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Dielectric spectroscopy study of thermally-aged extruded model power cables

机译:热老化挤压模型电力电缆的介电谱研究

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摘要

“Model” extruded power cables, having a much reduced geometry but using the same extrusion techniques and materials as full-sized cables, have been examined using dielectric spectroscopy techniques to study their thermal ageing effects. Cables insulated with homo-polymer XLPE and co-polymer of XLPE with micron-sized ethylene-butyl-acrylate (EBA) islands were studied by both frequency-domain and time-domain dielectric spectroscopy techniques after accelerated thermal ageing under 135°C for 60 days. In the frequency domain, a frequency response analyzer (FRA) was used to measure the frequency range from 10-4Hz to 1Hz at temperatures from 20°C to 80°C. In the time domain, a special charging/discharging current measurement system was developed to measure the frequencies from 10-1Hz to 102Hz. These techniques were chosen to cope with the extremely low dielectric losses of the model cables. The results are compared with those from new model power cables that were degassed at 80°C for 5 days. Thermal ageing was found to increase the low-frequency conductivity, permittivity and the discharging current. Both homo- and co-polymer cables have substantial increase of dielectric loss after ageing.
机译:已经使用介电谱技术检查了“模型”挤压电力电缆,该电缆的几何尺寸大大减小,但使用与全尺寸电缆相同的挤压技术和材料,以研究其热老化效应。在135°C加速热老化60°后,通过频域和时域介电谱技术研究了均聚物XLPE和XLPE共聚物与微米级乙烯-丙烯酸丁酯(EBA)岛绝缘的电缆。天。在频域中,使用频率响应分析仪(FRA)在20°C至80°C的温度下测量10-4Hz至1Hz的频率范围。在时域中,开发了一种特殊的充电/放电电流测量系统来测量10-1Hz至102Hz的频率。选择这些技术来应对模型电缆的极低介电损耗。将结果与新型电力电缆在80°C下脱气5天的结果进行比较。发现热老化会增加低频电导率,介电常数和放电电流。老化后均聚物和共聚物电缆的介电损耗均显着增加。

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