直流输电线路绝缘子接头微观工艺分析

Xiaobin Cao, Yufeng Yang, Tao Li, Chenxia Gao, P. Tang, Yawei Li
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摘要

高压直流输电线路上瓷绝缘子和玻璃绝缘子的电气腐蚀是一个长期存在的问题。为了研究直流输电线路绝缘子管件腐蚀的微观过程,揭示直流强电场作用下绝缘子管件腐蚀的关键因素,本文建立了棒板电压下的底部玻璃实验模型和底部陶瓷片实验模型,并建立了比例仿真模型,分析了相应材料的电压分布。底玻璃在棒板压力下的实验模型的测试原理是基于去极化电位检测法。对不同浓度的样品溶液加压不同时间。测量了短路后电极两端残余电压与时间的关系,分析了外加直流电场对棒板电极去极化电位的影响。底陶瓷片在棒板压力下的实验模型的测试原理是基于外电场影响溶液中的离子迁移,而溶液中的离子迁移会引起局部浓度的变化,电解质溶液的电导率与溶液的浓度有关。分析了电场与溶液电导率的关系,以及外加电场对离子迁移的作用机理。实验结果表明,在直流电场作用下,与样品相连的棒板电极两端的去极化电位会随外加电压时间的变化而变化,但变化趋势相同。溶液中存在离子迁移;在直流电场作用下,不同的加压时间会引起溶液内部电导率的变化。
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Analysis of Microscopic Process of Insulator Fittings for DC Transmission Lines
Electrical corrosion of fittings is a persistent problem of porcelain and glass insulators on HVDC transmission lines. In order to study the microscopic process of the corrosion of insulator fittings in DC transmission lines and reveal the key factors for the corrosion of insulator fittings under the action of a strong DC electric field, this paper established the bottom glass experimental model and the bottom ceramic sheet experimental model under bar board voltage, and built a proportional simulation model to analyze the voltage distribution of the corresponding material. The test principle of the experimental model of the bottom glass under the pressure of the rod plate is based on the depolarization potential detection method. The sample solution of different concentrations is pressurized for different times. After short-circuiting, the relationship between the residual voltage at both ends of the electrode and time is measured and analyzed the influence of an external DC electric field on the depolarization potential of the rod-plate electrode. The test principle of the experimental model of the bottom ceramic sheet under the pressure of the rod plate is based on the external electric field affecting the ion migration in the solution, and the ion migration in the solution will cause the local concentration to change, and the conductivity of the electrolyte solution is related to the concentration of the solution. The relationship between the electric field and the conductivity of the solution, and the mechanism of the applied electric field on ion migration is analyzed. The experimental results show that under the action of a DC electric field, the depolarization potential at both ends of the rod-plate electrode connected to the sample will change with the applied voltage time, but the change trend is the same. There is ion migration in the solution; under the action of the DC electric field, Different pressurization time will cause the internal conductivity of the solution to change.
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