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Using evolutionary algorithms to determine the residual stress profile across welds of age-hardenable aluminum alloys

机译:使用演化算法确定时效硬化铝合金焊缝上的残余应力分布

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This paper presents an evolutionary based method to obtain the un-stressed lattice spacing, do, required to calculate the residual stress profile across a weld of an age-hardenable aluminum alloy, AA2024. Due to the age-hardening nature of this alloy, the do value depends on the heat treatment. In the case of welds, the heat treatment imposed by the welding operation differs significantly depending on the distance to the center of the joint. This implies that a variation of do across the weld is expected, a circumstances which limits the possibilities of conventional analytical methods to determine the required do profile. The interest of the paper is, therefore, two-fold: First, to demonstrate that the application of an evolutionary algorithm solves a problem not addressed in the literature such as the determination of the required data to calculate the residual stress state across a weld. Second, to show the robustness of the approximation used, which allows obtaining solutions for different constraints of the problem. Our results confirm the capacity of evolutionary computation to reach realistic solutions under three different scenarios of the initial conditions and the available experimental data. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文提出了一种基于进化的方法来获得无应力晶格间距do,这是计算可时效硬化铝合金AA2024焊缝上的残余应力轮廓所必需的。由于这种合金的时效硬化特性,do值取决于热处理。在焊接的情况下,焊接操作所施加的热处理会根据距接头中心的距离而显着不同。这意味着在整个焊缝上会发生do的变化,这种情况限制了常规分析方法确定所需do轮廓的可能性。因此,本文的兴趣有两个方面:首先,证明进化算法的应用解决了文献中未解决的问题,例如确定所需数据以计算焊缝上的残余应力状态。其次,显示所使用逼近的鲁棒性,该鲁棒性允许针对问题的不同约束条件获得解决方案。我们的结果证实了在三种不同的初始条件和可用实验数据的情况下,进化计算能够达到实际解决方案的能力。 (C)2015 Elsevier B.V.保留所有权利。

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