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基于mixed Lagrangian/Eulerian方法的轮轨滚动接触特性分析 被引量:4

Analysis of Characteristics of Wheel /Rail Rolling Contact Based on Mixed Lagrangian /Eulerian Method
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摘要 为了缩短有限元方法显式计算轮轨滚动接触的时间,采用mixed Lagrangian/Eulerian方法建立了轮轨滚动接触有限元模型.应用该模型对轮轨接触区的单元进行细化,计算了列车在启动、运行和制动工况下轮轨的接触特性.计算结果表明:不同工况下,轮轨滚动接触区最大Mises应力、最大接触应力和接触斑面积等法向特性变化幅度均在2%以内,但接触区纵向截面中Mises应力分布及纵向剪切应力分布有较大变化;启动和制动工况下,最大Mises应力和最大纵向剪切应力位置均比自由滚动时更接近于轮轨表面;不同工况下,摩擦力大小和方向发生变化,在列车牵引和制动工况中,摩擦力达到极限时轮轨间出现完全滑动,摩擦力方向与滑动方向相反,且不同速度等级下的纵向摩擦力变化幅度也在2%以内. To overcome the long time consumption of the explicit finite element calculation of wheel/rail rolling contact,the mixed Lagrangian/Eulerian method is used to establish a wheel/rail rolling contact finite element model.Through this model,the elements of the wheel/rail contact region are refined,and the wheel/rail contact characteristics are investigated in trains' starting,running,and braking conditions.The results show that under the different conditions,the maximum Mises stress,and the maximum contact stress,and the area of wheel/rail contact patches vary in the range of 2%,but the Mises stress distribution of the longitudinal section in the contact region and the longitudinal shear stress distribution vary greatly.Positions of the maximum Mises stress and the maximum longitudinal shear stress in starting and braking conditions are closer to the surfaces of wheel/rail than in free rolling.Especially it can be found that the size and direction of friction within the contact patch vary with different conditions,and pure sliding occurs when the friction reaches the limit between wheel and rail in the train traction and braking.In addition,the longitudinal friction force also varies within 2% when the train is in different speed grades.
出处 《西南交通大学学报》 EI CSCD 北大核心 2013年第5期898-903,共6页 Journal of Southwest Jiaotong University
基金 国家自然科学基金资助项目(51005075) 铁道部科技项目(J2009G003) 江西省教育厅科学技术研究资助项目(GJJ12292)
关键词 MIXED LAGRANGIAN EULERIAN 轮轨滚动接触特性 蠕滑 滑动 mixed Lagrangian/Eulerian rolling contact characteristics creep sliding
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参考文献16

  • 1XIAO Qian, ZHOU Xinjian, WANG Chengguo. The research of large-scale finite element model of wheel/rail rolling contact based on ABAQUS[C]// The Second International Symposium. Irkutsk : Irkutsk State Transport University, 2010: 122-127.
  • 2XIAO Qian, WANG Chengguo, GUO Ge. The research of parallel computing for large-scale finite element model of wheel/rail rolling contact [ C]//Proceedings of 2010 3rd 1EEE International Conference on Computer Science and Information Technology. New York: IEEE Press, 2010 : 254-257.
  • 3常崇义,王成国.基于ALE有限元的轮轨稳态滚动接触分析[J].中国铁道科学,2009,30(2):87-93. 被引量:14
  • 4LIU Yongming, LIU Liming, MAHADEVAN S. Analysis of subsurface crack propagation under rolling contact loading in railroad wheels using FEM[J]. Engineering Fracture Mechanics, 2007, 74: 2659- 2674.
  • 5JIANG Yanyao, SEHITOGLU H. Rolling contact stress analysis with the application of a new plasticity model[J]. Wear, 1996, 191. 35-44.
  • 6温泽峰,金学松,肖新标.非稳态载荷对二维轮轨纯滚动接触应力和变形的影响[J].交通运输工程学报,2006,6(4):14-19. 被引量:6
  • 7HIBBITF D, KARLSSON B, SORENSEN P. ABAQUS theoretical manual[ M ]. Rhode Island : Hibbitt, Karlsson & Sorensen Inc. , 1997.
  • 8BELYTSCHKO T, LIU W K, MORAN B. Nonlinear finite elements for continua and structures[M]. New York: Wiley, 2000: 60-305.
  • 9肖乾,王成国,周新建,卢勇.不同摩擦系数条件下的轮轨滚动接触特性分析[J].中国铁道科学,2011,32(4):66-71. 被引量:25
  • 10LIU Qiyue, JIN Xuesong, ZHOU Zhongrong. An investigation of friction characteristic of steels under rolling-sliding condition[J]. Wear, 2005, 259 (1/2/ 3/4/5/6) : 439-444.

