Influence of Interference between Vertical and Roll Vibrations on the Dynamic Behaviour of the Railway Bogie

IF 1.9 Q3 ENGINEERING, MECHANICAL
Vibration Pub Date : 2022-09-23 DOI:10.3390/vibration5040039
M. Dumitriu, Ioana Izabela Apostol
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Abstract

This paper investigates the dynamic behaviour of a two-axle bogie under the influence of interference between the vertical vibrations of bounce and pitch—generated by the track irregularities—and the roll horizontal vibrations—excited by the asymmetry in the suspension damping that can be caused by the failure of a damper during exploitation. For this purpose, the results of numerical simulations are being used, as developed on the basis of two original models of the bogie-track system, namely the model of the bogie with symmetrical damping of the suspension—track and the model of the bogie with asymmetrical damping of the suspension—track, respectively. The dynamic behaviour of the bogie with symmetrical/asymmetrical damping is evaluated in five reference points of the bogie regime of vibrations, based on the Root Mean Square of acceleration (RMS acceleration). The results thus obtained highlight the characteristics regarding the symmetry/asymmetry of the regime of vibrations in the bogie reference points and the location of the critical point of the bogie regime of vibrations. The influence of the suspension asymmetry upon the dynamic behaviour of the bogie is analysed in an original manner, hence leading to conclusions that might establish themselves as the starting point of a new fault detection method of the dampers in the primary suspension of the railway vehicle.
垂直振动和滚动振动干扰对铁路转向架动力学性能的影响
本文研究了双轴转向架在轨道不规则性产生的弹跳和俯仰垂直振动与使用过程中阻尼器失效引起的悬架阻尼不对称引起的滚动水平振动之间的干扰影响下的动力学行为。为此,使用了在转向架-轨道系统的两个原始模型的基础上开发的数值模拟结果,即分别具有悬架-轨道对称阻尼的转向架模型和悬架-轨道不对称阻尼的转向机模型。基于加速度均方根(RMS加速度),在转向架振动状态的五个参考点中评估具有对称/非对称阻尼的转向架的动态特性。由此获得的结果突出了转向架参考点中振动状态的对称性/不对称性以及转向架振动状态的临界点的位置的特征。以原始的方式分析了悬架不对称性对转向架动态性能的影响,从而得出的结论可能会成为铁路车辆主悬架减振器故障检测新方法的起点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.20
自引率
0.00%
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0
审稿时长
10 weeks
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