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Design optimization of vehicle structures for crashworthiness via equivalent mechanism approximations

机译:通过等效机构近似设计克雷什结构的车辆结构优化

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A new method for crashworthiness optimization of vehicle structures is presented, where an early design exploration is done by the optimization of an equivalent mechanism approximating a vehicle structure. An equivalent mechanism (EM) is a network of rigid bodies connected by prismatic and revolute joints with special nonlinear springs. These springs are designed to mimic the force-displacement characteristics of thin-walled beams often found in the vehicle body structures. A computer software is implemented that allows the designer to quickly construct an equivalent mechanism model of a structure using a graphical user interface (GUI) to optimize the model for given objectives prior to final tuning using finite element (FE) models. A case study of a vehicle front substructure consisting of mid and lower rails is presented, which demonstrates that the new approach can obtain a better design with less computational resources than the direct optimization of a FE model.
机译:提出了一种新的车辆结构优化方法,其中通过优化近似车辆结构的等效机构来完成早期设计探索。等效机制(EM)是由具有特殊非线性弹簧的棱镜和旋转接头连接的刚体网络。这些弹簧设计用于模拟通常在车身结构中发现的薄壁梁的力位移特性。实现了计算机软件,其允许设计者使用图形用户界面(GUI)快速构建结构的等效机制模型(GUI),以在使用有限元(FE)模型之前在最终调谐之前优化给定目标的模型。提出了一种由中型和下轨组成的车辆前部结构的案例研究,这表明新方法可以获得比FE模型的直接优化更少的计算资源设计。

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