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Modelling the effects of an inflatable tubular structure (ITS) on occupant kinematics and injury risk in the rollover of a sports utility vehicle (SUV)

机译:建模充气式管状结构(ITS)对运动型多功能车(SUV)侧翻时乘员运动学和伤害风险的影响

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The aims of this study are to investigate the responses of a Hybrid Ⅲ dummy and a human body model in rollover crashes of an SUV, and to assess the effect of an inflatable tubular structure (ITS) on the unrestrained occupant kinematics in rollover events. A SAEJ2114 rollover test of a 1994 Ford Explorer with an inflatable tubular structure (ITS) is simulated for two front row occupants, and validated in MADYMO. By removing the ITS, the simulation of the Hybrid Ⅲ dummy occupants without ITS is obtained. By replacing the dummy models with human body models, with and without ITS, two other simulations are also modelled. The kinematics and injury risks of the two occupant models are compared and evaluated. Significant differences exist in the motions, and injury levels of the dummies and human body models with and without ITS. ITS can offer significant protection to the head by cushioning the impact of the head on the roof or side windows, and can mitigate against occupant ejection. The flexibility of the spine and the neck of the human body models significantly affects the kinematics and the severity of the injuries of the occupants modelled, and so would also affect the relevance of the design of countermeasures developed from dummy tests to real-world rollover crashes of human beings.
机译:这项研究的目的是研究混合动力Ⅲ假人和人体模型在SUV侧翻碰撞中的反应,并评估充气式管状结构(ITS)对侧翻事件中不受约束的乘员运动学的影响。针对两名前排乘员对1994年福特福特Explorer具有可充气管状结构(ITS)的SAEJ2114侧翻测试进行了仿真,并在MADYMO中进行了验证。通过去除ITS,获得了没有ITS的HybridⅢ虚拟乘员的仿真。通过使用带有和不带有ITS的人体模型替换虚拟模型,还可以对其他两个仿真进行建模。比较和评估了两种乘员模型的运动学和伤害风险。带有和不带有ITS的假人和人体模型的运动和伤害水平存在显着差异。 ITS可以通过缓冲头部对车顶或侧窗的撞击来为头部提供重要的保护,并可以减轻乘员的弹出。人体模型的脊柱和颈部的柔韧性显着影响了建模的乘员的运动学和伤害的严重程度,因此也将影响从虚拟测试开发的对策设计与现实侧翻碰撞的相关性人类。

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