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铁路钢轨波浪形磨损研究进展

金学松 李霞 李伟 温泽峰

金学松, 李霞, 李伟, 温泽峰. 铁路钢轨波浪形磨损研究进展[J]. 西南交通大学学报, 2016, 29(2): 264-273. doi: 10.3969/j.issn.0258-2724.2016.02.006
引用本文: 金学松, 李霞, 李伟, 温泽峰. 铁路钢轨波浪形磨损研究进展[J]. 西南交通大学学报, 2016, 29(2): 264-273. doi: 10.3969/j.issn.0258-2724.2016.02.006
JIN Xuesong, LI Xia, LI Wei, WEN Zefeng. Review of Rail Corrugation Progress[J]. Journal of Southwest Jiaotong University, 2016, 29(2): 264-273. doi: 10.3969/j.issn.0258-2724.2016.02.006
Citation: JIN Xuesong, LI Xia, LI Wei, WEN Zefeng. Review of Rail Corrugation Progress[J]. Journal of Southwest Jiaotong University, 2016, 29(2): 264-273. doi: 10.3969/j.issn.0258-2724.2016.02.006

铁路钢轨波浪形磨损研究进展

doi: 10.3969/j.issn.0258-2724.2016.02.006
基金项目: 

国家自然科学基金-煤炭联合基金资助项目(U1361117)

国家自然科学基金资助项目(51405055)

辽宁省自然科学基金资项目助(2015020116)

详细信息
    作者简介:

    金学松(1956-),博士,1987年起至今任职于西南交通大学,现为牵引动力国家重点实验室特聘教授,博士生导师.E-mail:xsjin@swjtu.cn;李霞(1986-),博士.

    金学松(1956-),博士,1987年起至今任职于西南交通大学,现为牵引动力国家重点实验室特聘教授,博士生导师.E-mail:xsjin@swjtu.cn;李霞(1986-),博士.

Review of Rail Corrugation Progress

  • 摘要: 铁路钢轨波浪形磨损会导致铁路车辆和轨道强烈的振动、噪声,影响车辆的运行品质和旅客乘坐舒适度,严重的会导致列车脱轨事故的发生.简要介绍了全世界铁路钢轨波磨的分布情况和基本特征,介绍了我国重载铁路、高速铁路、地铁和城市轨道钢轨波磨特征和对应的线路结构特征.回顾了世界钢轨波磨研究的发展历史,重点评述了近40年来钢轨波磨成因理论的研究现状,讨论了已有理论存在的问题和根治钢轨波磨的措施,介绍了我国目前在治理钢轨波磨方面所采取的对策,并对该领域今后的研究方向进行了展望.

     

