车轮多边形对地铁车辆安全性能的影响及其限度值研究

Wheel Polygons Influence on Subway Vehicle Safety Performance and Its Limit Values

  • 摘要:
    目的 车轮多边形化是地铁车辆车轮使用一定时间后会普遍出现的现象,其对列车的安全运行有着显著的负面影响。因此,有必要研究车轮多边形磨耗对地铁车辆动力学性能的影响。
    方法 利用SIMPACK软件,建立了列车以80 km/h的运行速度通过曲线线路的车辆-轨道系统动力学模型。选取脱轨系数、轮重减载率和轴箱垂向振动加速度3个指标作为动力学控制指标,根据GB/T 5599—2019、IEC 61373:2010中的安全限值标准,分析了不同阶次下车轮多边形磨耗的波深限度值。
    结果及结论 随着车轮多边形阶次的增加,其波深限度值逐渐减小。在脱轨安全性的评定当中,应以脱轨系数作为主要依据,轮重减载率只能作为辅助性评判标准。在6~10阶时,轴箱垂向振动加速度与脱轨系数得到的波深限度值非常接近。当车轮多边形的阶次为6阶时,多边形的波深限度值为0.48 mm;而当车轮多边形的阶次为10阶时,多边形的波深限度值为0.19 mm。

     

    Abstract:
    Objective Wheel polygonization is a common phenomenon in subway wheels after a certain period of service, posing a significant negative influence on safe operation of the train. Therefore, it is necessary to study the influence of wheel polygonal wear on the dynamic performance of metro vehicles.
    Method A vehicle-track system dynamic model is established with SIMPACK for the train passing through curved lines at 80 km/h. Three indicators, namely derailment coefficient, wheel unloading rate and axle box vertical vibration acceleration, are selected as dynamic control indicators. According to the safety limit standards in GB/T 5599-2019 and IEC 61373:2010, the wave depth limit values of wheel polygonal wear under different orders are analyzed.
    Result & Conclusion  With the order of the wheel polygon increases, the wheel wave depth limit value gradually decreases. In the evaluation of vehicle derailment safety, the derailment coefficient should be used as the primary basis, and the wheel unloading rate can only serve as an auxiliary evaluation criterion. From the 6th to 10th order, the wave depth limit values obtained from the axle box vertical vibration acceleration are very close to those obtained from the derailment coefficient. When the order of the wheel polygon is the 6th order, the wave depth limit of the polygon is 0.48 mm, and when it is the 10th order, the wave depth limit is 0.19 mm.

     

/

返回文章
返回