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Influence of Hydrogenation on Residual Stresses of Pipeline Steel Welded Joints

机译:加氢对管线钢焊接接头残余应力的影响

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摘要

Hydrogen embrittlement is a phenomenon that affects the performance of steel used for oil and gas pipelines. This paper presents a study of the effect of hydrogenation on the residual stresses of an API 5L X65 steel pipe. Residual stresses were analyzed by X-ray diffraction technique using the sin 2 ?¨ method. The hydrogenation of base metal and welded joint specimens was performed by electrochemical tests in a simulated soil solution NS4. Results show that the hydrogenation led to significant changes in residual stress configuration and in the mechanical properties of steel. The hydrogenation increased the magnitude of the longitudinal residual stress of base metal and fusion zone, without changing the tensile/compressive nature. On the other hand, the hydrogenation increased the intensity of the tangential stress of base metal, and changed from compressive to tensile the residual stress of the fusion zone. The microstructural characterization by optical and scanning electron microscopy was used to complement this study.
机译:氢脆是一种影响用于石油和天然气管道的钢的性能的现象。本文研究了加氢对API 5L X65钢管残余应力的影响。使用sin 2?方法通过X射线衍射技术分析残余应力。在模拟土壤溶液NS4中通过电化学测试对贱金属和焊接接头样品进行氢化。结果表明,氢化导致残余应力构型和钢的力学性能发生了显着变化。氢化增加了母材和熔合区的纵向残余应力的大小,而没有改变拉伸/压缩性质。另一方面,氢化增加了母材的切向应力的强度,并且使熔融区的残余应力从压缩变为拉伸。通过光学和扫描电子显微镜的微观结构表征被用来补充这项研究。

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