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Finite-element modelling of restrained occupant partial ejection under rollover conditions

机译:侧翻条件下约束乘员部分弹射的有限元建模

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Rollover fatalities and serious injuries represent a large portion of the harm occurring in traffic crashes in the United States. Restrained occupants whose heads are reported partially ejected have a much worse outcome than those whose heads are not partially ejected. Prevention of partial ejection represents a significant objective in automotive design. In this study, two methods are investigated involving an empirical methodology and a finite-element-model methodology. A finite-element model of a production vehicle is utilised under rollover impact conditions in conjunction with a restrained occupant characterised by a Hybrid III dummy. The properties of the model are compared with human volunteer characteristics in the production vehicle. The restrained occupant model is then utilised under rollover impact conditions with the baseline production vehicle and modified versions of the roof structure. Comparison of the results associated with the empirical method and finite-element method is provided as are the results of the effects of the modified roof structure on partial ejection.
机译:翻车事故死亡和重伤是美国交通事故中造成伤害的很大一部分。据报道头部被顶出的被约束的乘员比头部未被顶出的受约束的人要糟糕得多。防止部分喷射是汽车设计中的重要目标。在这项研究中,研究了两种方法,包括经验方法和有限元模型方法。在翻车冲击条件下,结合以混合动力III型假人为特征的受约束乘员,使用了生产车辆的有限元模型。将模型的属性与生产工具中的人类志愿者特征进行比较。然后,在翻车冲击条件下,将受约束的乘员模型与基准生产车辆和车顶结构的修改版本一起使用。提供了与经验方法和有限元方法相关的结果的比较,以及改进的屋面结构对部分喷射的影响结果。

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