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Analysis of vertical dynamic wheel/rail interaction caused by polygonal wheels on high-speed trains

机译:高速列车上由多边形轮引起的垂直动力轮轨相互作用分析

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In order to investigate vertical dynamic wheel/rail interaction resulting from a polygonal wheel at high-speeds, a vertical vehicle-track coupled dynamics model is adopted. The measured results from German ICE polygonal wheels are utilized as multi-harmonic excitations. Two types of out-of-round wheels, the periodic and the non-periodic, are simulated and compared. The dynamic wheel/rail interaction induced by different harmonics is analyzed in both time and frequency domains. Results demonstrate that the polygonal wheel will result in considerable fluctuation of wheel/rail contact force. Derivative of wheel radial deviations can effectively reflect dynamic wheel/rail contact force at train speeds above 300 km/h. Dynamic wheel/rail load becomes more sensitive to high order harmonics with increased speeds. Influence of the out-of-round wheel on vehicle system is mainly related to the wheelset vibration. Short-wavelength components of the polygonal wheel stimulate high-frequency vibrations of rails and sleepers.
机译:为了研究在高速行驶时多边形车轮产生的垂直动轮相互作用,我们采用了垂直的车轨耦合动力学模型。来自德国ICE多边形轮的测量结果被用作多次谐波激励。模拟并比较了两种非圆轮,即周期性和非周期性。在时域和频域中都分析了由不同谐波引起的动态轮/轨相互作用。结果表明,多边形轮将导致轮/轨接触力的显着波动。车轮径向偏差的导数可以有效地反映列车速度超过300 km / h时动态的车轮/轨道接触力。随着速度的增加,动态的轮/轨负载对高次谐波更加敏感。车轮不圆对车辆系统的影响主要与轮对振动有关。多边形轮的短波分量会激发轨道和轨枕的高频振动。

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