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The characteristics of electrical trees in the inner and outer layers of different voltage rating XLPE cable insulation

机译:不同额定电压XLPE电缆绝缘内外层的电树特性

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The statistical initiation and propagation characteristics of electrical trees in cross-linked polyethylene (XLPE) cables with different voltage ratings from 66 to 500 kV were investigated under a constant test voltage of 50 Hz/7 kV (the 66 kV rating cable is from UK, the others from China). It was found that the characteristics of electrical trees in the inner region of 66 kV cable insulation differed considerably from those in the outer region under the same test conditions; however, no significant differences appeared in the 110 kV rating cable and above . The initiation time of electrical trees in both the inner and the outer regions of the 66 kV cable is much shorter than that in higher voltage rating cables; in addition the growth rate of electrical trees in the 66 kV cable is much larger than that in the higher voltage rating cables. By using x-ray diffraction, differential scanning calorimetry and thermogravimetry methods, it " was revealed that besides the extrusion process, the molecular weight of base polymer material and its distribution are the prime factors deciding the crystallization state. The crystallization state and the impurity content are responsible for the resistance to electrical trees. Furthermore, it was proposed that big spherulites will cooperate with high impurity content in enhancing the initiation and growth processes of electrical trees via the `synergetic effect'. Finally, dense and small spherulites, high crystallinity, high purity level of base polymer material and super-clean production processes are desirable for higher voltage rating cables.
机译:在50 Hz / 7 kV的恒定测试电压下(66 kV额定电缆来自英国,在66到500 kV的不同额定电压下),研究了交联聚乙烯(XLPE)电缆中电树的统计启动和传播特性。其他来自中国)。结果发现,在相同测试条件下,66 kV电缆绝缘内部区域的电树特性与外部区域的明显不同。但是,在110 kV及以上的额定电缆中没有出现显着差异。在66 kV电缆的内部和外部区域,电树的启动时间比额定电压更高的电缆的启动时间短得多。此外,66 kV电缆中电树的生长速度比额定电压更高的电缆中的电树的生长速度大得多。通过X射线衍射,差示扫描量热法和热重分析法,发现“除了挤出工艺外,基础聚合物材料的分子量及其分布是决定结晶状态的主要因素。结晶状态和杂质含量有人提出,大的球晶将通过“协同效应”与高杂质含量协同作用,以增强电树的萌芽和生长过程;最后,致密和小球晶,高结晶度,对于更高额定电压的电缆,需要高纯度的基础聚合物材料和超净生产工艺。

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