  • 温泽峰. 钢轨波浪形磨损研究[D]. 成都:西南交通大学,2006.
    OOSTERMEIJER K H. Review on short pitch rail corrugation studies[J]. Wear, 2008, 265(9/10):1231-1237.
    SATO Y. Review on rail corrugation studies[J]. Wear, 2002, 253(1/2):130-139.
    金学松,刘启跃. 轮轨摩擦学[M]. 北京:中国铁道出版社,2004:169.
    刘学毅. 钢轨波形磨耗成因研究[D]. 成都; 西南交通大学,1996.
    GRASSIE S L. Rail corrugation:characteristics, causes, and treatments[J]. J. Rail and Rapid Transit, 1993, 223(F):57-68.
    GRASSIE S L. Rail corrugation:characteristics, causes, and treatments[J]. Proceedings of the Institution of Mechanical Engineers, Part F:Journal of Rail and Rapid Transit, 2009, 223(6):581-596.
    OOSTERMEIJER K H,张厚贵,刘维宁,等. 钢轨波纹磨耗研究综述[J]. 都市快轨交通,2010,23(2):6-13. OOSTERMEIJER K H, ZHANG Hougui, LIU Weining, et al. Review on short pitch rail corrugation studies[J]. Urban Rapid Rail Transit, 2010, 23(2):6-13.
    AHLBECK D R, DANIELS L E. A review of rail corrugation processes under different operating modes[C]//Proceedings of the 1990 ASME/IEEE Joint Railroad California. New York:IEEE, 1990:12-18.
    FREDERICK C. A rail corrugation theory; proceedings of the 2nd international conference of Contact Mechanics and Wear of Rail System[C]//Waterloo:University of Waterloo Press, 1986:181-211.
    WU T X, THOMPSON D J. An investigation into rail corrugation due to micro-slip under multiple wheel/rail interactions[J]. Wear, 2005, 258(7/8):1115-1125.
    WU T X. Effects on short pitch rail corrugation growth of a rail vibration absorber/damper[J]. Wear, 2011, 271(1/2):339-348.
    AHLBECK D R, DANIELS L E. Investigation of rail corrugations on the Baltimore Metro[J]. Wear, 1991, 144(1/2):197-210.
    TASSILLY E, VINCENT N. A linear model for the corrugation of rails[J]. Journal of Sound and Vibration, 1991, 150(1):25-45.
    KALOUSEK J, JOHNSON K L. An investigation of short pitch wheel and rail corrugations on the Vancouver mass transit system[J]. ARCHIVE:Proceedings of the Institution of Mechanical Engineers, Part F:Journal of Rail and Rapid Transit, 1992, 206(26):127-135.
    JIN X S, WEN Z F. Effect of discrete track support by sleepers on rail corrugation at a curved track[J]. Journal of Sound and Vibration, 2008, 315(1/2):279-300.
    JIN X S, WEN Z F, WANG K Y, et al. Three-dimensional train-track model for study of rail corrugation[J]. Journal of Sound and Vibration, 2006, 293(3/4/5):830-855.
    NIELSEN J. Numerical prediction of rail roughness growth on tangent railway tracks[J]. Journal of Sound and Vibration, 2003, 267(3):537-548.
    JOHANSSON A, NIELSEN J C O. Rail corrugation growth-Influence of powered wheelsets with wheel tread irregularities[J]. Wear, 2007, 262(11/12):1296-1307.
    ANDERSSON C, JOHANSSON A. Prediction of rail corrugation generated by three-dimensional wheel rail interaction[J]. Wear, 2004, 257(3/4):423-434.
    DIANA G, CHELI F, BRUNI S, et al. Experimental and numerical investigation on subway short pitch corrugation[J]. Vehicle System Dynamics, 1998, 29(Sup.1):234-245.
    XIE G, IWNICKI S. A rail roughness growth model for a wheelset with non-steady, non-Hertzian contact[J]. Vehicle System Dynamics, 2010, 48(10):1135-1154.
    SUDA Y. Effects of vibration system and rolling conditions on the development of corrugations[J]. Wear, 1991, 144(1):227-242.
    MULLER S. A linear wheel rail model to investigate stability and corrugation on straight track[J]. Wear, 2000, 243(1/2):122-132.
