Yang Na, Liu Tao, Wang Jianfeng, Li Zhongyu, Li Weihua, Liu Yiqun
School of Automotive Engineering, Harbin Institute of Technology, Weihai, 264209, China.
Heliyon. 2023 Mar 8;9(3):e14346. doi: 10.1016/j.heliyon.2023.e14346. eCollection 2023 Mar.
Traumatic brain injury (TBI) is the main cause of driver death in electric two-wheeler accidents in China. Traumatic brain injury not only brings great threat to people's life safety, but also causes great economic losses in the process of national economic and social development. In this study, a head fluid-structure coupling finite element model was combined with a multi-rigid dummy body to form a finite element and multi-rigid body coupling model of an electric two-wheeler driver. Moreover, a human-vehicle-to-road combined system model was established that included a multi-rigid body two-wheeler model, a multi-rigid body vehicle model, and a road model, which is verified by an actual accident information. According to some simulation tests, moderate and severe nerve injuries may have happened to the driver although the HIC(Head Injury Criteria, common used in vehcile collision injury) is less than 1000. The result shows that the maximum pressure of the simulation result is 455.27 kPa, which exceeds the critical value of brain contusion. The overall relative error between simulation results and actual accident results is less than 10%. The driver model, especially the head model, can accurately simulate the bicyclist head injury and thereby provide a theoretical basis for the traffic injury assessment.
创伤性脑损伤(TBI)是中国电动两轮车事故中驾驶员死亡的主要原因。创伤性脑损伤不仅对人们的生命安全构成巨大威胁,而且在国民经济和社会发展过程中造成巨大经济损失。在本研究中,将头部流固耦合有限元模型与多刚体假人模型相结合,形成电动两轮车驾驶员的有限元和多刚体耦合模型。此外,建立了一个人车路联合系统模型,该模型包括多刚体两轮车模型、多刚体车辆模型和道路模型,并通过实际事故信息进行了验证。根据一些模拟测试,尽管头部损伤标准(HIC,车辆碰撞损伤中常用)小于1000,但驾驶员可能已经发生了中度和重度神经损伤。结果表明,模拟结果的最大压力为455.27kPa,超过了脑挫伤的临界值。模拟结果与实际事故结果的总体相对误差小于10%。该驾驶员模型,尤其是头部模型,能够准确模拟电动两轮车骑行者的头部损伤,从而为交通伤害评估提供理论依据。