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Numerical simulation to study the effect of tack welds and root gap on welding deformations and residual stresses of a pipe-flange joint

机译:研究点焊和根部缝隙对管-法兰接头焊接变形和残余应力影响的数值模拟

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摘要

This paper presents a three dimensional sequentially coupled non-linear transient thermo-mechanical analysis to investigate the effect of tack weld positions and root gap on welding distortions and residual stresses in a pipe-flange joint. Single-pass MIG welding for a 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 circumferentially opposite locations, with the crucial effect of the tack weld's orientation from the weld start position is the focus in this study. Four different angular positions of tack welds (0 and 180 deg, 45 and 225 deg, 90 and 270 deg, 135 and 315 deg) are analyzed. In addition, four cases for root gaps (0.8, 1.2, 1.6, 2.0 mm) are considered and computational results are compared. A basic FE model is also validated with experimental data for temperature distribution and deformations. From the results, the axial displacement and tilt of the flange face are found to be strongly dependent on the tack weld orientation and weakly dependent on the root gap.
机译:本文提出了三维顺序耦合的非线性瞬态热力学分析,以研究点焊位置和根部间隙对管道-法兰接头中的焊接变形和残余应力的影响。模拟了具有兼容的低碳钢焊接颈ANSI法兰等级#300的直径为100 mm管道的单'V'对接焊缝几何形状的单道MIG焊接。本研究的重点是在圆周相对位置的两个点焊,从焊接开始位置开始的点焊定位至关重要。分析了点焊的四个不同角度位置(0和180度,45和225度,90和270度,135和315度)。另外,考虑了四种情况下的齿根间隙(0.8、1.2、1.6、2.0 mm)并比较了计算结果。还使用实验数据验证了基本有限元模型的温度分布和变形。从结果可以发现,法兰面的轴向位移和倾斜高度取决于点焊方向,而与根部间隙几乎无关。

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