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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Improvement of Virtual Vehicle Analysis Efficiency with Optimal Modes Selection in Flexible Multi-Body Dynamics
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Improvement of Virtual Vehicle Analysis Efficiency with Optimal Modes Selection in Flexible Multi-Body Dynamics

机译:通过灵活的多体动力学中的最佳模式选择来提高虚拟车辆分析效率

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摘要

In the analysis for durability or R&H performance with the full vehicle multibody models, the need for component flexibility is increasing along with demand for more precise full vehicle system. The component elastic deformations are usually expressed by modal superposition from component normal mode analysis with finite element model for reducing model size and simulation time. Although the simulation results of MBD analysis are more accurate according to increasing the number of flexible body and modes, the increasing of flexible components makes worse simulation time and convergence in MBD analysis. Especially, in the MBD analysis including a flexible upper body, in substitution for large number degree of freedom FE model such as trimmed body, it should take a few times longer than the case of rigid upper body This paper proposes the methods of reducing computational cost with adequate mode selections without the loss of simulation accuracy in the flexible MBD. An optimal modes selection method employs modal participation factor calculated with only modal deformation shapes at the interface nodes of flexible body. Examples are provided that demonstrate the performance of the method and also how to select essential modes for using only external (interface) modes shape information.
机译:在对整车多体模型的耐久性或R&H性能进行分析时,随着对更精确的整车系统的需求,对组件灵活性的需求也在增加。部件的弹性变形通常通过模态叠加来表示,模态叠加来自于使用有限元模型进行的部件正模分析,以减少模型尺寸和缩短仿真时间。尽管随着挠性体和模式数量的增加,MBD分析的仿真结果更加准确,但是挠性组件的增加使得MBD分析的仿真时间和收敛性变差。特别是在包括柔性上身的MBD分析中,代替修剪主体等大量自由度有限元模型,其花费比刚性上身的时间长几倍。本文提出了降低计算成本的方法具有足够的模式选择,而不会损失灵活MBD中的仿真精度。最优模式选择方法采用仅在柔性体的界面节点处具有模态变形形状的模态参与因子。提供了一些示例,这些示例演示了该方法的性能以及如何选择仅使用外部(界面)模式形状信息的基本模式。

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