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Optimized constitutive equation of material property based on inverse modeling for aluminum alloy hydroforming simulation

机译:基于逆模型的铝合金液压成形优化材料性能本构方程

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摘要

By using aluminum alloys, the properties of the material in sheet hydroforming were obtained based on the identification of parameters for constitutive models by inverse modeling in which the friction coefficients were also considered in 2D and 3D simulations. With consideration of identified simulation parameters by inverse modeling, some key process parameters including tool dimensions and pre-bulging on the forming processes in sheet hydroforming were investigated and optimized. Based on the optimized parameters, the sheet hydroforming process can be analyzed more accurately to improve the robust design. It proves that the results from simulation based on the identified parameters are in good agreement with those from experiments.
机译:通过使用铝合金,通过逆模型识别本构模型的参数,获得了片材液压成形中材料的性能,其中在2D和3D模拟中也考虑了摩擦系数。考虑到通过逆模型识别出的仿真参数,研究并优化了一些关键工艺参数,包括模具尺寸和片材液压成型中成型过程中的预凸出。基于优化的参数,可以更准确地分析板材液压成形过程,以改善鲁棒性设计。证明了基于确定参数的仿真结果与实验结果吻合良好。

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