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Dielectric behaviour of hydrated and electrically stressed cross-linked polyethylene in a power distribution cable

机译:配电电缆中水合和电应力交联聚乙烯的介电行为

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Cross-linked polythene (XLPE) cables are being used increasingly for high voltage power distribution because of their enhanced mechanical properties over traditional pressure assisted dielectric cables1,2. However, the expected service life of XLPE 15–36 kV distribution cables is yet to be achieved in practice. It has been suggested trial a premature failure of XLPE cables may be avoided by modifying the cable construction to prevent moisture ingress during operation. In general, water has very little effect on lyophobic organic hydrocarbons unless they contain impurities. However, there have been breakdowns of polythene and other hydrocarbon cables at low A.C. Stress under water due to the growth of ‘water trees’ for which there has been no definitive explanation as yet. The pressure of traces of salt, acids, alchohols or any substance which ionises in solution in water will be expected to worsen the effects of moisture. A reduction of electrical breakdown strength due to a pressure of moisture cannot be explained without a better-understanding of the dielectric polarisation process in such circumstances. With the above in view, we have undertaken in our laboratories a study of the electrical aging of XLPE distribution cables, immersed in water.
机译:由于其在传统压力辅助电介质电缆1,2上具有增强的机械性能,越来越多地使用交联聚乙烯(XLPE)电缆。然而,在实践中尚未实现XLPE 15-36 kV分配电缆的预期使用寿命。已经提出了试验,可以通过改变电缆结构来避免XLPE电缆的过早失效,以防止在操作期间进行湿气进入。通常,除非含有杂质,否则水对含紫外有机烃的影响很小。然而,由于“水树”的生长,已经存在于低A.C中的聚乙烯和其他碳氢化合物电缆的崩溃。盐,酸,阿氯卓或在水中溶液中电离的任何物质的压力将有望恶化水分的影响。在这种情况下,不能解释由于水分的压力而导致的电击穿强度的降低。通过上述情况,我们在我们的实验室中进行了一项研究了XLPE分配电缆的电老化,浸入水中。

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