首页> 外文会议>ASME biennial conference on engineering systems design and analysis >INJURY CRITERIA BASED OPTIMISATION OF AUTOMOBILE PASSIVE SAFETY SYSTEMS TO MITIGATE THE EFFECTS OF FULL-FRONTAL AUTOMOBILE COLLISIONS
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INJURY CRITERIA BASED OPTIMISATION OF AUTOMOBILE PASSIVE SAFETY SYSTEMS TO MITIGATE THE EFFECTS OF FULL-FRONTAL AUTOMOBILE COLLISIONS

机译:基于伤害准则的汽车被动安全系统优化,以减轻全车身汽车碰撞的影响

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Passive safety systems such as airbags, seat belts, and interior structural design of the automobile play a significant role in injury prevention of the occupant during collisions. Important design and operation parameters of the passive safety systems such as airbag firing times and steering wheel position as an interior design attribute potentially affect the dynamics of the occupant during impact and determine the amount of mitigation of a possible injury. This research aims to contribute towards improving passive safety systems in automobile design for mitigation of injuries by optimising the features and parameters of various subsystems such as driver's airbag and steering wheel. Two separate computational models, a 5~(th) percentile female and a 50~(th) percentile male, comprising of a typical automobile interior with passive safety systems are constructed in the specialised impact simulation software MADYMO. Two different crash pulses of 30 kph and 48 kph are applied to the computational human body models in full-frontal crashes. Passive safety system parameters; in particular, airbag firing times and steering wheel column angles, are varied to investigate their effects on the head, neck and upper torso through injury criteria. Injury criteria predictions are employed in optimisation algorithms to figure out the best combinations for passive safety system parameters in order to mitigate possible injuries for all drivers.
机译:被动安全系统,例如安全气囊,安全带和汽车的内部结构设计,在预防碰撞过程中对乘员的伤害方面起着重要作用。被动安全系统的重要设计和操作参数(例如,安全气囊触发时间和方向盘位置作为内部设计属性)可能会在碰撞过程中影响乘员的动态,并确定减轻可能伤害的程度。这项研究旨在通过优化各种子系统(例如驾驶员安全气囊和方向盘)的特征和参数,来改善汽车设计中的被动安全系统,以减轻伤害。在专门的碰撞模拟软件MADYMO中,构建了两个独立的计算模型,分别为女性百分率的百分之五和男性百分率的百分率,该模型由典型的汽车内饰和被动安全系统组成。在全额碰撞中,将两个分别为30 kph和48 kph的不同碰撞脉冲应用于计算人体模型。被动安全系统参数;特别是,通过伤害标准来改变安全气囊的点火时间和方向盘柱角度,以研究其对头部,颈部和上身的影响。在优化算法中采用伤害标准预测来找出被动安全系统参数的最佳组合,以减轻所有驾驶员可能受到的伤害。

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