    IGELAND A, ILIAS H. Rail head corrugation growth predictions based on non-linear high frequency vehicle/track interaction[J]. Wear, 1997, 213(1/2):90-97.
    ILIAS H. The influence of railpad stiffness on wheelset/track interaction and corrugation growth[J]. Journal of Sound and Vibration, 1999, 227(5):935-948.
    JIN X S, WEN Z F, WANG K Y. Effect of track irregularities on initiation and evolution of rail corrugation[J]. Journal of Sound and Vibration, 2005, 285(1/2):121-148.
    JIN X S, WEN Z F, WANG K Y, et al. Effect of passenger car curving on rail corrugation at a curved track[J]. Wear, 2006, 260(6):619-633.
    金学松,温泽峰,王开云. 钢轨磨耗型波磨计算模型与数值方法[J]. 通运输工程学报,2005,5(2):12-18. JIN Xuesong, WEN Zefeng, WANG Kaiyun. Theoretical model and numerical method of rail corrugation[J]. Journal of Traffic and Transportation Engineering, 2005, 5(2):12-18.
    李霞. 地铁钢轨波磨形成机理研究[D]. 成都:西南交通大学,2012.
    李伟. 地铁钢轨波磨成因及其对车辆轨道行为的影响研究[D]. 成都:西南交通大学,2015.
    KURZECK B. Combined friction induced oscillations of wheelset and track during the curving of metros and their influence on corrugation[J]. Wear, 2011, 271(1/2):299-310.
    SUDA Y, IGUCHI M. Basic study of corrugation mechanism on rolling-contact in order to control rail surfaces[J]. Vehicle System Dynamics, 1989, 18(6):566-577.
    SUDA Y, KOMINE H, IWASA T, et al. Experimental study on mechanism of rail corrugation using corrugation simulator[J]. Wear, 2002, 253(1/2):162-171.
    JOHNSON K, GRAY G. Development of corrugations on surfaces in rolling contact[J]. Proceedings of the Institution of Mechanical Engineers, 1975, 189(1):567-580.
    MATSUMOTO A, SATO Y, ONO H, et al. Formation mechanism and countermeasures of rail corrugation on curved track[J]. Wear, 2002, 253(1/2):178-184.
    MATSUMOTO A, SATO Y, OHNO H, et al. Study on curving performance of railway bogies by using full-scale stand test[J]. Vehicle System Dynamics, 2006, 44(8):62-73.
    JIN X, WEN Z. Rail corrugation formation studied with a full-scale test facility and numerical analysis[J]. Proceedings of the Institution of Mechanical Engineers, Part J:Journal of Engineering Tribology, 2007, 221(6):675-698.
    NIELSEN J C O, LUNDEN R, JOHANSSON A, et al. Train-track interaction and mechanisms of irregular wear on wheel and rail surfaces[J]. Vehicle System Dynamics, 40, 2003, 1(3):3-54.
    谭立成,俞铁峰. 曲线钢轨波浪磨损形成机理及减轻措施:兼论轮轨润滑的影响[C]//中国铁道学会轮轨表面接触损伤及对策学术研讨会.北京:,1990:1-5.
    谭立成,俞铁峰. 钢轨波状磨损形成机理的初步试验和理论研究[J]. 中国铁道科学,1985,6(1):28-52.
    陈光雄,钱韦吉,莫继良,等. 轮轨摩擦自激振动引起小半径曲线钢轨波磨的瞬态动力学[J]. 机械工程学报,2014,50(9):71-76. CHEN Guangxiong, QIAN Weiji, MO Jiliang, et al. A transient dynamics study on wear-type rail corrugation on a tight curve due to the friction-induced self-excited vibration of a wheelset-track system[J]. Journal of Mechanical Engineering, 2014, 50(9):71-76.
    CHEN G X, ZHOU Z R, OUYANG H, et al. A finite element study on rail corrugation based on saturated creep force-induced self-excited vibration of a wheelset-track system[J]. Journal of Sound and Vibration, 2010, 329(22):4643-4655.
    CLARK R, SCOTT G, POOLE W. Short wave corrugations-an explanation based on stick-slip vibrations[J]. Proceedings of the Symposium on the Applied Mechanics Rail Transportation, 1988, 92(2):141-148.
    CLARK R, FOSTER P. On the mechanics of rail corrugation formation[J]. Vehicle System Dynamics, 1983, 12(1/3):35-39.
