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Finite Element Analysis of Pedestrian Lower Extremity Injuries in Car-to-Pedestrian Impacts

机译:汽车对行人冲击中行人下肢损伤的有限元分析

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In order to prevent lower extremity injuries to a pedestrian when struck by a car, it is important to elucidate the loadings from car front structures on the lower extremities and the injury mechanism caused by these loadings. In this study, using a human finite element (FE) model, a bending moment diagram and a stress diagram of tibia were introduced to examine the effects of loading from car structures. By the lower absorber of the car, the bending moment was distributed over the tibia with small moment at the upper tibia location that can reduce knee injury risk. Certain positions of the lower absorber reduced the tibia fracture risk. An FE analysis of a legform impact test using the TRL legform impactor was also conducted, and a relation was found between the injury criteria of the TRL legform impactor and the human FE model. High acceleration of the TRL legform impactor corresponded to the tibia fracture or MCL rupture of the human FE model.
机译:为了防止当撞车时对行人的下肢损伤,重要的是阐明从下肢上的车辆前结构和由这些载荷引起的损伤机制的负载。在本研究中,使用人的有限元(Fe)模型,引入了弯矩图和胫骨的应力图以检查装载从汽车结构的影响。通过较低的汽车吸收器,弯曲力矩分布在胫骨上的小时刻,可以减少膝关节伤害风险。较低吸收器的某些位置降低了胫骨裂缝风险。还进行了使用TRL Legform撞击器的Legform冲击试验的FE分析,并且在TRL Legform撞击者和人Fe模型的伤害标准之间发现了关系。 TRL Legform撞击器的高加速度对应于人Fe模型的胫骨裂缝或MCL破裂。

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