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Application of the thermal step method to characterize the charge ability of XLPE insulation with and without ethylacrylate copolymer

机译:热步骤方法的应用表征XLPE绝缘的电荷能力,无乙基丙烯酸酯共聚物

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In Belgium, two types of high voltage underground power cables with different compositions have been installed, namely XLPE (an homopolymer cross linked polyethylene) and XLPE-EA copolymerised with ethylacrylate. The presence of space charge is now acknowledged to have a main role on electrical stresses applied to the insulation, and consequently in insulation lifetime. Part of the study was devoted to obtain a better characterization of their capacity of this twoinstalled insulations to store space charges under AC. In this paper, results of space charge measurements by the Thermal Step Method (TSM) and Thermally Stimulated Depolarization Currents (TSDC) of cable pieces after the manufacturing, are presented. During alternative poling (65 kV RMS: 13 kV/mm RMS) of a 15 kV cable, only the XLPE cable stocks space charge after ten weeks. No charge has been observed in the XLPE-EA insulation after six months with the TSM technique. Some measurements have been carried out with a Scanning Electron Microscope (SEM) used in mirror mode. The bulk sample analysis by TSM and SEM used in mirror mode results are compared and conclusions are given for the XLPE-EA insulation in comparison with the XLPE. These results show differences between the two XLPE cables, and an evolution of the physical structure of the polyethylene insulation is highlighted.
机译:在比利时,已经安装了两种类型的具有不同组成的高压地下电力电缆,即XLPE(均聚物交联聚乙烯)和与乙基丙烯酸酯共聚的XLPE-EA。现在承认存在空间电荷的存在,在应用于绝缘的电力应力和绝缘寿命中具有主要作用。部分研究的致力于获得其在AC下储存空间收费的工具绝缘能力的更好表征。本文介绍了制造后热步进法(TSM)(TSM)(TSM)(TSM)(TSM)和热刺激的去极化电流(TSDC)的空间电荷测量结果。在15 kV电缆的替代抛光(65 kV rms:13 kV / mm rms)期间,只有XLPE电缆股票空间充电10周后。在六个月后,在TSM技术六个月后,在XLPE-EA绝缘中未观察到任何费用。已经使用镜像模式使用的扫描电子显微镜(SEM)进行了一些测量。比较镜像结果的TSM和SEM的批量样本分析,与XLPE相比,给出了XLPE-EA绝缘的结论。这些结果显示了两个XLPE电缆之间的差异,并且突出了聚乙烯绝缘材料的物理结构的演变。

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