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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering >Finite element modelling of a Hybrid III dummy and material identification for validation
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Finite element modelling of a Hybrid III dummy and material identification for validation

机译:Hybrid III假人的有限元建模和材料识别以供验证

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摘要

Anthropomorphic test devices (ATDs) are used to predict the human injury risk in a crash test. The Hybrid III crash test dummy is a standard ATD used for measuring the occupant safety in a frontal impact test. Since a real crash test using a vehicle is expensive, computer simulation using the finite element method (FEM) is widely used. Therefore, a detailed and robust finite element (FE) dummy model is required to acquire more precise occupant injury data and more accurate behaviour of a dummy during the crash. This research proposes the process of modelling and validation of an FE model of a Hybrid III crash test dummy, and a high-fidelity FE model of the Hybrid III dummy is developed on the basis of the proposed process. The proposed process consists of two phases. First, the FE model is constructed on the basis of the reverse engineering technique. Second, the material identification process is performed for validation of the constructed FE model of the Hybrid III crash test dummy. A certification test for each part of the physical dummy model and also computer simulation of the constructed FE model are performed. The material identification process is carried out by an optimization process to minimize the difference between the physical test results and the computer simulation results. The utilized optimization algorithm is the successive response surface method (SRSM).
机译:拟人化测试设备(ATD)用于预测碰撞测试中的人身伤害风险。 Hybrid III碰撞试验假人是用于在正面碰撞试验中测量乘员安全性的标准ATD。由于使用车辆进行真实的碰撞测试非常昂贵,因此使用有限元方法(FEM)进行计算机模拟的方法被广泛使用。因此,需要详细而强大的有限元(FE)假人模型来获取更精确的乘员伤害数据和碰撞过程中假人的更准确行为。这项研究提出了混合动力III碰撞测试假人有限元模型的建模和验证过程,并在此过程的基础上开发了混合动力III假人的高保真有限元模型。拟议的过程包括两个阶段。首先,基于逆向工程技术构建有限元模型。第二,执行材料识别过程以验证混合动力III碰撞测试假人的有限元模型。对物理虚拟模型的每个部分进行认证测试,并对所构建的有限元模型进行计算机仿真。材料识别过程是通过优化过程执行的,以最大程度地减少物理测试结果与计算机仿真结果之间的差异。使用的优化算法是连续响应面法(SRSM)。

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