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An investigation into the effect of resilient wheel stiffness on the dynamic behaviour of a metro vehicle running along a tangent track

机译:弹性车轮刚度对沿切线轨道行驶的地铁车辆动态行为的影响研究

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Resilient wheels are extensively used for trams due to the noise reduction they can achieve. However, the effect of the resilient wheels on vehicle dynamics has not been adequately studied. An effort is presented in this paper, trying to bridge this gap. To simulate interactions between vehicle and track, the resilient wheel is modelled as a multi-rigid body system consisting of a rigid wheel core and a rigid rim between which a rubber layer is inserted. The rubber layer is regarded as three-directional spring-damper units, allowing the rim and core to have relative motions, so that the flexibility of the resilient wheel provided by the rubber layer is fully simulated. Then, the dynamics of a vehicle-track coupling system integrated with this resilient wheel model is simulated and compared with in-situ measurement. The simulation results show that, compared with a conventional solid wheel, the vertical vibration of the wheel core is much reduced in the frequency range of 70–300 Hz while the lateral vibration is much reduced in the frequency range of 90–300 Hz. The paper continues with the recommendation of the radial and axial stiffnesses, two key parameters of the resilient wheel, aiming to lower the wheel-rail contact force and carbody vibration.
机译:弹性车轮广泛用于有轨电车,因为它们可以实现降噪。然而,弹性车轮对车辆动力学的影响尚未得到充分研究。本文提出了一项努力,试图弥合这一差距。为了模拟车辆和轨道之间的相互作用,弹性车轮被建模为一个多刚性车身系统,该系统由刚性轮芯和刚性轮辋组成,刚性轮辋之间插入橡胶层。橡胶层被视为三向弹簧阻尼器单元,允许轮辋和铁芯有相对运动,从而充分模拟橡胶层提供的弹性车轮的柔韧性。然后,对与该弹性车轮模型集成的车辆-轨道耦合系统的动力学进行仿真,并与原位测量进行比较。仿真结果表明,与传统的实心轮相比,轮芯在70–300 Hz频率范围内的垂直振动大大降低,而在90–300 Hz频率范围内的横向振动大幅降低。本文继续推荐了径向刚度和轴向刚度,这是弹性车轮的两个关键参数,旨在降低轮轨接触力和车体振动。

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