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Influence of the Primary Suspension Damping on the Ride Comfort in the Railway Vehicles

机译:初级悬挂阻尼对铁路车辆平顺性的影响

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The paper features the results of a numerical study regarding the influence that the damping reduction in the primary suspension of the rail vehicle, due to the defect in a damper, has on the ride comfort. The study is based on model of rigid-flexible coupled vehicle, with seven degrees of freedom, where the carbody is modelled as an Euler-Bernoulli type equivalent beam. The results of the numerical simulations show the power spectral density of carbody vertical accceleration and the ride index comfort calculated in three carbody reference points - at the centre and against the bogies, for various cases of reduction in the damping constant of the primay suspension in the axle, compared to the reference value. As a function of velocity, due to the geometric filtering effect, the damping reduction has contrary effects upon the level of vibrations in the carbody and upon the ride comfort.
机译:本文的特点是通过数值研究的结果,研究了由于减震器缺陷而导致的铁路车辆主悬架减震对乘坐舒适性的影响。该研究基于具有7个自由度的刚柔耦合车辆模型,其中车体被建模为Euler-Bernoulli型等效梁。数值模拟的结果表明,在各种情况下,降低车身中的primay悬架的阻尼常数时,车身垂直加速度的功率谱密度和在三个车身参考点(在中心和相对于转向架)上计算出的行驶指数舒适度。轴,与参考值相比。作为速度的函数,由于几何过滤作用,减振对车身振动和乘坐舒适性产生相反的影响。

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