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高压电器  2014 

特高压断路器液压操动机构仿真研究

, PP. 15-19

Keywords: 特高压断路器, 液压操动机构, 缓冲特性, 仿真, 优化

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Abstract:

特高压断路器是特高压输电系统的重要控制和保护设备,而液压操动机构是其核心部件之一。介绍了特高压断路器用大功率液压操动机构的工作原理,建立了相应的数学模型,在此基础上建立了液压操动机构的仿真模型,对其机械行程特性与缓冲特性进行仿真分析,并通过试验测试来验证仿真模型的准确性,最后对液压操动机构的缓冲特性进行优化。

References

[1]  刘 伟,徐 兵,杨华勇,等. 超高压断路器液压操动机构分合闸特性研究[J]. 机床与液压,2008,36(10):4-7. LIU Wei,XU Bing,YANG Huayong,et al. Study on the opening and closing characteristics of super-high voltage circuit breaker with hydraulic operating mechanism[J]. Mechine Tool & Hydraulic,2008,36(10):4-7.
[2]  章宏甲,黄 谊.液压传动[M]. 北京:机械工业出版社,2001. ZHANG Hongjia,HUANG Yi.Hydraulic transmission[M].Beijing:Machinery Industry Press,2001.
[3]  刘 波,丁 凡. 液压缸缓冲结构和缓冲过程的研究[D].杭州:浙江大学,2004. LIU Bo,DING Fan. Research on cushioning structures and processes for hydraulic cylinder[J]. Hangzhou:Zhejiang University,2004.
[4]  丁 凡,路甬祥. 短笛型缓冲结构的高速液压缸缓冲过程的研究[J]. 中国机械工程,1998,9(10):52-54. DING Fan,LU Yongxiang. Study on buffering process of high speed hydraulic cylinder type buffer structure of piccolo[J]. Chinese Mechanical Engineering,1998,9(10):52-54.
[5]  徐国政,张节容,钱家骊,等. 高压断路器原理和应用[M]. 北京:清华大学出版社,2000. XU Guozheng,ZHANG Jierong,QIAN Jiali,et al. High voltage circuit breaker’s principle and application[M].Beijing:Tsinghua University Press,2000.
[6]  苑 舜. 高压断路器液压操动机构[M]. 北京:机械工业出版社,2000. YUAN Shun. High voltage circuit breaker’s hydraulic operating mechanism[M]. Beijing:China Machine Press,2000.
[7]  伍中宇. 超高压断路器液压操动机构特性研究[D]. 杭州:浙江大学,2008. WU Zhongyu. Characteristic research on super-high voltage circuit breaker with hydraulic operating mechanism[D]. Hangzhou:Zhejiang University,2008.
[8]  施文耀. 开关液压机构[M]. 北京:机械工业出版社,1990. SHI Wenyao. Switch’s hydraulic mechanism[M]. Beijing:China Machine Press,1990.
[9]  盛敬超. 液压流体力学[M].北京:机械工业出版社,1980. SHENG Jingchao. Hydraulic fluid mechanics[M]. Beijing:China Machine Press,1980.
[10]  邹高鹏,王永良. 高压断路器配液压操动机构液压缸缓冲特性的仿真研究[J]. 液压与气动,2011(9):1-10. ZOU Gaopeng,WANG Yongliang. Simulation study on buffering characteristics of hydraulic cylinder of high voltage circuit breaker with hydraulic operating mechanism [J]. Chinese Hydraulic & Pneumatics,2011(9):1-10.
[11]  刘 伟,徐 兵,杨华勇,等. 高压断路器液压操动机构特性研究[J]. 机械工程学报,2010,46(10):148-155. LIU Wei,XU Bing,YANG Huayong,et al. Characteristic analysis of high voltage circuit breaker with hydraulic operating mechanism[J]. Journal of Mechanical Engineering,2010,46(10):148-155.
[12]  王永良,孙艳玲,吴军辉.高速液压缸阶梯型缓冲结构与过程分析[J]. 机械制造,2011(4):49-51. WANG Yongliang,SUN Yanling,WU Junhui. Study on step-type buffering process of high-speed hydraulic cylinder[J]. Machinery Manufacturing,2011(4):49-51.
[13]  邵 群.高速液压缸缓冲装置及其动态特性研究[J]. 煤炭科学技术,2004,32(11):63-65. SHAO Qun. Research on buffering device of high speed hydraulic cylinder and its dynamic characteristics[J]. Coal Science and Technology,2004,32(11):63-65.
[14]  张旭宏,陈保伦.断路器用大功率液压操动机构的设计[J]. 高压电器,2010,46(1):1-4. ZHANG Xuhong,CHEN Baolun.Design of the high power hydraulic operating mechanism for CB[J]. High Voltage Apparatus,2010,46(1):1-4.
[15]  付永领,祁晓野. AMESim系统建模和仿真[M]. 北京:北京航空航天大学出版社,2006. FU Yongling,QI Xiaoye. Modeling and simulation of AMESim[M]. Beijing:Beihang University Press,2006.
[16]  刘金榕,易文颖,夏 魁.新型高速液压缸内缓冲装置及其特性的研究[J]. 机电工程,2010(3):33-37. LIU Jinrong,YI Wenying,XIA Kui. Study on a novel buffering device of high-speed hydraulic cylinder and its characteristics[J]. Electrical and Mechanical Engineering,2010(3):33-37.
[17]  陈保伦.液压操动机构的设计与应用[M]. 北京:机械工业出版社,2011. CHEN Baolun.Design and application of hydraulic operating mechanism[M]. Beijing:Machinery Industry Press,2011.
[18]  魏忠永,赵鸿飞,刘 伟,等.高压断路器液压操动机构油缸缓冲过程仿真与试验[J].农业机械学报,2010, 41 (6):216-221. WEI Zhongyong,ZHAO Hongfei,LIU Wei,et al. Cushion process of the hydraulic cylinder of hydraulic operating mechanism for high voltage circuit breaker[J]. Journal of Agricultural Machinery,2010, 41(6):216-221.
[19]  章一明.液压缓冲器设计参数研究[J]. 华东冶金学院学报,1994,11(3):54-58. ZHANG Yiming. Study on the designing parameters of hydraulic buffer[J]. Journal of East China Institude of Metallurgy,1994,11(3):54-58.
[20]  刘永胜,曹云东.LW-252 SF6断路器全相液压操动机构的特性计算与分析[D]. 沈阳:沈阳工业大学,2005. LIU Yongsheng,CAO Yundong.Analyses and calculation of dynamic behavior of hydraulic operating mechanism for LW-252 SF6 circuit breaker[D]. Shenyang:Shenyang University of Technology,2005.
[21]  谭宗柒,汪云峰,陈永清,等.基于AMESim的液压缓冲器主要结构参数的仿真分析[J]. 起重运输机械,2008(5):79-82. TAN Zongqi,WANG Yunfeng,CHEN Yongqing,et al. Simulation analysis of main structure parameters of hydraulic shock absorber based on AMESim[J]. Hoisting and Converying Machinery,2008(5):79-82.

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