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首页> 外文期刊>International Journal of Vehicle Safety >Vehicle front impact safety design using a hybrid methodology
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Vehicle front impact safety design using a hybrid methodology

机译:使用混合方法的车辆前部碰撞安全设计

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摘要

Computer-aided engineering (CAE), based on techniques like finite element modeling and analysis, can be considered as the backbone for designing complex systems such as automobiles. However, for highly nonlinear problems such as automotive crashworthiness and occupant safety design, a major problem is posed in terms of computational efficiency, modeling efforts, and model quality. For a design engineer thus, judicious employment of various tools such as statistical regression analysis, lumped parameter modeling, and detailed finite element-based simulation can be the key for achieving an optimized design in a competitive design cycle. The current study highlights a hybrid methodology resulting from the application of these various techniques in an integrated manner for front impact safety design of vehicle platforms. In particular, new regression models are presented and the hybrid approach is demonstrated with an aluminium-intensive vehicle using LS-DYNA for detailed frontal US-NCAP analysis.
机译:基于诸如有限元建模和分析等技术的计算机辅助工程(CAE)可被视为设计复杂系统(例如汽车)的基础。但是,对于高度非线性的问题,例如汽车防撞性和乘员安全设计,主要问题是计算效率,建模工作和模型质量。因此,对于设计工程师而言,明智地采用各种工具(例如统计回归分析,集总参数建模和详细的基于有限元的仿真)可能是在竞争性设计周期中实现优化设计的关键。当前的研究突出了一种混合方法,该方法是通过将这些各种技术以集成的方式应用于车辆平台的前撞安全设计而产生的。特别是,提出了新的回归模型,并使用铝密集型车辆使用LS-DYNA进行了详细的正面US-NCAP分析,从而证明了混合方法。

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