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Stamping of a Cross-shaped Part with 5052,5754 and 6016 Aluminum Alloy Sheets-Experimental and Finite Element Analysis Comparison

机译:用5052,5754和6016铝合金板材的横形部件冲压 - 实验和有限元分析比较

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The application of aluminum alloys is continuing to increase in automotive and aerospace industries.In this study,the stamping of a cross-shaped part,representing typical deep drawn automotive parts,was attempted with three different types of aluminum alloy sheets.To characterize the anisotropic properties of the material,uniaxial tensile tests were performed with ASTM standard dog-bone specimens cut from AA5052,AA5754 and AA6016 T4 alloy sheets.The stamping of the cross-shaped parts was conducted using a high capacity servo press with a servo-cushion system.Deformation strains developing in stamped parts were measured with the ARGUS system for comparison with finite element simulation results.Formed parts were also cut in two different directions using a water-jet machine,and thickness variations along the length of the cut section were measured.The measured surface strains and thickness distributions were compared with finite element simulations results obtained with LS-Dyna explicit code using the Yld2000-2D and Hill's 48 yield functions.Overall,experimental and numerical results correlated well,especially with the Yld2000-2D yield function,implying that this yield function is well suited for the modeling of the complex cross-shaped parts with aluminum alloys.
机译:铝合金的应用仍在继续增加汽车和航空航天工业。本研究中,用三种不同类型的铝合金板试图表现出典型的深绘制汽车部件的横形部件的冲压。要表征各向异性用来自AA5052,AA5754和AA6016 T4合金板切割的ASTM标准狗骨样品进行单轴拉伸试验。使用高容量伺服系统进行交叉零件的冲压,用伺服垫系统进行。用ARGUS系统测量冲压部件中发育的菌株,与有限元模拟结果进行比较。使用水喷射机也沿两种不同方向切割,测量沿切割部分的长度的厚度变化。将测量的表面菌株和厚度分布与用LS-DYNA明确获得的有限元模拟结果进行比较使用YLD2000-2D和Hill的48个屈服函数的代码。overall,实验性和数值结果良好,特别是在YLD2000-2D屈服功能中,这意味着这种收益函数非常适合使用铝的复杂交叉零件的建模合金。

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