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Prediction of welding distortion in multipass girth-butt welded pipes of different wall thickness

机译:不同壁厚的多道对接焊管焊接变形的预测

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摘要

For a Ml welded body ball valve, because the last working procedure is the weld, prior to welding, the welding distortion must be accurately predicted to provide preference for welded structure fabrication at the design stage in order to assure spool rotation, valve seal, and non-deformability in active service. Therefore, it is important to select an accurate and efficient method to predict welding distortion. In this study, the finite-element method based on the inherent strain theory was presented to simulate welding distortion in multipass girth-butt welded pipes of different wall thicknesses. For multipass welding, two weld passes at the same layer were combined. The axial distortion of each weld layer was calculated respectively and the radial distortion was calculated for one time. For multipass girth-butt welded pipes of different wall thicknesses, two methods were proposed to predict the axial distortion. The results calculated were compared and better method was confirmed.
机译:对于M1焊接式球阀,由于最后的工作步骤是焊接,因此在焊接之前,必须准确地预测焊接变形,以在设计阶段优先选择焊接结构,以确保阀芯旋转,阀密封和主动服务中的不可变形性。因此,选择一种准确有效的方法来预测焊接变形非常重要。在这项研究中,提出了一种基于固有应变理论的有限元方法,以模拟不同壁厚的多道环缝对接焊管的焊接变形。对于多道次焊接,将同一层的两个焊道合并在一起。分别计算每个焊接层的轴向变形,并且一次计算径向变形。对于不同壁厚的多道环缝对接焊管,提出了两种方法来预测轴向变形。比较了计算结果并确认了更好的方法。

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