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Stiffness-based method for improving pedestrian leg protection performance of vehicle front-end

机译:基于刚度的车辆前端行人腿保护性能提高方法

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In vehicle-to-pedestrian impact accidents, the lower limb is the most commonly injured body part. The current regulation used the pedestrian legform test method to assess the pedestrian leg protection performance, which imposed new design requirements for vehicle front end. In order to better understand the effects of vehicle front end structures on the pedestrian legform peak acceleration, a stiffness-based method was proposed, which gave an overall consideration to the geometrical and stiffness variables of vehicle bumper, spoiler and bonnet leading edge structures. A series of 24 finite element simulations were conducted to investigate the correlation between the total stiffness and design variables of the vehicle front-end. By comparing the total stiffness and the local stiffness of front-end structures, the effects of front-end design variables on the legform peak acceleration could be obtained, which help engineers rapidly find the solution to vehicle design improvement.
机译:在车辆对人行的碰撞事故中,下肢是最常见的身体受伤部位。当前法规使用行人腿形测试方法评估行人腿保护性能,从而对车辆前端提出了新的设计要求。为了更好地理解车辆前端结构对行人腿形峰值加速度的影响,提出了一种基于刚度的方法,该方法全面考虑了车辆保险杠,扰流板和发动机罩前缘结构的几何和刚度变量。进行了一系列的24个有限元模拟,以研究车辆前端的总刚度和设计变量之间的相关性。通过比较前端结构的总刚度和局部刚度,可以获得前端设计变量对腿形峰值加速度的影响,这有助于工程师快速找到改进车辆设计的解决方案。

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