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首页> 外文期刊>International journal of impact engineering >Reconstruction Model Of Vehicle Impact Speed In Pedestrian-vehicle Accident
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Reconstruction Model Of Vehicle Impact Speed In Pedestrian-vehicle Accident

机译:行车事故中车辆撞击速度的重构模型

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摘要

Reconstruction of pedestrian-vehicle accident is a worldwide problem. Numerous previous studies have been carried out on accidents with vehicular skid marks or definite pedestrian throw distances. However, little could be done if marks or throw distances cannot be obtained in accident reconstruction. This paper first describes the physical model of dynamic process of pedestrian head impact on windshield glazing. Some simplifications are made to obtain a better and more practical model, including discussing the support boundary conditions. Firstly, the paper modeled the relations between pedestrian impact speed and deflection of windshield glazing based on the impact dynamics and thin plate theory. Later, the relations of vehicle impact speed and deflection are discussed. Therefore, a model of vehicle impact speed versus deflection of windshield glazing is developed. The model is then verified by ten real-world accident cases to demonstrate its accuracy and reliability. This model provides investigators a new method to reconstruct pedestrian-vehicle accidents.
机译:重建行车事故是一个世界性的问题。先前已经对具有车辆打滑痕迹或确定的行人抛出距离的事故进行了许多研究。但是,如果在事故重建中无法获得标记或投掷距离,则几乎无能为力。本文首先描述了行人头部撞击挡风玻璃的动态过程的物理模型。为了获得更好,更实用的模型,进行了一些简化,包括讨论支撑边界条件。首先,基于冲击动力学和薄板理论,建立了行人冲击速度与挡风玻璃玻璃挠度关系的模型。随后,讨论了车辆撞击速度和偏转的关系。因此,建立了车辆碰撞速度与挡风玻璃的挠度的模型。然后,通过十个实际事故案例对模型进行验证,以证明其准确性和可靠性。该模型为研究人员提供了一种重建行人交通事故的新方法。

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