The Improvement of Flashover Characteristics with Field Grading CCTO Coating for GIL Spacer

Yufan Wang, Jin Li, M. Xiao, Hucheng Liang, H. Yao, B. Du
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Abstract

In gas insulated transmission line (GIL), the insulation failure often occurs due to flashover accidents induced by surface electric field distortion. An emerging coating with field grading CCTO is proposed to improve the electric field distribution and flashover voltage. In this paper, the CCTO coating with different layer thickness was fabricated on the spacer surface by magnetron sputtering. The electrical properties of emerging spacer under different voltage forms were studied through simulation and experiments. The results indicate that CCTO coating can significantly improve the electric field distribution, and the optimized effect is more obvious with the increase of sputtering time. The flashover voltage results show that the sputtered spacers have great insulation performance under AC voltage, DC voltage and polarity reversal voltage.
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用现场分级CCTO涂层改善GIL间隔层的闪络特性
在气体绝缘输电线路中,由于表面电场畸变引起的闪络事故经常导致绝缘失效。提出了一种新型的场级CCTO涂层,以改善电场分布和闪络电压。本文采用磁控溅射的方法在间隔片表面制备了不同层厚的CCTO涂层。通过仿真和实验研究了不同电压形式下新兴间隔片的电学性能。结果表明,CCTO涂层可以显著改善电场分布,且随着溅射时间的增加,优化效果更加明显。闪络电压测试结果表明,溅射隔离片在交流电压、直流电压和极性反转电压下均具有良好的绝缘性能。
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