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Prediction of welding buckling distortion in a thin wall aluminum T joint

机译:薄壁T型铝接头焊接屈曲变形的预测

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In this paper, local and global welding buckling distortion of a thin wall aluminum T joint is investigated. A thermo-elastic-viscoplastic model is employed to determine longitudinal residual stresses; analysis of thermal model and elastic viscoplastic (Anand) model are uncoupled. Molten puddle motion (speed of welding) is modeled by using time dependent birth and death element method. Three dimensional nonlinear-transient heat flow analysis has been used to obtain the temperature distribution, and then by applying thermal results and-using three dimensional Anand elastic-viscoplastic model, stress and deformation distributions are obtained during welding and after cooling. Local buckling is investigated by analyzing the history of stress and strain relations. Local buckling is assumed to occur at a point if a small change in the magnitude of stress causes large deformation during of the welding process. By applying residual stresses on a structural model and using eigenvalue methods, global buckling instability of the welded structure is determined. (c) 2006 Elsevier B.V. All rights reserved.
机译:本文研究了薄壁铝T型接头的局部和整体焊接屈曲变形。采用热弹-粘塑性模型确定纵向残余应力。热模型和弹性粘塑性(Anand)模型的分析是不耦合的。熔池运动(焊接速度)是通过使用时间依赖的出生和死亡元素方法来建模的。使用三维非线性瞬态热流分析获得温度分布,然后通过应用热结果并使用三维Anand弹粘塑性模型,获得焊接过程中和冷却后的应力和变形分布。通过分析应力和应变关系的历史来研究局部屈曲。如果应力大小的微小变化导致焊接过程中的较大变形,则将在某个点发生局部屈曲。通过在结构模型上施加残余应力并使用特征值方法,可以确定焊接结构的整体屈曲不稳定性。 (c)2006 Elsevier B.V.保留所有权利。

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