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Safety evaluation for railway vehicles using an improved indirect measurement method of wheel–rail forces 被引量:8
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作者 Jing Zeng Lai Wei Pingbo Wu 《Journal of Modern Transportation》 2016年第2期114-123,共10页
The wheel-rail force measurement is of great importance to the condition monitoring and safety evaluation of railway vehicles. In this paper, an improved indirect method for wheel-rail force measurement is proposed to... The wheel-rail force measurement is of great importance to the condition monitoring and safety evaluation of railway vehicles. In this paper, an improved indirect method for wheel-rail force measurement is proposed to evaluate the running safety of railway vehicles. In this method, the equilibrium equations of a suspended wheelset are derived and the wheel-rail forces are then be obtained from measured suspension and inertia forces. This indirect method avoids structural modifications to the wheelset and is applicable to the long-term operation of railway vehicles. As the wheel-rail lateral forces at two sides of the wheelset are difficult to separate, a new derailment criterion by combined use of wheelset derailment coefficient and wheel unloading ratio is proposed. To illustrate its effectiveness, the indirect method is applied to safety evaluation of rail- way vehicles in different scenarios, such as the cross wind safety of a high-speed train and the safety of a metro vehicle with hunting motions. Then, the feasibility of using this method to identify wheel-rail forces for low-floor light rail vehicles with resilient wheels is discussed. The values identified by this method is compared with that by Simpack simulation for the same low-floor vehicle, which shows a good coincidence between them in the time domain of the wheelset lateral force and the wheel-rail vertical force. In addition, use of the method to determine the high-frequency wheel-rail interaction forces reveals that it is possible to identify the high-frequency wheel-rail forces through the accelerations on the axle box. 展开更多
关键词 Wheel-rail force Safety evaluation - Indirect method Union safety domain Wheelset derailment coefficient Hunting motions Cross wind low-floor vehicle
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基于MATLAB软件对ULF车辆门架式转向架径向机构通过曲线的运动仿真分析
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作者 张德乾 王伯铭 +1 位作者 曹恺 李天一 《城市轨道交通研究》 北大核心 2016年第1期24-29,共6页
介绍了ULF车辆的门架式转向架的结构组成,分析了径向调节机构的工作原理和特点。利用Matlab软件对转向架径向调节机构进行数学建模和运动仿真,重点分析不同速度和不同曲线半径条件下前后车轮的摇头角位移、摇头角速度和摇头角加速度。... 介绍了ULF车辆的门架式转向架的结构组成,分析了径向调节机构的工作原理和特点。利用Matlab软件对转向架径向调节机构进行数学建模和运动仿真,重点分析不同速度和不同曲线半径条件下前后车轮的摇头角位移、摇头角速度和摇头角加速度。通过对比分析,认为径向调节机构可以减小轮缘冲角,使门架式转向架通过曲线性能良好。 展开更多
关键词 低地板轻轨车辆 门架式转向架 径向调节机构 运动分析 Matlab仿真
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