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Experimental and numerical study of creep age forming of AA2050 plates with sparse multi-point flexible forming tool

机译:稀疏多点柔性成形工具AA2050板蠕变时效成形的实验与数值研究

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Creep age forming of an Al-Cu-Li alloy (AA2050-T34) with an asymmetric tension/compression creep-ageing behaviour has been experimentally and numerically investigated in this study. Creep age forming experiments of plates with different thicknesses have been carried out to form doubly curved shapes using a recently developed sparse multi-point flexible forming tool. Corresponding FE model for creep age forming, incorporating the material model that describes the stress-strain relation and asymmetric creep-ageing behaviour of the alloy, has been developed through PAM-STAMP. The flexible forming tool can generate various tool shapes for creep age forming and is ideal for innovative trials. Stress concentration was found in some forming pin areas of the loaded plate. With larger initial loaded plastic strain and higher creep strain generated in these local areas, bumps may occur in formed shapes after creep age forming under certain circumstances. It is shown that the FE model is able to predict the formed shape accurately for thicker plates and can be used for tool set-up optimisation.
机译:在这项研究中,已经通过实验和数值研究了具有不对称拉伸/压缩蠕变时效行为的Al-Cu-Li合金(AA2050-T34)的蠕变时效形成。已经使用最近开发的稀疏多点柔性成形工具进行了具有不同厚度的板的蠕变年龄成形实验,以形成双弯曲形状。通过PAM-STAMP开发了相应的蠕变时效有限元模型,并结合了描述合金的应力-应变关系和不对称蠕变时效行为的材料模型。柔性成形工具可以生成各种形状的蠕变时效成形工具,是进行创新试验的理想选择。在加载板的某些成形销区域中发现了应力集中。随着在这些局部区域中产生较大的初始加载塑性应变和较高的蠕变应变,在某些情况下,蠕变时效成形后,可能会在成形的形状中产生凸起。结果表明,有限元模型能够准确地预测较厚板的成形形状,并可用于优化工具设置。

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