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Finite Element Prediction of Residual Stress and Deformation Induced by Double-Pass TIG Welding of Al 2219 Plate

机译:Al 2219钢板双道次TIG焊接残余应力和变形的有限元预测

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摘要

Finite element (FE) analysis of welding residual stress and deformation is one of the essential stages in the manufacturing process of mechanical structures and parts. It aids in reducing the production cost, minimizing errors, and optimizing the manufactured component. This paper presents a numerical prediction of residual stress and deformation induced by two-pass TIG welding of Al 2219 plates. The FE model was developed using ABAQUS and FORTRAN packages, Goldak’s heat source model was implemented by coding the nonuniform distributed flux (DFLUX) in user subroutine to represent the ellipsoidal moving weld torch, having front and rear power density distribution. Radiation and convection heat losses were taken into account. The mechanical boundary condition was applied to prevent the model from rotation and displacement in all directions while allowing material deformation. The FE model was experimentally validated and the compared results show good agreement with average variations of 18.8% and 17.4% in residual stresses and deformation, respectively.
机译:焊接残余应力和变形的有限元(FE)分析是机械结构和零件制造过程中的重要阶段之一。它有助于降低生产成本,最大程度地减少错误并优化所制造的组件。本文提出了对Al 2219钢板进行两遍TIG焊接引起的残余应力和变形的数值预测。 FE模型是使用ABAQUS和FORTRAN软件包开发的,Goldak的热源模型是通过在用户子例程中编码非均匀分布焊剂(DFLUX)来实现的,以表示椭圆形移动焊炬,并具有前后功率密度分布。考虑了辐射和对流热损失。应用机械边界条件以防止模型在所有方向上旋转和位移,同时允许材料变形。实验验证了有限元模型,比较结果表明,残余应力和变形的平均变化分别为18.8%和17.4%。

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