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Numerical simulation of the effect of constraints on welding deformations and residual stresses in a pipe-flange joint

机译:约束条件对管法兰接头焊接变形和残余应力影响的数值模拟

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This paper presents a detailed three-dimensional finite element (FE) study to investigate the effect of mechanical constraints on welding distortions and residual stresses in a pipe-flange joint. The FE model of a pipe-flange joint is subjected to sequentially couple nonlinear transient thermo-mechanical analysis to simulate complex welding phenomena. Single-pass gas metal arc welding for single 'V' butt-weld joint geometry of a 100 mm diameter pipe with compatible weld-neck ANSI flange class # 300 of low carbon steel is simulated. Two tack-welds at 90 degrees and 270 degrees from the weld start position are modelled. Four different constraint conditions representing the welding of unassembled joints, welding of assembled joints, welding of assembled joints with reflective symmetry and welding of perfectly constrained joints are analysed. To model the constraints and boundary conditions more realistically contact pairs are used between the matching surfaces of different structural components. Basic FE models are validated with experimental data for temperature distribution and deformations. Predicted welding distortions and residual stresses are compared and discussed in detail. From the results, axial displacement and tilt of the flange face are found to be strongly dependant on the constraint conditions. Minimum axial distortion on the flange face is found for rigidly clamped flanges. However, residual stresses have a weak dependence on the constraints set.
机译:本文提出了详细的三维有限元(FE)研究,以研究机械约束对管道-法兰接头中的焊接变形和残余应力的影响。依次对管法兰接头的有限元模型进行非线性瞬态热机械分析,以模拟复杂的焊接现象。模拟了具有100毫米直径的低碳钢与兼容的焊颈ANSI法兰等级的100 mm管道的单'V'对接焊缝几何形状的单道次气体保护金属电弧焊。对距焊接开始位置90度和270度的两个点焊进行了建模。分析了四种不同的约束条件,分别代表未组装接头的焊接,组装接头的焊接,具有反射对称性的组装接头的焊接和完全约束接头的焊接。为了对约束和边界条件进行建模,更实际地,在不同结构组件的匹配表面之间使用接触对。基本的有限元模型已经通过温度分布和变形的实验数据进行了验证。比较并详细讨论了预测的焊接变形和残余应力。从结果可以发现,法兰面的轴向位移和倾斜高度取决于约束条件。对于刚性夹紧的法兰,法兰面上的轴向变形最小。但是,残余应力对约束集的依赖性很弱。

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