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Determination of bumper styling and engineering parameters to reduce pedestrian leg injuries

机译:减少行人腿部损伤的保险杠造型和工程参数的测定

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The European Commission is proposing legislation aimed at reducing the severity of injuries sustained by pedestrians in the event of an impact with the front-end of a motor vehicle. One aspect of this proposed legislation is reducing the pedestrian's leg injuries due to contact with the bumper and frontal surfaces of a vehicle, assessed using a "pedestrian leg impact device," or "leg-form."This proposed legislation presents the challenge of designing a bumper system which achieves the required performance in the leg-form impact - without sacrificing the bumper's primary function of vehicle protection during low-speed impacts. The first step in meeting this challenge is to understand what effects the front-end geometry and stiffness have on the leg-form impact test results. These results will then need to be compared to low-sped impact performance to assess if the two requirements are compatible.This paper describes an investigation - using concept Finite Element models and a front-end variable geometry vehicle test buck - of the styling and engineering trade-offs for a pedestrians safe bumper system
机译:欧盟委员会正在提出立法,旨在减少行人伤害的严重程度,在机动车辆的前端的影响情况下发生冲击。这一拟议立法的一个方面正在减少由于车辆的保险杠和前表面接触的行人的腿部伤害,使用“行人腿部冲击装置”或“腿形式”评估。这一拟议的立法呈现出设计的挑战一种保险杠系统,实现了腿部冲击中所需的性能 - 而不牺牲在低速冲击期间车辆保护的保险杠的主要功能。遇到这一挑战的第一步是了解前端几何形状和刚度对腿部冲击试验结果的影响。然后,这些结果将需要与低速影响性能进行比较,以评估这两个要求是否兼容。本文介绍了一种调查 - 使用概念有限元模型和前端可变几何车辆测试降压 - 造型和工程行人的权衡安全保险杠系统

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