drying water tree samples with different electrodes (water needle electrode, steel needle electrode) is studied at different voltages (15kV, 20kV). Three experimental results are obtained. (1) The average electrical tree initiation time of non-deterioration samples is shortest, that of wetting water tree samples is longest, while that of drying water tree samples is the medium of the two mentioned above. (2) The electrical tree initiation rates of drying water tree samples is highest, that of wetting water tree samples is lowest, and that of non-deterioration samples is the medium of the two mentioned above. (3) When water needle electrode is used in the three kinds of samples, the electrical trees initiated are all branch-like. The different mechanisms of electrical treeing in the three kinds of samples are studied.
机译:在实验期间,选择过氧化物交联聚乙烯作为实验材料,液体针电极和高频加速老化方法用于水树开发,而实时数字微观摄像机系统用于观察水树转换的电器树。在本文中,在不同电压(15kV,20kV)下研究了从润湿和干燥水树样品的电气树木的变化。获得了三种实验结果。 (1)非劣化样品的平均电气树起始时间是最短的,润湿水树样品最长,而干燥水树样品的样品是上述两个的介质。 (2)干燥水树样品的电树起始率是最高的,润湿水树样品的是最低的,并且非恶化样品的是上述两种的平台。 (3)当在三种样品中使用水针电极时,发起的电气树是所有分支样的。研究了三种样品中的电气树的不同机制。

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