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VALIDATION OF A PEDESTRIAN SEDAN BUCK USING A HUMAN FINITE ELEMENT MODEL11-0277

机译:使用人的有限元模型11-0277验证行人轿车轿车

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For the purpose of reproducing complex vehicle-pedestrian interactions using a simplified and standardized vehicle model, a previous study has developed a computational model for a generic buck to reproduce car-small sedan interaction using a standardized vehicle front model. Although the previous study validated the buck model using a finite element (FE) model for a pedestrian dummy in terms of pedestrian kinematics and vehicle-pedestrian contact forces, the buck structure has not been further validated with regard to responses of injury measures against a more biofidelic tool such as a human FE model. The objective of this study was to evaluate the buck model representing a small sedan developed in the previous study (Untaroiu et al., ESV 2009) against a human FE model in terms of pedestrian kinematics and injury measures from comparisons between the buck and full vehicle models. A human FE model developed by Takahashi et al. (IRCOBI 2010) was used in the current study. For the purpose of validating the buck model, an FE vehicle model representing the same small sedan was also used for comparisons. The pedestrian model was hit by the center of both vehicle models laterally at a baseline impact velocity of 40 km/h used by the previous study. In order to evaluate robustness of the buck model against impact velocity, impact simulations were performed at 20 and 60 km/h as well. The results of the comparisons showed that the pedestrian kinematics and values of injury parameters were generally well reproduced by the buck model compared to the vehicle model. It was also found that for enhanced representation of the responses of injury measures to the pelvis and lower limb, some modifications to the buck components are suggested in terms of geometry, material property and structure.
机译:为了使用简化和标准化的车辆模型再现复杂的车辆行人相互作用,前一项研究开发了一种用于使用标准化车辆前线模型再现汽车小型轿车相互作用的通用降压的计算模型。虽然之前的研究使用有限元(Fe)模型对行人运动学和车辆行人接触力方面的有限元(FE)模型进行了验证了降压模型,但在伤害措施的响应方面,没有进一步验证降压结构对抗更多生物裂解工具如人的Fe模型。本研究的目的是评估代表前一项研究(Untaroiu等,ESV 2009)开发的小型轿车的降压模型,以便在降压和全车辆之间的比较中的行人运动学和伤害措施方面反对人类FE模型楷模。由Takahashi等人开发的人力FE模型。 (Ircobi 2010)用于目前的研究。为了验证降压模型,还用于比较相同小型轿车的FE车辆模型进行比较。行人模型由两辆车型号的中心横向击中前一项研究使用的40 km / h的基线冲击速度。为了评估降压模型的稳健性,抵抗冲击速度,影响模拟在20千米/小时内进行。比较结果表明,与车辆模型相比,降压模型的行人运动学和损伤参数的价值通常很好地再现。还发现,为了增强损伤措施对骨盆和下肢反应的表示,在几何形状,材料性能和结构方面提出了对降压组分的一些修改。

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