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Assessment of Pelvis and Upper Leg Injury Risk in Car-Pedestrian Collisions: Comparison of Accident Statistics, Impactor Tests and a Human Body Finite Element Model

机译:汽车行人碰撞中骨盆和大腿伤害风险评估:事故统计,影响力测试和人体有限元模型的比较

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In this study, we first present a comparison between pelvis/upper leg injuries observed in real-world accidents as recorded in the database of the Medical University of Hanover, and the EEVC test results of corresponding cars as published by EuroNCAP. The fact that modern cars with rounded hood edges cause very few pelvis/upper leg injuries is discussed against the findings of the EEVC tests, where these cars do not perform significantly better than their older counterparts with sharper hood leading edges. This discrepancy could be due to the fact that the radius of the hood edge is not accounted for in the current version of the test protocol. In a second step, various impacts against several different simplified hood shapes were simulated using a detailed finite element model of a 50th percentile male pedestrian. The finite element model (THUMS) has been extensively validated against PMHS experiments in previous studies. The validated model affords detailed insight into pelvic and femoral deformations and loading patterns, and reveals, as expected, that the shape of the hood leading edge plays a critical role in the resulting biomechanical loading patterns. Based upon the results of this study, recommendations are offered for a more appropriate characterization of the hood shape with regard to pelvis/upper leg injury risk.
机译:在这项研究中,我们首先在汉诺威医科大学数据库中记录的现实世界意外观察到的骨盆/上腿伤的比较,以及EureOncap公布的相应车的EEVC测试结果。现代汽车与圆形罩边缘的现代汽车导致很少有骨盆/上腿损伤是针对EEVC测试的调查结果讨论的,其中这些汽车不会比其更旧的罩领先边缘更好地表现得比其旧的对应物更好。这种差异可能是由于在测试协议的当前版本中没有考虑罩边缘的半径。在第二步中,使用第50百分位男性行人的详细有限元模型来模拟针对几种不同简化的罩形状的各种影响。有限元模型(Thums)已被广泛验证以前研究的PMHS实验。经过验证的模型提供了对盆腔和股骨变形和装载图案的详细洞察,并按预期揭示了罩前缘的形状在所产生的生物力学装载模式中起着关键作用。基于本研究的结果,提供了在骨盆/上腿部伤害风险方面更适当表征引擎盖形状的建议。

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