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Analytical investigation of driver thoracic response to out of position airbag deployment

机译:司机胸部响应超出位置安全气囊部署的分析研究

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A finite element model of the human thorax was merged with a rigid body finite element implementation of the hybrid III dummy (after removal of the hybrid III thorax) and the combined model is used in simulations of an out of position driver during airbag deployment. Parameters related to injury, such as A-P thorax deformation, viscous criterion, rib stress distribution and strain in the thoracic contents are used to quantify the thoracic injury response. Initial driver position is varied to examine the relationship between distance from the airbag module and thoracic injury risk. The potential for injury mitigation through modulation of airbag inflation after initiation is also investigated. The utility of the combined model as an effective tool for the analysis of occupant kinematics and dynamics, examination of injury mechanisms, and optimization of restraint system design parameters is demonstrated.
机译:人胸部的有限元模型与杂交III虚拟的刚体有限元实施合并(除去混合III胸部),并且组合模型用于在安全气囊部署期间模拟出位驱动器的仿真。与损伤有关的参数,例如A-P胸部变形,粘性标准,胸内容物中的粘性标准,肋骨应力分布和菌株用于量化胸损伤反应。初始驱动器位置变化以检查距安全气囊模块和胸损伤风险之间的距离之间的关系。还研究了启动后通过调制安全气囊膨胀的损伤潜力。综合模型作为分析乘员运动学和动力学,伤害机制检查以及约束系统设计参数的优化的实用性。

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