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Investigation of electrical tree growth characteristics in XLPE nanocomposites

机译:XLPE纳米复合材料中电树生长特性的研究

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Failure of underground cables due to high degradation-rate phenomena, as partial discharges followed by electrical treeing, is one of the major causes of cable outages. Breakdowns occur mostly in correspondence of joints and terminations, where the electric stress can exceed the design electric field due to bad workmanship or manufacturing. Researches are being carried out to improve the resistance of insulation materials to such harmful electrical-aging phenomena. The use of nanocomposite cross linked polyethylene, XLPE, is investigated in this paper. Experiments of electrical tree growth on silica-nanostructured XLPE specimens, during which the time behaviour of partial discharges is recorded, are presented and discussed. Data are processed through clustering analysis, showing that addition of silica nano fillers with 3 and 5 %wt concentration improves noticeably PD endurance and breakdown time of XLPE material.
机译:由于高退化率现象而导致地下电缆失效,作为电动砍伐的部分放电,是电缆中断的主要原因之一。 故障主要发生在关节和终端的对应关系中,电力应力可能超过设计电场由于做工不良或制造。 正在进行研究以改善绝缘材料对这种有害的电老化现象的阻力。 本文研究了纳米复合二铬连接聚乙烯,XLPE。 氧化硅纳米结构XLPE样本上的电气树生长的实验,在此期间记录和讨论了部分放电的时间行为。 通过聚类分析处理数据,表明用3和5%wt浓度的加入二氧化硅纳米填料改善了XLPE材料的明显Pd耐久性和击穿时间。

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