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Design and Optimization of the Local Laser Treatment to Improve the Formability of Age Hardenable Aluminium Alloys

机译:提高时效硬化铝合金成形性的局部激光处理设计与优化

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摘要

The research of innovative methodologies to improve the Aluminium alloys formability at room temperature still remains an open question: the local modification of the material properties via short-term heat treatments followed by the stamping at room temperature is reported to be an effective alternative to the forming in warm conditions. In the present work, such a methodology has been applied to the deep drawing of an age-hardenable Aluminium alloy (AA6082-T6) using an experimentalumerical approach. A preliminary extensive material characterization was aimed at investigating the material behaviour: (i) in the as-received condition (peak hardening), (ii) in the supersaturated condition (obtained by physical simulation) and (iii) after being locally solutioned via laser heating. A Finite Element based approach (Abaqus CAE, v. 6.17) was then used to design the laser treatment of the blanks to be subsequently deep drawn at room temperature: a 2D axisymmetric model of the deep drawing process was coupled with the optimization platform modeFRONTIER in order to define the radial extent of the laser heat treated area able to maximize the Limit Drawing Ratio. The experimental tests were finally conducted for validation purposes and revealed the effectiveness of the adopted approach which allowed to improve the drawability of more than 20% with respect to the as received condition (T6).
机译:改善铝合金在室温下的可成型性的创新方法的研究仍然是一个悬而未决的问题:通过短期热处理,然后在室温下进行冲压,对材料性能进行局部改性是一种替代成型的有效方法。在温暖的条件下。在目前的工作中,这种方法已应用于采用实验/数值方法对可时效硬化的铝合金(AA6082-T6)进行深冲的过程中。初步的广泛材料表征旨在研究材料行为:(i)处于接收状态(峰值硬化),(ii)过饱和条件(通过物理模拟获得),(iii)通过激光局部溶解后加热。然后使用基于有限元的方法(Abaqus CAE,v.6.17)设计要在室温下进行深冲的坯料的激光处理方法:将深冲过程的二维轴对称模型与优化平台模式FRONTIER结合使用。为了定义能够最大化极限拉伸比的激光热处理区域的径向范围。最终进行了实验测试,以验证目的,并揭示了所采用方法的有效性,该方法相对于所接收的条件(T6)可以将可拉伸性提高20%以上。

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