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RESIDUAL STRESSES REDISTRIBUTION IN GIRTH WELD PIPE AFTER REDUCTION OF THE WALL THICKNESS

机译:壁厚减小后,环缝管中的残余应力再分布

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Girth welded pipes, such as those located offshore on platforms in the North Sea, are subjected to highly corrosive environment. The need to consider welding residual stresses in the assessment of the fitness for service and damages to these pipes when investigating local corrosion damages across a welded region is therefore important for the operators of the platforms and the manufacturers of the pipes. This paper presents a review of work carried out to ascertain the welding residual stresses present within a thin-walled girth welded pipe mock-up made from steel API 5LX Grade 52 before and after reduction of the wall thickness. The mock-up was manufactured to replicate typical pipes used to convey gas, oil and water through the platforms. The mock-up was of diameter 30" and of thickness 19mm. The incremental deep hole drilling (iDHD), contour, hole drilling, XRD, and ultrasonic technique were applied to characterise the residual stresses in the weld and heat affected zone of the specimen. The residual stresses were then measured during the manufacture of a groove located on the weld at the ID and were compared to an FE prediction. Ultrasonic measurements were then carried out on the outer surface of the pipe and show a significant increase in the residual stress and could be used to monitor the changes in the residual stress caused by internal corrosion.
机译:环缝焊管,例如位于北海平台海上的焊管,都处于高度腐蚀的环境中。因此,在调查整个焊接区域的局部腐蚀损伤时,在评估使用寿命和对这些管道的损坏时,需要考虑焊接残余应力,这对于平台的操作员和管道制造商而言非常重要。本文介绍了为确定在减小壁厚之前和之后由API 5LX 52级钢制成的薄壁环缝焊管模型中存在的焊接残余应力所做的工作回顾。该模型的制造是为了复制用于通过平台输送天然气,石油和水的典型管道。该模型的直径为30英寸,厚度为19mm。采用增量深孔钻削(iDHD),轮廓,孔钻削,XRD和超声技术来表征试样的焊缝和热影响区中的残余应力然后,在制造焊缝处内径处的内径时测量残余应力,并将其与有限元预测进行比较,然后在管道外表面进行超声波测量,结果表明残余应力显着增加。并可以用来监测内部腐蚀引起的残余应力的变化。

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