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Influencing Factors of Contact Force Distribution in Pedestrian Upper Legform Impact with Vehicle Front-End

机译:车辆前端对行人上长格冲击的接触力分布的影响因素

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Pedestrian upper leg impact protection is a challenging requirement in the Euro NCAP assessment. In upper legform to bonnet leading edge tests, the legform impact force, the legform intrusion and the injury parameters (impact force and bending moment measured on the upper legform) are highly related to design of vehicle front-end styling and structure, as well as clearance underneath bonnet leading edge. In the course of impact, the contact area variation has significant influence on the stress distribution and consequently the force and the bending moment on the upper legform. Using finite element simulations of upper legform impact with a typical sedan, the deformation of the legform and the vehicle structure, and the variation of the contact force distribution are characterized and analyzed. Based on the study, a method for calculating the contact force is put forward by assuming a shape of the contact zone on the upper legform and a stress distribution function within the contact zone. The calculation method is verified using a simplified model of vehicle front-end structure developed in a previous study. Then a parametric study is conducted using the simplified vehicle front-end model to study influence of key design variables. The results of the parametric study, to some extent, have revealed relationship among vehicle front-end design parameters such as styling, geometry and stiffness, contact characteristics such as the maximum stress on outer foam, and the injury parameters (mainly the impact force).
机译:行人上部腿部冲击保护是欧元NCAP评估中有挑战性的要求。在上限格式形成阀罩前沿测试,长格冲击力,长格侵入力和损伤参数(在上legform上测量的冲击力和弯矩)与车辆前端造型和结构的设计具有高度相关的,以及在帽子前沿下的间隙。在撞击过程中,接触面积变化对压力分布产生了显着影响,因此对上缘格的力和弯矩。利用具有典型轿厢的上长格式冲击的有限元模拟,具有伸缩性和车辆结构的变形,以及接触力分布的变形特征和分析。基于该研究,通过假设上legform上的接触区域和接触区内的应力分布函数的形状来提出一种计算接触力的方法。使用先前研究中开发的车辆前端结构的简化模型来验证计算方法。然后使用简化的车辆前端模型进行参数研究,以研究关键设计变量的影响。参数研究的结果在一定程度上透露了车辆前端设计参数之间的关系,例如造型,几何和刚度,接触特性,例如外泡沫的最大应力,以及损伤参数(主要是冲击力) 。

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