首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Microstructural Evolution of Inconel 625 and Inconel 686CPT Weld Metal for Clad Carbon Steel Linepipe Joints: A Comparator Study
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Microstructural Evolution of Inconel 625 and Inconel 686CPT Weld Metal for Clad Carbon Steel Linepipe Joints: A Comparator Study

机译:包覆碳钢管线管接头的Inconel 625和Inconel 686CPT焊接金属的组织演变:对比研究

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摘要

Microstructural evolution of Inconel 625 and Inconel 686CPT filler metals, used for the fusion welding of clad carbon steel linepipe, has been investigated and compared. The effects of iron dilution from the linepipe parent material on the elemental segregation potential of the filler metal chemistry have been considered. The results obtained provide significant evidence to support the view that, in Inconel 686CPT weld metal, the segregation of tungsten is a function of the level of iron dilution from the parent material. The data presented indicate that the incoherent phase precipitated in the Inconel 686CPT weld metal has a morphology that is dependent on tungsten enrichment and, therefore, iron dilution. Furthermore, in the same weld metal, a continuous network of finer precipitates was observed. The Charpy impact toughness of each filler metal was evaluated, and the results highlighted the superior impact toughness of the Inconel 625 weld metal over that of Inconel 686CPT.
机译:研究和比较了用于熔覆碳钢管线管的Inconel 625和Inconel 686CPT填充金属的微观组织演变。已经考虑了从管道母材中稀释铁对填充金属化学元素的元素偏析势的影响。获得的结果提供了重要的证据,以支持以下观点:在Inconel 686CPT焊接金属中,钨的偏析是母体材料中铁稀释水平的函数。呈现的数据表明,Inconel 686CPT焊缝金属中析出的非相干相的形貌取决于钨的富集程度,因此取决于铁的稀释度。此外,在相同的焊缝金属中,观察到连续的细小析出物网络。对每种填充金属的夏比冲击韧性进行了评估,结果突显了Inconel 625焊接金属优于Inconel 686CPT的冲击韧性。

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