首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering >Design of a bumper system for pedestrian lower-leg protection using the Taguchi method
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Design of a bumper system for pedestrian lower-leg protection using the Taguchi method

机译:Taguchi方法设计的行人小腿保护保险杠系统

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The main aim of this study is to design a bumper system which is capable of lessening the possibility of pedestrian lower-extremity injuries in car–pedestrian collisions. The current pedestrian safety regulation recognized by most countries worldwide is to apply a lower-legform impactor to assess the lower-extremity injuries during impact. Therefore, a numerical pedestrian lower-legform impactor is developed based on the finite element method to evaluate the bumper safety in the study. Five design parameters for the bumper system, according to the stiffness and geometry of the energy absorber and the bumper beam, are selected to demonstrate this design strategy. The sensitivities of these design parameters are analysed by means of the Taguchi method to reduce the leg injuries of a pedestrian based on impact tests defined by the European Enhanced Vehicle-Safety Committee (EEVC). Consequently, the optimal combination is attained, and the result satisfies the EEVC criteria on the protection of a pedestrian from leg injury.
机译:这项研究的主要目的是设计一种保险杠系统,该系统能够减少行人与人之间碰撞时下肢受伤的可能性。全球大多数国家/地区都认可的当前行人安全法规是使用小腿撞击器来评估撞击过程中下肢的伤害。因此,在有限元方法的基础上,研制了一种数字式行人小腿撞击器,以评估保险杠的安全性。根据能量吸收器和保险杠的刚度和几何形状,选择了保险杠系统的五个设计参数来演示该设计策略。根据欧洲增强车辆安全委员会(EEVC)定义的冲击试验,通过Taguchi方法分析了这些设计参数的敏感性,以减少行人的腿部受伤。结果,获得了最佳的组合,并且结果满足了关于保护行人免受腿部伤害的EEVC标准。

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