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A numerical study of traumatic brain injury due to ground impact in an SUV-pedestrian crash using full-scale finite element models

机译:采用全尺寸有限元模型,SUV行人撞车撞击引起的创伤性脑损伤的数值研究

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A number of studies have worked on traffic injuries or traumas related to pedestrian impacts. However, most of them placed more focuses on traumatic injuries due to primary impact with a striking vehicle rather than those involved in secondary impact with the ground. In this study, a validated, human whole-body, pedestrian finite element model was utilized to investigate the potential risk of traumatic brain injury (TBI) relevant to the ground impact as well as primary head strike in an SUV-to-pedestrian collision. By conducting a set of numerical experiments at impact speed of 25and 40 km/h with pedestrian's pre-impact, transverse, traveling speed of 1.3 m/s, it was found that ground impact is likely to cause serious TBI even in a low impact speed level. Although the post-impact kinematics and subsequent kinetics were considerably unpredictable due to the intrinsic complexity of pedestrian impact, this finding also suggests that impact speed does not necessarily contribute to the severity of pedestrian TBI involving vehicle with a higher profile. In the future, an effective countermeasure for ground impact should be taken into account to reduce the risk of sustaining serious TBIs in pedestrian crashes.
机译:许多研究已经致力于与行人影响有关的交通伤害或创伤。然而,由于对撞击车辆的主要影响而不是参与与地面的二次冲击的人,他们中的大多数人都侧重于创伤伤害。在这项研究中,利用验证的人体全身行人有限元模型来研究与地面冲突相关的创伤性脑损伤(TBI)的潜在风险,以及在SUV到行人碰撞中的主要头部罢工。通过在250公里/小时的冲击速度下进行一套数值实验,具有行人的预冲击,横向行驶速度为1.3米/秒,发现即使在低冲击速度下也可能引起严重的TBI。等级。虽然后冲击后的运动学和随后的动力学由于行人影响的内在复杂性而显着不可预测,但这一发现也表明影响速度并不一定有助于涉及具有更高型材的车辆的行人TBI的严重程度。将来,应考虑到地面影响的有效对策,以降低行人坠毁中维持严重TBI的风险。

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