首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >A bumper model with dynamic contact stiffness for simulations of pedestrian legform impacts
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A bumper model with dynamic contact stiffness for simulations of pedestrian legform impacts

机译:具有动态接触刚度的保险杠模型,用于模拟行人腿部碰撞

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摘要

Car-to-pedestrian accidents have become a global problem, and car manufacturers have made great efforts to redesign the car for pedestrian protection. For fast computer simulations of pedestrian legform-to-bumper impacts, which are usually needed for the large design-of-experiments matrix, quite a number of simplified bumper models have been built to represent detailed finite element models adopted from full-vehicle models. However, it has been a difficult balance between simplifying the structure to achieve fast computation and keeping the essential characteristics to obtain valid results. This paper documents a development and validation of a simplified bumper system model. The spring stiffness properties are determined by considering the loading rate effect and the local deformation effect of the vehicle's front-end structure, which is essential for legform impact simulations. To validate the simplified bumper system model, the simulation results from the simplified bumper system model and from a detailed bumper system model are compared. This study also indicates that, to improve the responses of the legform bending and shear, the vehicle's bumper should be modelled as two separate spring systems since the impact interaction is within the knee joint centre of the legform.
机译:汽车行人交通事故已成为全球性问题,汽车制造商为重新设计汽车以保护行人付出了巨大的努力。对于大型的实验设计矩阵通常需要行人腿形到保险杠碰撞的快速计算机模拟,已经建立了许多简化的保险杠模型来表示从整车模型中采用的详细有限元模型。但是,在简化结构以实现快速计算与保持基本特征以获得有效结果之间一直存在困难的平衡。本文记录了简化保险杠系统模型的开发和验证。弹簧刚度特性是通过考虑车辆前端结构的加载速率效应和局部变形效应来确定的,这对于腿部碰撞模拟至关重要。为了验证简化的保险杠系统模型,比较了简化保险杠系统模型和详细保险杠系统模型的仿真结果。这项研究还表明,为了改善腿部弯曲和剪切的响应,车辆的保险杠应建模为两个单独的弹簧系统,因为冲击相互作用在腿部的膝关节中心内。

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