Surface Potential Decay Characteristics and Trap Regulation Mechanism of Epoxy Glass Fiber Under Low-Temperature Gradient
Yongqiang Fan, Shuhan Peng, Jianzhong Yang, Aoqi Jia, Yun Bai, Zhihui Li, Xiaoyun Tian, Yonggang Yue
Inner Mongolia Electric Power (China) State Key Laboratory of Electrical Insulation and Power Equipment Xi'an Jiaotong University
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Surface charge accumulation and trap distribution are the core factors affecting the surface flashover characteristics of insulating materials. Considering the low-temperature gradient environment of superconducting energy pipeline terminations, this paper systematically studies the surface charge dynamic characteristics and trap distribution law of epoxy glass fiber (GFRP) by using the isothermal surface potential decay (ISPD) method combined with finite element simulation. A temperature-controlled ISPD test platform of −30~20 °C (193~293 K) was built to measure the surface potential decay curves at different temperatures and calculate the trap energy level and density; a charge migration model considering temperature gradient was established to analyze the influence of trapped charges on surface potential and electric field distribution. The results show that low temperature significantly reduces the surface potential decay rate (the residual potential after 5000 s is 92.91% of the initial value at 193 K, and only 3.51% at 293 K); the traps of GFRP at 193 K are dominated by deep traps (central energy level 0.68 eV, density 1.63 × 1020 m−3·eV), while there is a bimodal distribution of shallow traps (0.92 eV) and deep traps (0.98 eV) at 293 K; under temperature gradient, the accumulation of deep trap charges in the low-temperature region leads to a surface electric field distortion rate of 12.60, which is the key microscopic mechanism for the decrease of flashover voltage.
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材料 / 化学High voltage insulation and dielectric phenomena
Power Transformer Diagnostics and Insulation · Thermal Analysis in Power Transmission
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