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首页> 外文期刊>Journal of Zhejiang University. Science, A >Dynamic analysis of a high-speed train operating on a curved track with failed fasteners*
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Dynamic analysis of a high-speed train operating on a curved track with failed fasteners*

机译:用失效紧固件在弯曲轨道上运行的高速列车的动态分析*

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摘要

A high-speed train-track coupling dynamic model is used to investigate the dynamic behavior of a high-speed train operating on a curved track with failed fasteners. The model considers a high-speed train consisting of eight vehicles coupled with a ballasted track. The vehicle is modeled as a multi-body system, and the rail is modeled with a Timoshenko beam resting on the discrete sleepers. The vehicle model considers the effect of the end connections of the neighboring vehicles on the dynamic behavior. The track model takes into account the lateral, vertical, and torsional deformations of the rails and the effect of the discrete sleeper support on the coupling dynamics of the vehicles and the track. The sleepers are assumed to move backward at a constant speed to simulate the vehicle running along the track at the same speed. The train model couples with the track model by using a Hertzian contact model for the wheel/rail normal force calculation, and the nonlinear creep theory by Shen et al. (1984) is used for wheel/rail tangent force calculation. In the analysis, a curved track of 7000-m radius with failed fasteners is selected, and the effects of train operational speed and the number of failed fasteners on the dynamic behaviors of the train and the track are investigated in detail. Furthermore, the wheel/Rail forces and derailment coefficient and the wheelset loading reduction are analyzed when the high-speed train passes over the curved track with the different number of continuously failed fasteners at different operational speeds. Through the detailed numerical analysis, it is found that the high-speed train can operate normally on the curved track of 7000-m radius at the speeds of 200 km/h to 350 km/h.
机译:高速火车轨道耦合动态模型用于研究在弯曲轨道上运行的高速列车的动态行为,失效紧固件。该模型考虑了由八辆车辆组成的高速列车,与镇流轨道连接。该车辆被建模为多体系统,轨道采用位于离散轨枕上的Timoshenko梁模型。车辆模型考虑了邻近车辆的端部连接对动态行为的影响。轨道模型考虑了轨道的横向,垂直和扭转变形以及离散睡眠支持对车辆耦合动力学的效果和轨道的效果。假设睡眠者以恒定速度向后移动以模拟沿轨道运行的车辆。该列车模型通过使用赫兹·轨道正常力计算的赫兹触点型号与轨道模型耦合,以及Shen等人的非线性蠕变理论。 (1984)用于轮轨切线计算。在分析中,选择具有故障紧固件的7000-m半径的弯曲轨道,并详细研究了列车操作速度和故障紧固件的效果以及列车的动态行为和轨道的效果。此外,当高速列车通过不同数量的连续失效的紧固件时,分析车轮/导轨力和脱轨系数和轮廓加载减少,以不同的操作速度的不同失效的紧固件。通过详细的数值分析,发现高速列车可以正常运行在7000-M半径的弯曲轨道上,速度为200 km / h至350 km / h。

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