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首页> 外文期刊>Accident Analysis & Prevention >Determination of pre-impact occupant postures and analysis of consequences on injury outcome-Part Ⅱ: Biomechanical study
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Determination of pre-impact occupant postures and analysis of consequences on injury outcome-Part Ⅱ: Biomechanical study

机译:撞击前乘员姿势的确定及其对伤害结果的影响分析第二部分:生物力学研究

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摘要

This paper considers pre-impact vehicle maneuvers and analyzes the resulting driver motion from their comfort seating position. Part I of this work consisted of analyzing the driver behavior during a simulated crash in a car driving simulator. The configuration of the virtual accident led to an unavoidable frontal crash with a truck. The typical response to this type of emergency event was to brace rearward into the seat and to straighten the arms against the steering wheel, or, to swerve to attempt to avoid the impacting vehicle. In a turn crossover maneuvers, the forearm is directly positioned on the airbag module at time of crash. This position represents a potential injurious situation and is investigated in this Part II. Static airbag-deployment tests were realized in collaboration with Zodiac using conventional airbag (sewn cushion, pyrotechnical system and open event) and a Hybrid 111 50th Male Dummy seated with the left arm positioned in the path of the deploying airbag. These experiments were numerically reproduced with Madymo~? and the ellipsoid Hybrid III dummy model. The dummy arm interaction with airbag was correlated with experiments. Then, a numerical simulation of a frontal collision at 56 km/h was realized. The results of the computational runs put forward injurious situations when the driver's arm was in front of the steering wheel. Indeed, in this case, the arm could hit the head under airbag deployment and induced serious neck bending and violent head launching. To mitigate head and neck trauma in this out-of-position situation, an airbag prototype (bonded cushion, two pure helium cold gas generators allowing mono- or multi-stage inflating, patented silicone membrane) was proposed by Zodiac. The results of static airbag-deployment tests with conventional and prototype airbags showed a significant reduction of the maximum linear head acceleration and neck bending with airbag prototype when a dual stage inflating was ignited, due to a reduced 'flinging' of the arm.
机译:本文考虑了碰撞前车辆的操纵,并从驾驶员舒适的座椅位置分析了产生的驾驶员运动。这项工作的第一部分包括在汽车驾驶模拟器中模拟撞车过程中分析驾驶员的行为。虚拟事故的发生导致不可避免的卡车正面碰撞。对此类紧急事件的典型响应是向后撑到座椅上,将手臂伸直抵靠方向盘,或者转弯以避开碰撞的车辆。在转弯操作中,发生碰撞时,前臂直接位于安全气囊模块上。此职位代表潜在的伤害情况,并且在第二部分中对此进行了调查。通过与Zodiac协作,使用常规安全气囊(缝制气垫,烟火系统和打开事件)和将Hybrid 111 50th Male Dummy左臂坐在展开安全气囊的路径上坐下来,完成了静态安全气囊展开测试。这些实验是用Madymo ??数值再现的。和椭球Hybrid III虚拟模型。假人手臂与安全气囊的相互作用与实验相关。然后,以56 km / h的速度对正面碰撞进行了数值模拟。当驾驶员的手臂位于方向盘前方时,计算结果会提出有害的情况。确实,在这种情况下,手臂可能在安全气囊展开的情况下撞到头部,并导致严重的颈部弯曲和剧烈的头部发射。为了减轻这种不适当的位置时头部和颈部的创伤,Zodiac提出了一种气囊原型机(粘合垫,两个允许单级或多级充气的纯氦冷气体发生器,获得专利的有机硅膜)。使用常规气囊和原型气囊进行静态气囊展开测试的结果表明,由于手臂的“甩动”减少,在进行双阶段充气时,气囊原型的最大线性头部加速度和颈部弯曲显着降低。

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  • 来源
    《Accident Analysis & Prevention 》 |2011年第1期| p.75-81| 共7页
  • 作者单位

    Laboratory of Industrial and Human Automation, Mechanics and Computer Science LAMIH, University of Valenciennes, F-59313 Valenciennes, France University of Lille Nord de France F-59000 Lille France CNRS, FRE 3304, F-59313 Valenciennes, France Laboratory of Industrial and Human Automation,Mechanics and Computer Science LAMIH, University of Valenciennes, Le Mont Houy,F-59313 Valenciennes, France;

    Laboratory of Industrial and Human Automation, Mechanics and Computer Science LAMIH, University of Valenciennes, F-59313 Valenciennes, France University of Lille Nord de France F-59000 Lille France CNRS, FRE 3304, F-59313 Valenciennes, France;

    Laboratory of Industrial and Human Automation, Mechanics and Computer Science LAMIH, University of Valenciennes, F-59313 Valenciennes, France University of Lille Nord de France F-59000 Lille France CNRS, FRE 3304, F-59313 Valenciennes, France;

    Laboratory of Industrial and Human Automation, Mechanics and Computer Science LAMIH, University of Valenciennes, F-59313 Valenciennes, France University of Lille Nord de France F-59000 Lille France CNRS, FRE 3304, F-59313 Valenciennes, France;

    Laboratory of Industrial and Human Automation, Mechanics and Computer Science LAMIH, University of Valenciennes, F-59313 Valenciennes, France University of Lille Nord de France F-59000 Lille France CNRS, FRE 3304, F-59313 Valenciennes, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pre-crash; multi-body; airbag; upper limbs; out-of-position; hybrid iii;

    机译:崩溃前多体安全气囊上肢;错位混合动力三;

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