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The Effects of Curtain Airbag on Occupant Kinematics and Injury Index in Rollover Crash

机译:帘式安全气囊对侧翻碰撞中乘员运动学和伤害指数的影响

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Background. Occupant injuries in rollover crashes are associated with vehicle structural performance, as well as the restraint system design. For a better understanding of the occupant kinematics and injury index in certain rollover crash, it is essential to carry out dynamic vehicle rollover simulation with dummy included. Objective. This study focused on effects of curtain airbag (CAB) parameters on occupant kinematics and injury indexes in a rollover crash. Besides, optimized parameters of the CAB were proposed for the purpose of decreasing the occupant injuries in such rollover scenario. Method and Material. The vehicle motion from the physical test was introduced as the input for the numerical simulation, and the 50% Hybrid III dummy model from the MADYMO database was imported into a simulation model. The restraint system, including a validated CAB module, was introduced for occupant kinematics simulation and injury evaluation. TTF setting, maximum inflator pressure, and protection area of the CAB were analysed. Results. After introducing the curtain airbag, the maximum head acceleration was reduced from 91.60 g to 49.52 g, and the neck Mx and neck Fz were reduced significantly. Among these CAB parameters, the TTF setting had the largest effect on the head acceleration which could reduce 8.6 g furthermore after optimization. The neck Fz was decreased from 3766.48 N to 2571.77 N after optimization of CAB protection area. Conclusions. Avoiding hard contact is critical for the occupant protection in the rollover crashes. The simulation results indicated that occupant kinematics and certain injury indexes were improved with the help of CAB in such rollover scenario. Appropriate TTF setting and inflator selection could benefit occupant kinematics and injury indexes. Besides, it was advised to optimize the curtain airbag thickness around the head contact area to improve head and neck injury indexes.
机译:背景。翻车事故中的乘员伤害与车辆结构性能以及约束系统设计有关。为了更好地理解某些侧翻碰撞中的乘员运动学和伤害指数,必须进行包含假人的动态车辆侧翻仿真。目的。这项研究的重点是侧翻碰撞中帘式安全气囊(CAB)参数对乘员运动学和伤害指数的影响。此外,提出了CAB的优化参数,以减少这种侧翻情况下的乘员伤害。方法和材料。引入了来自物理测试的车辆运动作为数值模拟的输入,并将来自MADYMO数据库的50%Hybrid III虚拟模型导入了模拟模型。引入约束系统,包括经过验证的CAB模块,以进行乘员运动学仿真和伤害评估。分析了TTF设置,最大充气机压力和CAB的保护面积。结果。引入帘式安全气囊后,最大头部加速度从91.60μg降低至49.52μg,并且颈部Mx和颈部Fz显着降低。在这些CAB参数中,TTF设置对磁头加速度影响最大,优化后可进一步降低8.6μg。优化CAB保护区后,颈部Fz从3766.48 N降至2571.77N。结论。避免硬接触对于翻车事故中的乘员保护至关重要。仿真结果表明,在这种侧翻情况下,借助CAB改善了乘员的运动学和某些伤害指数。适当的TTF设置和充气机选择可以使乘员运动学和伤害指数受益。此外,建议优化头部接触区域周围的帘式安全气囊厚度,以改善头部和颈部的伤害指数。

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