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复合绝缘子酸液侵蚀的脆断研究
引用本文:李如锋,李光,李祥,赵朝云,刘子龙,阮洪亮.复合绝缘子酸液侵蚀的脆断研究[J].西北电力技术,2012(9):69-71,77.
作者姓名:李如锋  李光  李祥  赵朝云  刘子龙  阮洪亮
作者单位:[1]三峡大学电气与新能源学院.湖北宜昌443002 [2]临沂市供电公司,山东临沂276000 [3]国电南垭河发电总厂,四川雅安625400 [4]四川久隆水电开发有限公司,四川雅安625400
摘    要:在输电线路中,复合绝缘子的芯棒非联接部分频繁出现脆断、掉线,其中酸性介质侵入并渗透到内部芯棒,腐蚀芯棒截面,是造成复合绝缘子机械强度下降进而脆断的主要原因。建立了复合绝缘子的酸液侵蚀模型.利用ANASYS对其场强和电位进行仿真分析。分析结果表明,酸液侵蚀复合绝缘子后,金具处场强最大值比正常复合绝缘子数值大,且侵蚀部位场强畸变严重;复合绝缘子侵蚀后的电位分布比正常复合绝缘子的高.单片绝缘子承担的电压偏大,加速了绝缘子老化。

关 键 词:脆断  酸液侵蚀  场强  复合绝缘子

Probe into Brittle Fracture of Composite Insulators Caused by Acid Erosion
LI Ru-feng,LI Guang,LI Xiang,ZHAO Chao-yun,LIU Zi-long,RUAN Hong-liang.Probe into Brittle Fracture of Composite Insulators Caused by Acid Erosion[J].Northwest China Electric Power,2012(9):69-71,77.
Authors:LI Ru-feng  LI Guang  LI Xiang  ZHAO Chao-yun  LIU Zi-long  RUAN Hong-liang
Affiliation:1. School of Electrical Engineering and New Energy, Three Gorges University, Yichang 443002, China; 2. Linyi Power Supply Bureau, Linyi 276000, China;3. State Power Nanya River Hydropower Development Co., Ltd., Ya'an 625400, China; 4. Sichuan Jiulong Hydropower Development Co., Ltd., Ya'an 625400, China)
Abstract:Composite insulators are used in a large number of transmission lines for superior electrical performance. The phenomenon of brittle fracture often appears in mandrel non-connected part leading to the occurrence of a major power outage caused by the adsorption, penetration and diffusion of acidic medium entering the internal mandrel and the mandrel cross-section. The paper establishes a composite insulator model with acid erosion, and simulates and analyzes the field strength and potential of the composite insulators by using ANASYS. The results show that maximum field strength occurred in the fittings is bigger than that in normal composite insulators, serious field distortion occurs in corroded region, the high potential distribution exists in the composite insulator with acid erosion, and single insulator with a higher voltage accelerates ageing of the insulator.
Keywords:brittle fracture  acid erosion  field strength  composite insulators
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