    VADILLO E G, T RRAGO J, ZUBIAURRE G G, et al. Effect of sleeper distance on rail corrugation[J]. Wear, 1998, 217(1):140-145.
    刘启跃,王夏秋,周仲荣. 钢轨表面波浪形磨损研究[J]. 摩擦学学报,1998,18(4):337-340. LIU Qiyue, WANG Xiaqiu, ZHOU Zhongrong. An investigation of rail corrugation[J]. Tribology, 1998, 18(4):337-340.
    MAIR R. Track design to prevent long-pitch rail corrugation[J]. Bulletin, 1983, 84(3):289-300.
    MAIR R, JUPP R, GROENHOUT R. The characteristics and control of long pitch rail corrugation at heavy axle loads[C]//Proceedings of the Heavy Haul Railways Conference.:Institution of Engineers, 1978:459-467.
    MAIR R I, MURPHY R S. Rail wear and corrugation Studies[J]. Area Bulletin, 1976, 78:265-272
    MVLLER S. A linear wheel-rail model to investigate stability and corrugation on straight track[J]. Wear, 2000, 243(1/2):122-132.
    KNOTHE K, GROSS-THEBING A. Short wavelength rail corrugation and non-steady-state contact mechanics[J]. Vehicle System Dynamics, 2008, 46(1/2):49-66.
    HIENSCH M, NIELSEN J C O, VERHEIJEN E. Rail corrugation in the netherlands-measurements and simulations[J]. Wear, 2002, 253(1/2):140-149.
    VALDIVIA A. A linear dynamic wear model to explain the initiating mechanism of corrugation[J]. Vehicle System Dynamics, 1988, 17(Sup.1):493-496.
    HEMPELMANN K, HISS F, KNOTHE K, et al. The formation of wear patterns on rail tread[J]. Wear, 1991, 144(1/2):179-195.
    王平,刘学毅,万复光. 轮轴扭转振动与曲线地段钢轨波形磨耗[J]. 西南交通大学学报,1996,31(1):58-62. WANG Ping, LIU Xueyi, WAN Fuguang. Torsional vibration of wheelsets and curved rail corrugations[J]. Journal of Southwest Jiaotong University, 1996, 31(1):58-62.
    GRASSIE S L, ELKINS J A. Rail corrugation on north american transit systems[J]. Vehicle System Dynamics, 1998, 29(Sup.1):5-17.
    TASSILLY E, VINCENT N. Rail corrugations:analytical model and field tests[J]. Wear, 1991, 144(1/2):163-178.
    MATSUMOTO A, SATO Y, TANIMOTO M, et al. Study on the formation mechanism of rail corrugation on curved track[J]. Vehicle System Dynamics, 1996, 25(1):450-465.
    DANIEL W J T, HORWOOD R J, MEEHAN P A, et al. Analysis of rail corrugation in cornering[J]. Wear, 2008, 265(9/10):1183-1192.
    SUN Y Q, SIMSON S. Wagon-track modelling and parametric study on rail corrugation initiation due to wheel stick-slip process on curved track[J]. Wear, 2008, 265(9/10):1193-1201.
    HAYES W F, TUCKER H G. Wheelset-track resonance as a possible source of corrugation wear[J]. Wear, 1991, 144(Sup.1/2):211-226.
    GRASSIE S, JOHNSON K. Periodic microslip between a rolling wheel and a corrugated rail[J]. Wear, 1985, 101(4):291-309.
    BROCKLEY C. The influence of track support structure and locomotive traction characteristics on short wavelength corrugations[J]. Wear, 1992, 153(2):315-322.
    KALOUSEK J, MASEL E, GRASSIE S. Perspective on metallurgy and contact mechanics[C]//Proceedings of the International Heavy Haul Association STS Conference Wheel/Rail Interface. Mosscow:, 1999:14-17.
    FELLER H G, WALF K. Surface analysis of corrugated rail treads[J]. Wear, 1991, 144(Sup.1/2):153-161.
    BAUMANN G, FECHT H J, LIEBELT S. Formation of white-etching layers on rail treads[J]. Wear, 1996, 191(1):133-140.
    EISENMANN J. Formation of short pitch corrugations in rails[C]//Heavy Haul Railways Conference 1978.:Institution of Engineers, 1978:8-22.
