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Ride comfort enhancement in railway vehicle by the reduction of the car body structural flexural vibration

机译:通过减少车身结构弯曲振动来乘坐铁路车辆舒适增强

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The paper approaches the issue of reduction in the vertical bending vibrations of the railway vehicle carbody and the ride comfort enhancement at high velocities, starting from the prospect of isolating the vibrations by the best possible selection of the passive suspension damping in the vehicle. To this purpose, the examination falls on the influence of the vertical suspension damping upon the vibrations regime of the vehicle at the bending resonance frequency and upon the ride comfort. The results of the numerical simulations regarding the frequency response of the carbody acceleration and the comfort index will be therefore used. A value of the secondary suspension damping can be thus identified that will provide the best ride comfort performance. Similarly, the ride comfort can be increased by raising the primary suspension damping ratio.
机译:本文涉及铁路车辆车体的垂直弯曲振动的减少问题以及高速度乘坐舒适增强,从最佳选择车辆中的被动悬架阻尼的被动悬架阻尼的振动的前景开始。为此目的,检查垂直悬架阻尼在弯曲谐振频率和乘坐舒适度时垂直悬架阻尼在车辆的振动方案上的影响。因此,使用关于车身加速度和舒适指数的频率响应的数值模拟的结果。因此,可以识别二次悬架阻尼的值,这将提供最佳的乘坐舒适性能。类似地,通过提高初级悬架阻尼比可以增加乘坐舒适度。

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