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Study of Aluminum Foam Sandwiched Bonnet Based on Pedestrian Protection and Orthogonal Design

机译:基于行人保护和正交设计的泡沫铝夹层发动机盖研究。

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摘要

In order to reduce head injuries during vehicle-to-pedestrian impacts, the aluminum foam sandwiched (AFS) bonnet was designed and analyzed. Firstly, the finite element models of the pedestrian-engine bonnet were established according to the statutes of the EEVC WG17. The acceleration curve and head injury criterion (HIC) of each test point were obtained. Secondly, the original engine bonnet materials were changed to AFS materials. The parameters of the new engine bonnet were preliminarily designed. Referring to head protection, the material parameter combinations were studied by using an orthogonal experimental design method. Finally, a weight analysis was carried out. The results indicated that the new bonnet could protect a pedestrian's head effectively and also reduce the weight of the vehicle to improve fuel economy.
机译:为了减少车辆与行人碰撞时的头部伤害,设计并分析了铝泡沫夹层(AFS)阀盖。首先,根据EEVC WG17的法规建立了行人发动机罩的有限元模型。获得了每个测试点的加速度曲线和头部受伤标准(HIC)。其次,将原始发动机罩材料更改为AFS材料。初步设计了新发动机罩的参数。关于头部保护,通过正交实验设计方法研究了材料参数组合。最后,进行重量分析。结果表明,新的发动机罩可以有效地保护行人的头部,并减轻车辆的重量,从而提高燃油经济性。

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