铰接式市域列车轮重计算方法研究

Wheel Load Calculation Methods for Articulated Suburban Railway Trains

  • 摘要:
    目的 列车轮重与轴重分布对列车的运行安全与结构可靠性起着关键作用,轮重计算的准确性是车辆顶层设计的重要前提。目前研究多集中于轴重计算,因此,有必要对轮重计算方法进行研究。
    方法 基于3节编组铰接式市域列车开展研究,通过力和力矩平衡公式计算出每台转向架二系簧上承受的车体重力。针对每台转向架进行了独立受载分析,系统考虑了车体及转向架各自重心的纵向、横向位置偏差对轮重的影响。重点考虑了在同一坐标系中,前后相邻铰接车体的重心横向位置同向或异向时,对转向架轮重产生的影响。推导出整列列车所有转向架车轮的轮重计算公式,并与多体动力学仿真结果进行了对比。
    结果及结论  每个车轮轮重的理论计算与仿真结果偏差均在2%以内,远低于5%的工程经验限值,验证了所提方法的计算精度。

     

    Abstract:
    Objective  The distribution of wheel loads and axle loads plays a critical role in train operational safety and structural reliability, and the accuracy of wheel load calculation is an important prerequisite for the vehicle's top-level design. Current researches mainly focus on the axle load calculation, so it is necessary to study wheel load calculation methods.
    Method  The study is conducted based on a three-car formation articulated suburban railway train. The carbody gravity borne by the secondary suspension of each bogie is calculated using force and moment equilibrium equations. Independent load analysis is performed for each bogie, systematically considering the influence of longitudinal and lateral deviations of the gravity centers for both carbody and bogie on wheel loads. Within the same coordinate system, particular attention is paid to effects on bogie wheel weights when the lateral positions of the gravity centers of two forwardly adjacent articulated carbodies are in the same or opposite directions. Wheel load calculation formulas for all bogie wheels in the entire train are derived and compared with multibody dynamics simulation results.
    Result & Conclusion  The deviations between the theoretical calculation and simulation results for each wheel weight are within 2%, which is far below the engineering empirical limit of 5%, verifying the calculation accuracy of the proposed method.

     

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