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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part K: Journal of Multi-body Dynamics >A multi-body system approach for finite-element modelling of rail flexibility in railroad vehicle applications
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A multi-body system approach for finite-element modelling of rail flexibility in railroad vehicle applications

机译:铁路车辆应用中的铁路柔性有限元建模的多体系统方法

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In this investigation, a non-linear finite-element formulation for modelling the rail structural flexibility in multi-body railroad vehicle systems is presented. Two different types of interpolations are used in the kinematic equations developed in this study; the geometry interpolation and the deformation interpolation. In the proposed formulation, the rails can have arbitrary geometry, which is described using the isoparametric geometric interpolation. The coordinates of the polynomials used in this interpolation represent constant position and gradient coordinates, which can be used to describe accurately the rail geometry. On the other hand, the rail deflections are described using the deformation interpolation and the non-linear finite-element floating frame of reference formulation. In the formulation proposed in this investigation, the rail tangent and normal vectors as well as other geometric parameters such as the curvature and torsion at the wheel/rail contact points are expressed in terms of the rail deformation coordinates. The non-linear dynamic coupling between the rail geometry and the vehicle dynamics is also considered in the formulation proposed in this paper. In particular, the coupling between the rail deformation and geometry, contact coordinates, and the non-linear vehicle dynamics is taken into consideration. Furthermore, the longitudinal, lateral, and spin creepages are expressed in terms of the rail deformations, which are the result of the wheel/rail contact forces. This non-linear coupled analysis allows for more accurate prediction of the railroad vehicle dynamics. The main outcome of this study is the development of a new procedure that allows building a complex track model that includes significant details using a finite-element preprocessor computer program. The detailed track model can be used as an input to a general purpose flexible multi-body computer program for a non-linear analysis that accounts for the dynamic coupling between the track flexibility and the vehicle coordinates. Numerical results are presented in order to demonstrate the use of the formulation proposed in this study.
机译:在这项研究中,提出了一种用于建模多体铁路车辆系统中铁路结构柔性的非线性有限元公式。在本研究中开发的运动方程中使用了两种不同类型的插值。几何插值和变形插值。在提出的公式中,导轨可以具有任意几何形状,这使用等参几何插值来描述。此插值中使用的多项式的坐标表示恒定的位置和梯度坐标,可用于精确描述轨道几何形状。另一方面,使用变形插值和参考公式的非线性有限元浮动框架来描述钢轨的挠度。在这项研究中提出的公式中,钢轨切线和法线向量以及其他几何参数(例如,车轮/钢轨接触点处的曲率和扭转)以钢轨变形坐标表示。本文提出的公式还考虑了轨道几何形状与车辆动力学之间的非线性动态耦合。特别地,考虑了轨道变形和几何形状,接触坐标以及非线性车辆动力学之间的耦合。此外,纵向,横向和自转爬电距离是根据车轮/轨道接触力产生的轨道变形来表示的。这种非线性耦合分析可以更准确地预测铁路车辆的动力学。这项研究的主要成果是开发一种新的程序,该程序允许使用有限元预处理器计算机程序来构建包含重要细节的复杂轨道模型。详细的轨道模型可以用作通用的柔性多体计算机程序的输入,以进行非线性分析,从而解决了轨道柔性和车辆坐标之间的动态耦合问题。给出数值结果以证明本研究中提出的配方的使用。

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