二级参考文献61

  • 1王文健,刘启跃.车轮剥离性能试验研究[J].西南交通大学学报,2005,40(2):228-231. 被引量:15
  • 2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].交通运输工程学报,2005,5(2):12-18. 被引量:19
  • 3罗喜恒,肖汝诚,项海帆.几何非线性问题求解的改进算法[J].公路交通科技,2005,22(12):75-77. 被引量:3
  • 4CARTER F W. On the Action of a Locomotive Driving Wheel [M]. London: Proceedings of the Royal Society, 1926, A: 151-157.
  • 5JOHNSON K L. The Effect of a Tangential Contact Force upon the Rolling Motion of an Elastic Sphere on a Plane[J].Journal of Applied Mechanics, 1958, 25: 339-346.
  • 6JOHNSON K L. Contact Mechanics[M]. Cambridge: Cambridge University Press, 1985.
  • 7KALKER J J. Three-Dimensional Elastic Bodies in Rolling Contact [M]. Netherlands: Kluwer Academic Publishers, 1990.
  • 8JIN Xuesong, WU Pingbo, WEN Zefeng. Effects of Structure Elastic Deformations of Wheelset and Track on Creep Forces of Wheel/Rail in Rolling Contact[J].Wear, 2002, 253: 247-256.
  • 9TELLISKIVI T, OLOFSSON U. Contact Mechanics Analysis of Measured Wheel-Rail Profiles Using the Finite Element Method [J]. Journal of Rail and Rapid Transit, 2001, 15 (1): 65-72 .
  • 10NACKENHORST U. The ALE-Formulation of Bodies in Rolling Contact Theoretical Foundations and Finite Element Approach[J].Computer Methods in Applied Mechanics Engineering, 2004, 193: 4299-4322.

共引文献62

同被引文献22

  • 1金学松,张雪珊,张剑,孙丽萍,王生武.轮轨关系研究中的力学问题[J].机械强度,2005,27(4):408-418. 被引量:49
  • 2张银花,陈朝阳,周清跃.钢轨屈服强度指标取值研究[J].铁道建筑,2006,46(3):92-94. 被引量:21
  • 3陈鹏,高亮,郝建芳.铁路曲线上轮轨磨耗影响参数的仿真研究[J].中国铁道科学,2007,28(5):19-23. 被引量:36
  • 4CHANG C Y, WANG C G, JIN Y. Study on Numerical Method to Predict Wheel/Rail Profile Evolution Due to Wear[J]. Wear, 2010(269).167-173.
  • 5TELLISKIVI T. Wheel-rail Wear Simulation [J]. Wear, 2004(257) .. 1145-1153.
  • 6INNOCENTI A, MARINI L, MELI E, et al. Develop- ment of a Wear Model for the Analysis of Complex Railway Networks [J] . Wear, 2014(309) .. 174-191.
  • 7IGNESTI M, INNOCENTI A, MARINI L, et al. Wheel Profile Optimization on Railway Vehicles from the Wear Viewpoint [J]. International Journal of Non-Linear Me- chanics, 2013(53) :41-54.
  • 8ZOBORY I. Prediction of Wheel/Rail Profile Wear.[J]. Vehicle System Dynamics, 1997,28(6) : 221-259.
  • 9BRAGHIN F, et al. A Mathematical Model to Predict Railway Wheel Profile Evolution Due to Wear[J]. Wear, 2006(261) : 1253-1264.
  • 10卢萍,崔大宾,王宁.轮轨接触应力数值计算方法[J].润滑与密封,2009,34(7):28-32. 被引量:15

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