通过改变车轮与轨道的接触关系提高高速列车的狩猎稳定性

Yaru Liang, Lai Wei, Jing Zeng, Ren Luo, Qunsheng Wang
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摘要

猎振稳定性是车辆系统的一个重要问题,它决定了高速列车的最高运行速度。本文介绍了由猎动稳定性问题引起的 "贵宾椅晃动"、"转向架报警 "和 "车体摇摆 "等三种高速列车异常振动现象的研究背景。首先,从车轮与铁轨接触关系的角度研究了车辆打猎运动失去稳定性的原因。然后,为了解决或缓解稳定性问题,提出了修改车轮轮廓的建议,即减小原车轮轮廓凸缘根部的坡度,增大车轮胎面端部的坡度。此外,还建立了高速乘用车的数值模型,以验证改进轮廓的动态性能。最后,使用全尺寸滚轮试验台对安装了改进型车轮的车辆进行了动态试验,以验证理论分析。从仿真和验证试验可以看出,与原车轮相比,采用改进型车轮的高速车辆的车轮/导轨接触关系和动态性能,包括狩猎稳定性和乘坐舒适性,都得到了显著改善。
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Hunting stability improvement for high-speed trains through modification of wheel/rail contact relation
The hunting stability is an important issue for vehicle systems that determines the maximum operating speeds of the high-speed trains. In this paper, the research background for the three abnormal vibration phenomena of the high-speed trains caused by the hunting stability problems, including the “VIP Chair Shaking,” “Bogie Alarm,” and “Carbody Sway” problems, are introduced. Firstly, the reason why the vehicle hunting motion loses its stability is investigated from the viewpoint of wheel/rail contact relation. Then, a modified wheel profile is recommended in order to solve or relieve the stability problem, in which the slope at the flange root for the original wheel profile is decreased and the slope at the wheel tread end is increased. Furthermore, the numerical model for a high-speed passenger car is established to verify the dynamic performance of the modified wheel profile. Finally, the dynamic test for the vehicle equipped with the modified wheels is carried out using full-scale roller test rig to validate the theoretical analysis. It can be seen from simulations and validation tests that the wheel/rail contact relation and the dynamic performance including the hunting stability and ride comfort for the high-speed vehicle with the modified wheel are improved significantly compared with the original wheel.
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