[1] 盛明琚,沈良,倪勤. 发电机集电环电刷故障实例及分析[J]. 安徽电力,2006,23(2):22-25. SHENG Ming-ju, SHEN Liang, NI Qin. Example and analysis of generator collector ring brush faults[J]. Anhui Electric Power,2006, 23(2): 22-25. [2] 陈立志,董伟,刘德辉. 300 MW发电机转子滑环烧毁原因分析[J]. 华电技术,2012,34(4):47-49. CHEN Li-zhi, DONG Wei, LIU De-hui. Analysis on reason of burning loss of rotor slip ring in 300 MW generator[J]. Huadian Technology, 2012, 34(4): 47-49. [3] 邸盛永,吴庆国,庞世秋. 发电机集电环故障的分析及检修[J]. 煤炭技术,2004,23(5):31-32. DI Sheng-yong, WU Qing-guo, PANG Shi-qiu. The analysis and overhaul of the failure of the generator collecting ring[J]. Coal Technology, 2004, 23(5): 31-32. [4] 张致鹏,刘丽军,王永屹. 灯泡贯流水轮发电机滑环电刷异常原因分析及处理[J]. 机械研究与应用,2011(1):110-113. ZHANG Zhi-peng, LIU Li-jun, WANG Yong-yi. Abnormal condition analysis and management of slip ring and brush in bulb tubular water turbo-generator[J]. Mechanical Research and Application, 2011(1): 110-113. [5] 王绍平. 发电机滑环电刷发热的原因分析及处理方法[J]. 华电技术,2012,34(6):51-53. WANG Shao-ping. Reason analysis and treatment method of temperature rise of generator slip ring electric brush[J]. Huadian Technology, 2012, 34(6): 51-53. [6] CHOW T W S, BISHOP H W. The effect of high current density and uneven current distribution on a current collection system [J]. IEEE Transactions on Components, Hybrids and Manufacturing Technology, 1991, 14(13): 650-657. [7] 聂海涛. 100 MW汽轮发电机碳刷电流分布不均的研究[J]. 山西电力,2007(5):46-47. NIE Hai-tao. Research on current distribution imbalance of 100 MW steam turbine generator carbon brush[J]. Shanxi Electric Power, 2007(5): 46-47. [8] JENSEN M V R S. Long-term high resolution wear studies of high current density electrical brushes[C]//Proceedings of the Fifty-First IEEE Holm Conference on Electrical Contacts. Randers, Denmark, 2005: 304-311. [9] SKJLBERG J K, OHMA H F, RUNDE M. Wear rates and current distribution of carbon brushes on steel slip rings[J]. IEEE Transactions on Energy Conversion, 2009, 24(4): 835-840. [10] 张海泉. 接触电阻的分析研究[J]. 商丘师范学院学报,2004,20(5):40-43. ZHANG Hai-quan. An analysis and research on contact resistance[J]. Journal of Shangqiu Teachers College, 2004, 20(5): 40-43. [11] 郭凤仪,马同立,陈忠华. 不同载流条件下滑动电接触特性[J]. 电工技术学报,2009,24(12):18-23. GUO Feng-yi, MA Tong-li, CHEN Zhong-hua. Characteristics of the sliding electric contact under different currents [J]. Transactions of China Electrotechnical Society, 2009, 24(12): 18-23. [12] HOLZAPFEL C, HEINBUCH P, HOLL S. Sliding electrical contacts: wear and electrical performance of noble metal contacts[C]// Electrical Contacts (HOLM), 2010 Proceedings of the 56th IEEE Holm Conference on IEEE. Charleston, SC, USA, 2010:543-550. [13] HOLZAPFEL C. Selected aspects of the electrical behavior in sliding electrical contacts[C]// Electrical Contacts (Holm), 2011 IEEE 57th Holm Conference on IEEE. Minneapolis, MN, USA, 2011: 1-9. [14] 胡伟,查晓明,孙建军. 多谐波源网络谐波源建模与谐波叠加仿真[J]. 中国电力,2006,39(3):61-65. HU Wei, ZHA Xiao-ming, SUN Jian-jun. Harmonic sources modeling and harmonic superposition simulation of power system with multi-harmonic sources [J]. Electric Power, 2006, 39(3): 61-65. [15] 阎丙西. 关于大型发电机滑环电刷接触电阻值的商榷[J]. 电力技术,1986(6):70-71. YAN Bing-xi. The discussion of brush and slip ring contact resistance for large generator [J]. Electric Power, 1986(6): 70-71. |