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EVALUATION OF RESIDUAL STRESSES INDUCED BY REPAIRS TO SMALL DIAMETER STAINLESS STEEL PIPE WELDS

机译:小直径不锈钢钢管维修引起的残余应力评估

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Residual stresses within stainless steel pipe welds may cause or exacerbate in-service cracking. Significant investigative efforts have been devoted to the examination of piping residual stresses in large diameter piping using both finite element modeling and experimental techniques, but limited information is available for small diameter piping. Even less information is available for small diameter piping welds which have been repaired or re-worked during initial fabrication. This investigation used both experimental methods and analytical modeling to assess the impact of repair welding during initial fabrication on the residual stresses along the inner diameter (ID) of small diameter pipe specimens. The investigation showed that tensile axial residual stresses were located in the heat affected zone (HAZ) along the ID of the pipe specimens adjacent to regions which were excavated and re-welded. Such repair welds were also shown to markedly increase the magnitude of the tensile axial residual stresses for weld configurations which otherwise had lower magnitude residual stresses.
机译:不锈钢管焊缝中的残余应力可能会导致或加剧使用中的开裂。对于使用有限元建模和实验技术的大口径管道中的管道残余应力的检查,已经进行了大量的研究工作,但是对于小口径管道却只能提供有限的信息。对于小直径的管道焊缝,甚至在最初的制造过程中已进行修理或重新加工的信息甚至更少。这项研究使用实验方法和分析模型来评估初始制造过程中的补焊对沿小直径管道样品内径(ID)的残余应力的影响。研究表明,轴向拉伸残余应力位于热影响区(HAZ)沿与开挖和重新焊接区域相邻的管道试样的内径。对于焊缝结构,这种修补焊缝也显示出显着增加了拉伸轴向残余应力的大小,否则,其残余应力的大小较小。

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