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Finite element analysis of deformation in early stage of multi-pass circumferential dissimilar welding of thick-walled pipes with narrow gap

机译:窄间隙厚壁管多遍圆周异种焊接早期变形的有限元分析

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摘要

Three-dimensional thermal elastic-plastic finite element analyses were conducted in order to reveal the mechanism of gap shrinkage in early stage of multi-pass narrow gap welding of thick-walled dissimilar pipes and thick plates. The gap shrinkage up to the 8th pass indicates that the shrinkage of plates becomes to be much larger than that of pipes with increasing the weld passes. In addition, through the decomposition of gap shrinkage to transverse shrinkage and angular distortion, it is found that the gap shrinkage of pipes is mainly governed by the transverse shrinkage, while the shrinkage of plates is influenced by both the transverse shrinkage and angular distortion. Moreover, the serial computational results with various groove shapes suggest that the transverse shrinkage of pipes almost linearly increases with increasing the weld pass, and its increment can be predicted by a linear approximation function obtained by the transverse shrinkage of plates regardless of the groove shape.
机译:为了揭示厚壁异种管和厚板多道窄缝焊接早期缝隙收缩的机理,进行了三维热弹塑性有限元分析。直到第8道焊缝的间隙收缩率都表明,随着焊缝道次的增加,钢板的收缩率变得比钢管的收缩率大得多。另外,通过将缝隙收缩分解为横向收缩和角度畸变,发现管缝的收缩主要受横向收缩的影响,而板的收缩受横向收缩和角畸变的影响。而且,具有各种凹槽形状的串行计算结果表明,管的横向收缩率随着焊接道次的增加而几乎线性地增加,并且其增量可以通过由板的横向收缩率获得的线性近似函数来预测,而与凹槽形状无关。

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