基于有限元和多体耦合建模的人车碰撞速度重构

Q. Yuan, H. Yang, Junwei Zhao, Yibing Li
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引用次数: 2

摘要

为了确定行人与车辆碰撞时挡风玻璃裂纹半径与碰撞速度的关系,建立了行人与车辆碰撞时挡风玻璃裂纹扩展有限元模型、行人与车辆碰撞多体模型以及改进的耦合模型。在此基础上,分析了构造参数对碰撞响应的影响,确定了合理的参数。并通过实际事故案例验证了模型的有效性。通过速度为10-15m/s、减速为6m/s2的碰撞模拟,得到了相应碰撞条件下环形裂纹的半径以及碰撞速度和半径的经验公式。所得结论可为碰撞速度的重建提供新的思路和方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Speed Reconstruction of Pedestrian-vehicle Collision Based on Finite Element and Multi-body Coupling Modeling
In order to determine the relationship between the collision speed and the crack radius of the windshield during the collision of pedestrians and vehicles, the Finite Element model of the crack propagation of the windshield, the multi-body model of the collision between pedestrians and vehicles, and the improved coupling model were constructed. On this basis, the impact of the constructed parameters on the collision response was analyzed and the reasonable parameters were determined. Furthermore, the validity of the model was verified by the actual accident cases. By the collision simulation with a speed of 10-15m/s and a deceleration of 6m/s2, the radius of the annular crack under the corresponding collision condition and an empirical formula for the collision velocity and the radius were obtained. The conclusions can provide new ideas and methods for the reconstruction of collision speed.
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