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Material modelling and its application to creep-age forming of aluminium alloy 7B04

机译:材料建模及其在铝合金7B04蠕变时代成型的应用

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Creep-ageing behaviour of aluminium alloy 7B04-T651 at 115 under a range of tensile stress levels has been experimentally investigated and numerically modelled for creep-age forming (CAF) applications. Creep strain, yield strength evolution and precipitate growth of creep-aged specimens were investigated. The alloy was modelled using a set of unified constitutive equations, which captures its creep deformation and takes into account yield strength contributions from three creep-age hardening mechanisms. Applications of the present work are demonstrated by implementing the determined material model into a commercial finite element analysis solver to analyse CAF operations carried out in a novel flexible CAF tool. Stress relaxation, yield strength, precipitate size and springback were predicted for the creep-age formed plates. The predicted springback were further quantified and compared with experimental measurements and a good agreement of 2.5% deviation was achieved. This material model now enables further investigations of 7B04 under various CAF scenarios to be conducted inexpensively via computational modelling.
机译:在一系列拉伸应力水平下,铝合金7b04-t651在115处的蠕变老化行为已经通过实验研究,并对蠕变龄成形(CAF)应用进行了数值模拟。研究了蠕变菌株,屈服强度进化和沉淀生长蠕变老化标本。使用一组统一的构成方程式建模合金,其捕获其蠕变变形,并考虑了来自三个蠕变时期的硬化机制的屈服强度贡献。通过将确定的材料模型实施成商业有限元分析求解器来证明本作应用的应用,以分析在新型柔性CAF工具中进行的CAF操作。应力松弛,屈服强度,沉淀尺寸和回弹被预测到蠕变年龄成形板。预测的回弹进一步量化,与实验测量相比,实现了2.5%的良好一致性。该材料模型现在可以通过计算建模廉价地在各种CAF场景下进一步调查7B04。

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