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轮对磨耗与轮径差对高速列车动力学性能的影响 被引量:31

Influence of wheelset wear and wheel radius difference on dynamics performances of high-speed train
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摘要 对某高速线路服役动车组轮对型面进行跟踪测试,分析了磨耗型面与轮径差对滚动半径差函数形状与位置变化的影响规律。根据服役列车参数建立高速列车动力学模型,计算高速列车在不同磨耗型面与轮径差工况下的非线性临界速度、平稳性和曲线通过性。由高速列车在平直线路与曲线通过工况下与不同轮轨接触的动态平衡点的计算,得出滚动半径差函数与高速列车动力学性能的关系。分析结果表明:型面磨耗与轮径差可以改变滚动半径差函数形状与位置,引起轮轨动态接触点变化,并最终导致高速列车动力学性能的大幅改变。在直线通过工况下,当车辆行驶里程为1.98×10^5km时,随着磨耗的增加,车辆临界速度从530km·h^-1降至300km·h^-1,平稳性指数从1.60增至1.87;当轮径差从-0.5mm增至0.5mm时,临界速度下降约80km·h^-1,平稳性指数增大0.10。在曲线通过工况下,随磨耗的增加,轮轨横向力从6.7kN逐渐增加到15.9kN,车辆脱轨系数从0.12增加到0.23,磨耗指数从0.005逐渐增加到0.018;当轮径差从-0.5mm增至0.5mm时,轮轨横向力减小3~6kN,脱轨系数降低0.03~0.10,磨耗指数减小0.003~0.010。 Wheel profiles of working high-speed train were traced in test to study the change rules of shape and position of rolling radius difference function with worn profiles and wheel radius difference. The dynamics model of high-speed train was set up based on the parameters of working high-speed train to calculate nonlinear critical speeds, stabilities, and curve passing performances under different conditions of worn profiles and wheel radius difference. The relationship between rolling radius difference function and vehicle dynamics performances was described by the calculation of dynamic equilibrium points at different wheel-rail contacts under straight and curve passing conditions of high-speed train. Analysis result indicates that profile wear and radius difference may change the shape and position of rolling radius difference function, cause the change of equilibrium points of wheel-rail contact and lead to the significant change of vehicle system dynamics performances at the end. On straight line, when the running distance of vehicle reaches 1.98×10^5 km, vehicle critical speed declines from 530 km·h^-1 to 300 km·h^-1 with the increase of profile wear. Vehicle riding index increases from 1.60 to 1.87. As wheel radius difference changes from -0.5 mm to 0. 5 mm, the critical speed declines by 80 km·h^-1 , while the riding index increases by 0.10. On curve line, with the increase of profile wear, wheelrail lateral force increases from 6.7 kN to 15.9 kN. Derailment coefficient increases from 0.12 to 0.23. Elkins wear index increases from 0. 005 to 0. 018. As the wheel radius difference changes from --0.5 mm to 0.5 mm, wheel-rail lateral force decreases by 3-6 kN, derailment coefficient decreases by 0.03-0.10, and Elkins wear index decreases by 0. 003-0. 010. 2 tabs, 6 figs, 15 refs.
出处 《交通运输工程学报》 EI CSCD 北大核心 2013年第6期47-53,共7页 Journal of Traffic and Transportation Engineering
基金 国家自然科学基金项目(U1234208)
关键词 高速列车 型面磨耗 轮径差 滚动半径差函数 动力学性能 high-speed train profile wear ~ wheel radius difference rolling radius difference function~ dynamics performance
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参考文献15

  • 1POLACH O. Influence of wheel/rail contact geometry on the behavior of a railway vehicle at stability limit[C]∥Eindhoven University of Technology. Proceedings of the ENOC-2005. Eindhoven: Eindhoven University of Technology, 2005: 2203-2210.
  • 2POLACH O, VETTER A. Methods for running stability prediction and their sensitivity to wheel/rail contact geometry[C]∥Budapest University of Technology and Economics. 6th International Conference on Railway Bogies and Running Gears. Budapest: Budapest University of Technology and Economics, 2004: 13-16.
  • 3SHEVTSOV I Y, MARKINE V L, ESVELD C. Optimal design of wheel profile for railway vehicles[J]. Wear, 2005, 258(7/8): 1022-1030.
  • 4CHEN Rong, WANG Ping, SONG Yang. Wheel/rail contact geometry of different wheel tread profile in high-speed railway turnout[J]. Advanced Materials Research, 2011, 255-260: 3988-3992.
  • 5MACE S, PENA R, WILSON N, et al. Effects of wheel-rail contact geometry on wheelset steering forces[J]. Wear, 1996, 191(1/2): 204-209.
  • 6金学松,温泽峰,张卫华.两种型面轮轨滚动接触应力分析[J].机械工程学报,2004,40(2):5-11. 被引量:37
  • 7SAWLEY K, WU Hui-min. The formation of hollow-worn wheels and their effect on wheel/rail interaction[J]. Wear, 2005, 258(7/8): 1179-1186.
  • 8POPP K, KRUSE H, KAISER I. Vehicle-track dynamics in the mid-frequency range[J]. Vehicle System Dynamics, 1999, 31(5/6): 423-464.
  • 9李艳,张卫华,周文祥.车轮型面磨耗对车辆服役性能的影响[J].西南交通大学学报,2010,45(4):549-554. 被引量:21
  • 10李艳,张卫华,池茂儒,周文祥.车轮踏面外形及轮径差对车辆动力学性能的影响[J].铁道学报,2010,32(1):104-108. 被引量:56

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