    EADIE D T, KALOUSEK J, CHIDDICK K C. The role of high positive friction (HPF) modifier in the control of short pitch corrugations and related phenomena[J]. Wear, 2002, 253(Sup.1/2):185-192.
    TOMEOKA M, KABE N, TANIMOTO M, et al. Friction control between wheel and rail by means of on-board lubrication[J]. Wear, 2002, 253(Sup.1/2):124-129.
    EGANA J I, VINOLAS J, GIL-NEGRETE N. Effect of liquid high positive friction (HPF) modifier on wheel-rail contact and rail corrugation[J]. Tribology International, 2005, 38(8):769-774.
    MATSUMOTO A, SATO Y, OHNO H, et al. Improvement of bogie curving performance by using friction modifier to rail/wheel interface-Verification by full-scale rolling stand test[J]. Wear, 2005, 258(7/8):1201-1208.
    EADIE D T, SANTORO M. Top-of-rail friction control for curve noise mitigation and corrugation rate reduction[J]. Journal of Sound and Vibration, 2006, 293(3/4/5):747-757.
    MATSUMOTO K, SUDA Y, FUJⅡ T, et al. The optimum design of an onboard friction control system between wheel and rail in a railway system for improved curving negotiation[J]. Vehicle System Dynamics, 2006, 44(Sup.1):531-540.
    GONZLEZ F, PREZ J, VINOLAS J, et al. Use of active steering in railway bogies to reduce rail corrugation on curves[J]. Proceedings of the Institution of Mechanical Engineers Part F Journal of Rail Rapid Transit, 2007, 221(4):509-519.
    EADIE D T, SANTORO M, OLDKNOW K, et al. Field studies of the effect of friction modifiers on short pitch corrugation generation in curves[J]. Wear, 2008, 265(9/10):1212-1221.
    ISHIDA M, BAN T, ⅡDA K, et al. Effect of moderating friction of wheel/rail interface on vehicle/track dynamic behaviour[J]. Wear, 2008, 265(9/10):1497-1503.
    MATSUMOTO K, TOMEOKA M, IWAMOTO A, et al. Wheel/rail friction control with feedback system detecting yaw moment of wheelset[J]. Vehicle System Dynamics, 2008, 46(Sup.1):791-804.
    SUDA Y, KOMINE H, MATSUMOTO K, et al. Feedback friction control between wheel and rail by detecting yaw moment of wheelset[J]. Wear, 2008, 265(9/10):1512-1517.
    BELLETTE P A, MEEHAN P A, DANIEL W J T. Validation of a tangent track corrugation model with a two disk test rig[J]. Wear, 2011, 271(1/2):268-277.
    VUONG T T, MEEHAN P A, EADIE D T, et al. Investigation of a transitional wear model for wear and wear-type rail corrugation prediction[J]. Wear, 2011, 271(1/2):287-298.
    COLLETTE C, HORODINCA M, PREUMONT A. Rotational vibration absorber for the mitigation of rail rutting corrugation[J]. Vehicle System Dynamics, 2009, 47(6):641-659.
    LIU H P, WU T X, LI Z G. Theoretical modelling and effectiveness study of rail vibration absorber for noise control[J]. Journal of Sound and Vibration, 2009, 323(3/4/5):594-608.
    MAES J, SOL H. A double tuned rail damper-increased damping at the two first pinned-pinned frequencies[J]. Journal of Sound and Vibration, 2003, 267(3):721-737.
    EGANA J I, VINOLAS J, SECO M. Investigation of the influence of rail pad stiffness on rail corrugation on a transit system[J]. Wear, 2006, 261(2):216-224.
    OYARZABAL O, G MEZ J, SANTAMARA J, et al. Dynamic optimization of track components to minimize rail corrugation[J]. Journal of Sound and Vibration, 2009, 319(3/4/5):904-917.
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  • 收稿日期:  2015-11-16
  • 刊出日期:  2016-04-25

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