首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part K: Journal of Multi-body Dynamics >Finite element analysis of a Timoshenko beam traversed by a moving vehicle
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Finite element analysis of a Timoshenko beam traversed by a moving vehicle

机译:行驶中的车辆横越蒂莫申科光束的有限元分析

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In this study the finite element formulation for the dynamics of a bridge traversed by moving vehicles is presented. The vehicle including the driver and the passenger is modelled as a half-car planner model with six degree of freedom, travelling on the bridge with constant velocity. The bridge is modelled as a uniform beam with simply supported end conditions that obeys the Timoshenko beam theory. The governing equations of motion are derived using the extended Hamilton principle and then transformed into the finite element format by using the weak-form formulation. The Newmark-β method is utilized to solve the governing equations and the results are compared with those reported in the literature. Furthermore, the maximum values of deflection for the Timoshenko and Euler–Bernoulli beams have been compared. The results illustrated that as the velocity of the vehicle increases, the difference between the maximum beam deflections in the two beam models becomes more significant.
机译:在这项研究中,提出了对行驶中的车辆横穿的桥梁进行动力学分析的有限元公式。包括驾驶员和乘客在内的车辆被建模为具有六个自由度的半车规划器模型,并以恒定速度在桥上行驶。桥梁建模为均布梁,其简单支撑的端部条件遵守Timoshenko梁理论。使用扩展的汉密尔顿原理导出运动的控制方程,然后使用弱形式将其转换为有限元格式。使用Newmark-β方法求解控制方程,并将结果与​​文献报道相比较。此外,比较了Timoshenko和Euler-Bernoulli光束的最大挠度。结果表明,随着车辆速度的增加,两个光束模型中最大光束偏转之间的差异变得更加明显。

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