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Study of extruded power cable insulation anisotropy by means of electrical treeing growth tests

机译:用电树生长试验研究挤压电缆的绝缘各向异性

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The effects of anisotropy in samples of EPR insulating compound taken from an HV power cable have been studied analysing suitable electrical tree growth parameters. Certain samples were cut in the radial direction R, others in the longitudinal and tangential direction L and T with respect to the cable extrusion axis. Point plane geometry specimens were obtained inserting 5 /spl mu/m tip radius needles into such samples by means of a special hot moulding process. As the adhesion between needle tip and EPR compound could influence the final treeing tests results, the needle insertion procedure and the hot moulding process were optimised. The average Tree Inception Voltage (TIV) and the average Breakdown Voltage (BDV) were measured, during AC ramp voltage tests, for each of the three types of specimens. Finally the Time-to-breakdown (Tbd) was recorded during 15 kV AC constant voltage tests, in the three cases. The overall results (BDV and Tbd) clearly indicate that R specimens offer a "resistance" to treeing growth higher than L ones, while the T specimens behaviour is in between. Therefore it is concluded that, in the bulk of the investigated cable insulation, a significant anisotropy exists. The potential of the above outcome (data and testing procedures) for improving the overall design and/or the manufacturing process of extruded cables for energy transmission applications is recalled.
机译:通过分析合适的电树生长参数,研究了各向异性对从高压电力电缆中提取的EPR绝缘化合物样品的影响。相对于电缆挤压轴线,在径向R上切割了某些样品,在纵向和切向L和T上切割了一些样品。通过特殊的热成型工艺,将5 / spl mu / m尖端半径的针插入此类样品中,获得了点平面几何样本。由于针尖与EPR化合物之间的粘附力可能会影响最终的树状测试结果,因此优化了针头插入过程和热成型工艺。在AC斜坡电压测试期间,针对这三种类型的样本中的每一种,测量了平均树起始电压(TIV)和平均击穿电压(BDV)。最后,在三种情况下,在15 kV AC恒压测试期间记录了击穿时间(Tbd)。总体结果(BDV和Tbd)清楚地表明,R样本对树木生长的抵抗力高于L样本,而T样本的行为介于两者之间。因此得出的结论是,在所研究的电缆绝大部分中,都存在明显的各向异性。回顾了上述结果(数据和测试程序)在改善用于能量传输应用的挤压电缆的整体设计和/或制造过程方面的潜力。

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