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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Numerical assessment of occupant responses during the bus rollover test: A finite element parametric study
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Numerical assessment of occupant responses during the bus rollover test: A finite element parametric study

机译:公交车滚动试验期间乘员响应的数值评估:有限元参数研究

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摘要

Rollover crashes of buses are usually associated with multiple impacts that can result in complex interactions between passengers and a bus superstructure. Although there have been a few field data studies that provide some insights into occupant injuries (e.g. severity and distribution of injuries) during the real-world bus rollover crash, because they had used post-crash data, the occupant kinematics and injury mechanisms were not completely detailed in their results. Based on a literature review, available numerical and experimental studies on a bus rollover safety have mainly focused on structural integrity rather than considering occupant responses in their assessment. In addition, their results about occupant responses in bus rollover crashes show some discrepancies in terms of the estimated injury distribution, severity, and causes. Therefore, the main objective of this study was to provide a more detailed understanding of the occupant kinematics and associated injury risk during the ECE R66 tilt table bus rollover test using validated finite element (FE) models. The ECE R66 tilt table rollover was simulated using a full finite element model of the bus. A 50th percentile male Hybrid III Anthropomorphic test device (ATD) and EuroSID-2re FE models were selected to simulate the occupant's motion. Each ATD was seated adjacent to the impacted side wall and restrained with a 2-point seatbelt. Simulation parameters included two impact surface friction values and different side window conditions. The results indicated that both ATD estimated the highest injury risk when the partial ejection occurred. They predicted a similar injury risk for the head and thorax. The ES-2re estimated a very low risk of neck injury in all simulations, whereas the Hybrid III estimated the high risk of a neck injury. Finally, recommendations to potentially reduce the injuries were provided and possible future works were suggested.
机译:横向撞车的公共汽车通常与多种影响有关,这可能导致乘客与公共汽车上层建筑之间的复杂相互作用。虽然有一些现场数据研究,但在真实世界的公交车滚动崩溃期间提供了一些洞察患者伤害(例如伤害的严重程度和分布),因为他们使用了崩溃后的数据,所以乘员运动学和伤害机制不是完全详细说明他们的结果。基于文献综述,公交车滚动安全的可用数值和实验研究主要集中在结构完整性上,而不是考虑评估中的占用响应。此外,它们关于总线滚动崩溃中的乘员响应的结果表明估计损伤分布,严重程度和原因方面的一些差异。因此,本研究的主要目的是在ECE R66倾斜表总线滚动测试中提供对乘员运动学和相关伤害风险的更详细了解,使用验证的有限元模型。使用总线的完整有限元模型进行模拟ECE R66倾斜表翻转。选择了第50个百分位的男性杂交III拟人测试装置(ATD)和Eurosid-2RE FE模型来模拟乘员的运动。每个ATD都靠近撞击的侧壁,并限制为2点安全带。仿真参数包括两个冲击表面摩擦值和不同的侧窗条件。结果表明,ATD两次估计部分喷射发生时损伤最高风险。他们预测了头部和胸部的类似伤害风险。 ES-2RE估计所有模拟中颈部损伤的风险非常低,而杂交III估计颈部损伤的高风险。最后,提供了可能降低伤害的建议,并提出了可能的工程。

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