[1] MILLER H C. Surface flashover of insulators[J]. IEEE Trans on Electrical Insulation, 1989, 24(5): 765-786. [2] 汪沨,邱毓昌,张乔根,等. 表面电荷积聚对绝缘子沿面闪络影响的研究[J]. 中国电力,2002,35(9):55-58. WANG Feng, QIU Yuchang, ZHANG Qiaogen, et al . Study on influence of surface charge accumulation on flashover of insulator[J]. Electric Power, 2002, 35(9): 55-58. [3] FUJINAMI H, TAKUMA T, YASHIMA M, et al . Mechanism and effect of DC charge accumulation on SF 6 gas insulated spacers[J]. IEEE Trans on Power Delivery, 1989, 4(3): 1765-1772. [4] 汪沨,邱毓昌. 直流气体绝缘开关装置绝缘设计的探讨[J]. 中国电力,2002,35(11):50-53. WANG Feng, QIU Yuchang. Discussion on the electrical insulation design of the HVDC gas insulated switchgear[J]. Electric Power, 2002, 35(11): 50-53. [5] 苑吉河,蒋兴良,张志劲,等. 低气压下三种覆冰支柱绝缘子直流闪络特性研究[J]. 中国电机工程学报,2005,25(15):12-15. YUAN Jihe, JIANG Xingliang, ZHANG Zhijing, et al . Study on DC flashover performance of three types of iced post insulators at lower atmospheric pressure[J]. Proceedings of the CSEE, 2005, 25(15): 12-15. [6] YANG Q, SIMA W, SUN C, et al . Modeling of DC flashover on ice-covered HV insulators based on dynamic electric field analysis [J]. IEEE Trans on Dielectrics and Electrical Insulation, 2007, 14(6): 1418-1426. [7] 周中升,章程,邵涛,等. 纳秒脉冲下变压器油绝缘的击穿与闪络特性[J]. 高电压技术,2014,40(10):3290-3296. ZHOU Zhongsheng, ZHANG Cheng, SHAO Tao, et al . Breakdown and flashover characteristics in transformer oil under nanosecond pulses [J]. High Voltage Engineering, 2014, 40(10): 3290-3296. [8] IKEDA M, HIKITA M, FUJII K, et al . DC electric field distribution and creepage breakdown characteristics of oil- pressboard insulation system[J]. Journal of Plankton Research, 2005, 27(7): 635-646. [9] JING T. Surface charge accumulation: an inevitable phenomenon in DC GIS[J]. IEEE Trans on Dielectrics and Electrical Insulation, 1995, 2(5): 771-778. [10] 王强,张贵新,王新新. 直流电压下气固交界面表面电荷积聚现象的实验分析[J]. 高电压技术,2011,37(3):594-598. WANG Qiang, ZHANG Guixin, WANG Xinxin. Surface charge accumulation phenomenon at the gas-solid interface under DC voltage [J]. High Voltage Engineering, 2011, 37(3): 594-598. [11] 章程,邵涛,于洋,等. 纳秒脉冲介质阻挡放电特性及其聚合物材料表面改性[J]. 电工技术学报,2010,25(5):31-37. ZHANG Cheng, SHAO Tao, YU Yang, et al . Characteristics of unipolar nanosecond pulse DBD and its application on surface treatment of polyimer films[J]. Transactions of China Electrotechnical Society, 2010, 25(5): 31-37. [12] 王梓杨,朱正一,贾志东,等. 直流污秽放电对硅橡胶表面特性破坏过程[J]. 高电压技术,2012,38(10):2611-2616. WANG Ziyang, ZHU Zhengyi, JIA Zhidong, et al . Degradation progress of silicon rubber surface properties under DC contamination flashover[J]. High Voltage Engineering, 2012, 38(10): 2611-2616. [13] XIE Q, LIU X, ZHANG C, et al . Aging characteristics on epoxy resin surface under repetitive microsecond pulses in air at atmospheric pressure[J]. Plasma Science and Technology, 2016, 18(3): 325-330. [14] 陈玉,成永红,阴玮,等. 环氧及其复合材料气固界面快脉冲闪络特性[J]. 西安交通大学学报,2008,42(6):703-707. CHEN Yu, CHENG Yonghong, YIN Wei, et al . Flashover property of pure epoxy and composites along the gas-solid interface under fast pulse[J]. Journal of Xi’an Jiao Tong University, 2008, 42(6): 703-707. [15] CHENG Y H, WANG Z B, WU K. Pulsed vacuum surface flashover characteristics of nano-micro composites [J]. IEEE Trans on Plasma Science, 2012, 40(1): 68-77. [16] 刘熊,林海丹,梁义明,等. 空气中微秒脉冲沿面闪络对环氧树脂表面特性影响研究[J]. 电工技术学报,2015,30(13):158-165. LIU Xiong, LIN Haidan, LIANG Yiming, et al . Effect of atmospheric-pressure microsecond pulsed discharges on epoxy resin surface[J]. Transaction of China Electotechnical Society, 2015, 30(13): 158-165. [17] 郎艳,王艺博,苏国强,等. 表面粗糙度对有机玻璃材料真空沿面闪络特性的影响[J]. 高电压技术,2015,41(2):474-478. LANG Yan, WANG Yibo, SU Guoqiang, et al . Influence of surface roughness on vacuum flashover characteristics of PMMA[J]. High Voltage Engineering, 2015, 41(2): 474-478. [18] ZHANG C, ZHOU Y, SHAO T, et al . Hydrophobic treatment on polymethylmethacrylate surface by nanosecond-pulse DBDs in CF 4 atmospheric pressure [J]. Applied Surface Science, 2016, 311(9): 468-477. [19] 苑吉河,蒋兴良,孙才新,等. 冰柱直流放电特性及路径[J]. 中国电机工程学报,2008,28(6):20-24. YUAN Jihe, JIANG Xingliang, SUN Caixin, et al . DC discharge performance and path of ice column [J]. Proceedings of the CSEE, 2008, 28(6): 20-24. |