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基于极化与去极化电流的交联聚乙烯绝缘热老化状态定量评估

Quantitative Evaluation of Thermal Ageing State of Cross-Linked Polyethylene Insulation Based on Polarization and Depolarization Current.

作者信息

Huang Ping, Yu Wenyao, Lu Chunhao, He Xinghua, Zhang Yiyi, Liu Yansong, Zhou Jiaheng, Liang Yuwang

机构信息

Guangxi Power Transmission and Distribution Network Lightning Protection Engineering Technology Research Center, Guangxi University, Nanning 530004, China.

Electric Power Research Institute, Guangxi Power Grid Corporation, Nanning 530002, China.

出版信息

Polymers (Basel). 2023 Mar 2;15(5):1272. doi: 10.3390/polym15051272.

Abstract

The widespread use of cross-linked polyethylene (XLPE) as insulation in cables may be attributed to its outstanding mechanical and dielectric properties. In order to quantitatively evaluate the insulation status of XLPE after thermal ageing, an accelerated thermal ageing experimental platform is established. Polarization and depolarization current (PDC) as well as elongation at break of XLPE insulation under different ageing durations are measured. XLPE insulation state is determined by the elongation at break retention rate (ER%). Based on the extended Debye model, the paper proposed the stable relaxation charge quantity and the dissipation factor at 0.1 Hz to evaluate the insulation state of XLPE. The results show that the ER% of XLPE insulation decreases with the growth of ageing degree. The polarization and depolarization current of XLPE insulation will increase obviously with thermal ageing. Conductivity and trap level density will also increase. The number of branches of the extended Debye model increases, and new polarization types appear. Stable relaxation charge quantity and dissipation factor at 0.1 Hz proposed in this paper have a good fitting relationship with ER% of XLPE insulation, which can evaluate the thermal ageing state of XLPE insulation effectively.

摘要

交联聚乙烯(XLPE)在电缆绝缘中广泛应用,这可能归因于其出色的机械性能和介电性能。为了定量评估热老化后XLPE的绝缘状态,搭建了加速热老化实验平台。测量了不同老化时长下XLPE绝缘的极化和去极化电流(PDC)以及断裂伸长率。XLPE绝缘状态由断裂伸长率保留率(ER%)确定。基于扩展德拜模型,提出了稳定弛豫电荷量和0.1Hz下的损耗因数来评估XLPE的绝缘状态。结果表明,XLPE绝缘的ER%随老化程度的增加而降低。XLPE绝缘的极化和去极化电流会随热老化而明显增加。电导率和陷阱能级密度也会增加。扩展德拜模型的分支数量增加,并且出现了新的极化类型。本文提出的稳定弛豫电荷量和0.1Hz下的损耗因数与XLPE绝缘的ER%具有良好的拟合关系,能够有效评估XLPE绝缘的热老化状态。

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