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A Full Finite Element Model for the Simulation of Friction-Induced Vibrations of Wheel/Rail Systems: Application to Curve Squeal Noise

机译:用于轮轨系统摩擦振动模拟的完整有限元模型:应用曲线尖噪声

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In this paper, a method is proposed for the modeling of dynamic wheel/rail frictional rolling contact. A full finite element formulation around the stationary position in an Eulerian reference frame is derived with a fine discretization of the contact surface combined with unilateral and Coulomb friction laws. Appropriate numerical techniques and reduction strategies are used in order to solve the non linear discrete equations in dynamic self-sustained conditions. In addition to the transient approach, a stability analysis allows the determination of unstable modes. This methodology is currently used in realistic wheel/rail contact in curves to simulate curve squeal.
机译:本文提出了一种方法,用于动态轮/轨摩擦滚动接触的建模。 围绕欧拉参考帧中的固定位置围绕静止位置的完整有限元制剂,其具有与单侧和库仑摩擦法联合的接触表面的精细分散化。 使用适当的数值和还原策略,以解决动态自持续条件中的非线性离散方程。 除了瞬态方法之外,稳定性分析允许确定不稳定模式。 该方法目前用于曲线的现实轮/轨道接触以模拟曲线尖叫。

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