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首页> 外文期刊>Journal of Applied Polymer Science >The Conduction Characteristics of Electrical Trees in XLPE Cable Insulation
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The Conduction Characteristics of Electrical Trees in XLPE Cable Insulation

机译:XLPE电缆绝缘中电树的导电特性

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摘要

Depending on the morphology of the material and applied voltage frequency, three kinds of electrical trees can exist in cross-Linked polyethylene (XLPE) cable insulation, which are conducting, non-conducting, and mixed trees with different growth mechanisms. It is suggested that when the needle is inserted into large spherulites, conducting trees will form in those spherulites; when it is inserted among spherulites, non-conducting trees will appear along the boundaries of spherulites. Frequency will accelerate the growth of non-conducting trees but have little influence on the initiation and growth processes of conducting trees. If the initiation process of non-conducting trees is too difficult, they will grow into mixed trees. Finally, it is concluded that the space charge limited tiny breakdown around the tips of electrical trees is responsible for the propagation process of conducting trees; on the other hand, fast expansion occurs due to local high temperature and pressure along the boundaries, partial discharge in electrical tree paths and charge recombination, etc., which are the main reason for the growth of nonconducting trees.
机译:根据材料的形态和施加的电压频率,交联聚乙烯(XLPE)电缆绝缘层中可以存在三种电树,它们是具有不同生长机制的导电树,非导电树和混合树。建议将针插入大的球晶中,在这些球晶中会形成导电树。当将其插入球晶之间时,不导电的树木将沿着球晶的边界出现。频率将加速非导电树木的生长,但对导电树木的萌芽和生长过程影响很小。如果非导电树的启动过程太困难,它们将长成混合树。最后,得出的结论是,空间电荷限制了电树尖端周围的微小击穿,这是导电树的传播过程的原因。另一方面,由于沿边界的局部高温和高压,电树路径中的局部放电以及电荷复合等原因,会发生快速膨胀,这是非导电树生长的主要原因。

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