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Assessment of thermally aged XLPE insulation material under extreme operating temperatures

机译:极端工作温度下热老化XLPE绝缘材料的评估

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摘要

The degradation of cross-linked polyethylene (XLPE) insulation material is critical for the safe operation of cables. While there are extensive studies on the thermo-oxidative ageing of XLPE at or below 130 degrees C, the maximum overload conductor operating temperature, the short circuit temperature can rise above 150 degrees C, and the ageing patterns at these situations have not been fully understood. Here, chemical, crystalline structure, cross-linking density as well as the mechanical properties were characterized. The results demonstrate the importance of antioxidants in the high temperature situation. Before antioxidants are completely consumed, most of the mechanical and physicochemical properties remain stable. While antioxidant is depleted, the thermo-oxidative degradation is detrimental to the structure and properties of the insulation. The activation energy is around 160 kJ/mol for the thermo-oxidative ageing, from which the lifetime allowed before serious destruction of the insulation at different shortage or overload temperatures can be calculated.
机译:交联聚乙烯(XLPE)绝缘材料的降解对于电缆的安全操作至关重要。虽然有关于在130℃或低于130℃的XLPE的热氧化老化的广泛研究,但最大过载导体工作温度,短路温度可以高于150摄氏度,并且这些情况下的老化图案尚未得到完全理解。这里,表征化学,晶体结构,交联密度以及机械性能。结果证明了抗氧化剂在高温情况下的重要性。在抗氧化剂完全消耗之前,大多数机械和物理化学性质保持稳定。在抗氧化剂耗尽的同时,热氧化降解对绝缘的结构和性质有害。活化能量为热氧化老化约为160kJ / mol,可以计算在不同短缺或过载温度下严重破坏绝缘之前的寿命。

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