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A MULTIBODY DYNAMICS APPROACH TO FRICTION WEDGE MODELING FOR FREIGHT TRAIN SUSPENSIONS

机译:货运车悬架摩擦楔形建模的多体动力学方法

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This paper presents an effort to use multi-body dynamics with unilateral contact to model the friction wedge interaction with the bolster and the side frame. The new friction wedge model is a 3D, dynamic, stand-alone model of a bolster-friction wedge-side frame assembly. It allows the wedge four degrees of freedom: vertical displacement, longitudinal (between the bolster and the side frame) displacement, toe-in and toe-out, and yaw (rotation about the vertical axis). The dedicated train modeling software NUCARS~Re has been used to run simulations with similar inputs and to compare - when possible - the results with those obtained from the new stand-alone MATLAB friction wedge model. The stand-alone model shows improvement in capturing the transient dynamics of the wedge better. Also, it can predict not only normal forces going into the frame and bolster, but also use the associated moments to enhance model behavior. Significant simulation results are presented and the main differences between the current NUCARS~Re model and the new stand-alone MATLAB models are highlighted.
机译:本文旨在使用多体动态与单侧接触来模拟摩擦楔与鞋垫和侧框架的互动。新的摩擦楔形模型是鞋垫 - 摩擦楔形侧框架组件的3D,动态,独立模型。它允许楔形四个自由度:垂直位移,纵向(凸起和侧框架之间)位移,脚趾和趾,横摆(绕垂直轴线旋转)。专用列车建模软件NUCARS〜RE已被用于运行具有类似输入的模拟,并在可能的情况下进行比较 - 从新的独立MATLAB摩擦楔模型获得的结果。独立模型显示更好地捕获楔形瞬态动态的改进。此外,它可以预测不仅可以进入帧和撑杆的正常力,还可以使用相关的时刻来增强模型行为。提出了显着的仿真结果,突出显示了当前NUCARS〜RE模型与新立场MATLAB模型之间的主要差异。

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