首页> 外文期刊>IEE Proceedings. Part A >Dielectric response measurements in time and frequency domain of different XLPE homo- and copolymer insulated medium voltage cables
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Dielectric response measurements in time and frequency domain of different XLPE homo- and copolymer insulated medium voltage cables

机译:不同XLPE均聚物和共聚物绝缘中压电缆在时域和频域的介电响应测量

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Different structure and chemical composition of the insulating materials of medium voltage XLPE cables lead to various dielectric responses of new (unaged) cables and, therefore, can lead to problems in the diagnosis in the case of water tree aged medium voltage cables. With the aim of gaining a better understanding of these problems from a technical point of view, the results of dielectric response measurements in the time as well as in the frequency domain on different new XLPE homo- and copolymer insulated medium voltage cables and on a pressed sandwich-type test specimen before and after thermal treatment are presented and discussed. The investigations show that XLPE copolymer materials give higher dielectric responses than XLPE homopolymer materials. One of the reasons is that XLPE copolymer materials have a higher amount of polar, volatile elements (e.g. crosslinking byproducts), which lead especially to a higher voltage dependent conductivity.
机译:中压XLPE电缆绝缘材料的结构和化学成分不同,会导致新的(未使用的)电缆发生各种介电响应,因此,在水树老化的中压电缆的诊断中可能会出现问题。为了从技术角度更好地理解这些问题,在不同的新型XLPE均质和共聚物绝缘中压电缆以及压制电缆上,在时域和频域中的介电响应测量结果介绍并讨论了热处理前后的夹心型试样。研究表明,XLPE共聚物材料比XLPE均聚物材料具有更高的介电响应。原因之一是XLPE共聚物材料具有较高量的极性,挥发性元素(例如交联副产物),这尤其导致较高的电压依赖性电导率。

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