Effect of Cryogenic Temperature on DC Electrical Tree Initiation Characteristics of Epoxy Nanocomposites

Ganghua Qin, Tie Jiang, Guangyu Zhu, Xiangrong Chen
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引用次数: 1

Abstract

The widely used epoxy resin for high temperature superconducting (HTS) HVDC transmission system suffers the issue of electrical tree aging under high electrical field. Improving the DC electrical performance of epoxy resin at cryogenic temperature is the key to the safe and stable operation of HTS transmission. In this paper, electrical tree initiation characteristics at room and cryogenic temperature are tested. Moreover, thermogravimetric analysis (TGA) characterization of nanoparticles is carried out. The results show that the thermogravimetric process of nanoparticles modified with KH560 can be divided into physical and chemical thermogravimetric process, which indicates KH560 can effectively modify the surface of nano-alumina. With the increase of applied voltage cycles, the probability of tree initiation increases until all samples are triggered. At room temperature, it is found that the higher content of nano-alumina has the lower the tree initiation probability. In addition, the probability of DC tree initiation at cryogenic temperature is lower than that at room temperature. Furthermore, the tree initiation probability at 1 kV/s is much higher than that at 0.1 kV/s at both room and cryogenic temperatures.
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低温对环氧纳米复合材料直流电流树起始特性的影响
高温超导直流输电系统中广泛使用的环氧树脂在高电场作用下存在电树老化问题。提高环氧树脂在低温下的直流电性能是高温超导输电系统安全稳定运行的关键。本文测试了常温和低温下的电树起始特性。此外,还对纳米颗粒进行了热重分析(TGA)表征。结果表明:用KH560修饰纳米颗粒的热重过程可分为物理热重过程和化学热重过程,表明KH560能有效修饰纳米氧化铝表面。随着施加电压周期的增加,树启动的概率增加,直到所有样本都被触发。在室温条件下,纳米氧化铝含量越高,树状起始概率越低。此外,低温下直流树的起始概率比常温下低。此外,在室温和低温条件下,1 kV/s下树的起始概率远高于0.1 kV/s。
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