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首页> 外文期刊>International Journal of Automotive Technology >ANALYZING PEDESTRIAN HEAD INJURY TO DESIGN PEDESTRIAN-FRIENDLY HOODS
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ANALYZING PEDESTRIAN HEAD INJURY TO DESIGN PEDESTRIAN-FRIENDLY HOODS

机译:分析行人头部受伤以设计行人友好的帽子

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摘要

Head injuries are a major cause of fatalities in pedestrian-car accidents. The HIC (Head Injury Criterion) value, a measure of the fatality risk of a head injury, is calculated from the acceleration of the head's center of gravity (henceforth, head center) resulting from a head impact. The pedestrian's head does not impact the hood at a direction normal to the hood's surface. The direction of motion of the head center may change extremely rapidly upon impact, and normal acceleration may also significantly contribute to the resultant acceleration of the head center. Therefore, pedestrian head protection studies should consider how normal acceleration contributes to the resultant acceleration of the head center. It is necessary to control the resultant acceleration of the head center to produce an optimal characteristic pulse. This study analyzes the composition and variations of the head's acceleration in head-to-hood impacts, focusing on exactly how the normal and tangential components of the acceleration contribute to the resultant acceleration of the head center. This study also considers how structural design parameters affect each component of the resultant acceleration. Methods to control the resultant acceleration of the head center to produce an optimal characteristic pulse can be proposed based on the results of this study. The analytical models and the results of this study contribute to efforts to design vehicle hoods and pave the way for developing pedestrian protection technologies.
机译:头部受伤是导致行人车祸死亡的主要原因。 HIC(头部受伤标准)值是衡量头部受伤的致命危险的量度,它是根据头部撞击产生的头部重心(以下简称为头部中心)的加速度来计算的。行人的头部不会在垂直于引擎盖表面的方向上撞击引擎盖。头部中心的运动方向在撞击时可能会迅速变化,正常加速度也可能对头部中心的最终加速度产生重大影响。因此,行人头部保护研究应考虑法向加速度如何影响头部中心的最终加速度。必须控制磁头中心的最终加速度以产生最佳的特征脉冲。这项研究分析了头对头碰撞中头部加速度的组成和变化,重点是加速度的法向和切向分量如何对头部中心的最终加速度做出贡献。这项研究还考虑了结构设计参数如何影响合成加速度的每个分量。根据这项研究的结果,可以提出控制头部中心的合成加速度以产生最佳特征脉冲的方法。分析模型和这项研究的结果有助于设计汽车引擎盖,并为发展行人保护技术铺平了道路。

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