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Finite Element Analysis of Pedestrian-City Car Collisions to Assist Design of Pedestrian Friendly Front Structure

机译:行人城汽车碰撞的有限元分析,协助行人友好前结构设计

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Car-to-pedestrian collisions often cause serious injuries and deaths dramatically as pedestrians do not have any protection equipment. In order to design the front structure to be safer for pedestrians, it is necessary to understand kinematics and injury mechanisms of car-pedestrian collisions which can be obtained through the costly full-scale crash test of a dummy or a cadaver. Finite element simulations are an alternative mean which offer information of post-crash kinematics and injury mechanisms. This paper has presented finite element simulations of pedestrian-city car collisions by simulating legform impact test for assessment and validation. It has also been employed to simulate the full-scale pedestrian crash test. The post-crash kinematics and injury mechanisms of the pedestrian have been analysed. With the kinematics and injury information, the bumper beam of the front end of the car has been simply modified by introducing Al 6082 T6 to the bumper beam. The dynamics responses and injury parameters for head, chest, tibia and femur have been reduced significantly. These show that the car-to-pedestrian collision model can be employed to assist design and development of pedestrian friendly front structure of a vehicle.
机译:随着行人没有任何保护设备,汽车到行人碰撞常常急剧造成严重伤害和死亡。为了设计前部结构更安全的行人,有必要了解汽车行人碰撞的运动学和伤害机制,可以通过假人或尸体的昂贵的全尺度碰撞测试获得。有限元模拟是一种替代含义,其提供了崩溃后运动学和伤害机制的信息。本文通过模拟了评估和验证的legform冲击试验来提出了行人城市碰撞的有限元模拟。它也被用来模拟全面的行人碰撞测试。分析了行人的崩溃后运动学和伤害机制。利用运动学和伤害信息,通过将Al 6082 T6引入保险杠梁,简单地改变了汽车前端的保险杠梁。头部,胸部,胫骨和股骨的动力学响应和损伤参数显着降低。这些表明,可以采用汽车到行人碰撞模型来帮助设计和开发车辆的行人友好前结构。

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