Suppr超能文献

基于一起电动自行车与汽车事故重建的自行车骑手头部损伤研究。

A study on cyclist head injuries based on an electric-bicycle to car accident reconstruction.

机构信息

The State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, Hunan University, Hunan, China.

Bioengineering Center, Wayne State University, Detroit , Michigan.

出版信息

Traffic Inj Prev. 2020;21(8):563-568. doi: 10.1080/15389588.2020.1821882. Epub 2020 Oct 14.

Abstract

OBJECTIVE

In China, the electric-bicycle (E-bike) has become one of the most common modes of travel. However, the safety of E-bike has not received sufficient attentions, especially in the area of protection of the cyclists' head.

METHODS

In this study, an E-bike-to-car accident was reconstructed using MADYMO and LS-DYNA software and head injuries of the cyclist were analyzed. A multi-rigid body model in MADYMO and a head to windshield impact finite element (FE) model using LS-DYNA were separately developed to achieve objectives of the work.

RESULTS

Kinematic responses of the cyclist were predicted by the multi-rigid body model to obtain the best reconstructed results compared to those given in the accident report, and the instantaneous linear and angular relative velocities at the onset of contact between the head and windshield, which were used as input loading conditions to the FE model, were obtained. The maximum principal strain (MPS) of skull, and intracranial pressure (ICP), von-Mises stress and MPS (Maximum principal strain) of brain tissue were predicted by the FE model for the head injuries analyses.

CONCLUSIONS

The results of accident reconstruction in this study case showed that: (1) The head impact region on the windshield in the E-bike-to-car impact accidents is higher than that in the pedestrian-to-car impact accidents. (2) The skull MPS, ICP, von-Mises stress and MPS of strain can accurately predict the head injury risk, location, etc. (3) The directly impact force caused the skull fracture, and the tensile inertial force torn bridge vein resulting in the subdural hematoma on the opposite side of impact in this accident. (4) The models developed in this study were validated against the reconstructed accident and can be used for further study on head injuries of E-bike's cyclist and helmet design.

摘要

目的

在中国,电动自行车(E-bike)已成为最常见的出行方式之一。然而,E-bike 的安全性尚未得到足够重视,尤其是在保护骑车人头部方面。

方法

本研究使用 MADYMO 和 LS-DYNA 软件重建了一起 E-bike 与汽车碰撞事故,并分析了骑车人的头部损伤。在 MADYMO 中建立了多刚体模型,在 LS-DYNA 中建立了头部与挡风玻璃碰撞的有限元(FE)模型,分别实现了工作目标。

结果

通过多刚体模型预测了骑车人的运动响应,以获得与事故报告中给出的结果相比更好的重建结果,并获得了头部与挡风玻璃接触瞬间的线性和角相对速度,将其作为 FE 模型的输入加载条件。通过 FE 模型预测了颅骨的最大主应变(MPS)、颅内压(ICP)、von-Mises 应力和脑组织的 MPS(最大主应变),以分析头部损伤。

结论

本研究案例中的事故重建结果表明:(1)E-bike 与汽车碰撞事故中,骑车人头部与挡风玻璃的碰撞区域高于行人与汽车碰撞事故。(2)颅骨 MPS、ICP、von-Mises 应力和应变的 MPS 可以准确预测头部损伤的风险、位置等。(3)直接撞击力导致颅骨骨折,拉伸惯性力撕裂对侧桥静脉导致对冲性硬膜下血肿。(4)本研究中建立的模型经过对重建事故的验证,可以用于进一步研究 E-bike 骑车人的头部损伤和头盔设计。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验