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Effect of post-weld heat treatment on microstructure evolution in dissimilar joints for subsea oil and gas systems

机译:焊后热处理对海底油气系统异种接头微观组织演变的影响

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摘要

In subsea oil and gas systems, microalloyed steel linepipes are welded to low alloy steel (e.g. 8630) forgings using dissimilar fillers, such as alloy 625. Post-weld heat treatment (PWHT) is necessary to temper the heat affected zone (HAZ) and relieve residual stresses. During PWHT, carbon diffuses from the forging into the weld, where it is able to form critical new phases while creating a carbon depleted region within the HAZ. Although the phases that form within the weld metal are well documented, the extent of carbon diffusion remained unexplored. To tackle the problem, a combined experimental and modelling approach has been adopted. DICTRA simulations were employed in calculation of elemental diffusion, while electron microscopy has been used to verify phase formation and the extent of carbon diffusion. The results reported herein indicate that it is possible to modify the susceptibility of these joints to hydrogen embrittlement.
机译:在海底油气系统中,使用不同的填充剂(例如625合金)将微合金钢管线管焊接到低合金钢(例如8630)锻件上。需要进行焊后热处理(PWHT)来回火热影响区(HAZ)和回火。减轻残余应力。在进行PWHT期间,碳从锻件扩散到焊缝中,在此过程中它可以形成关键的新相,同时在热影响区内形成碳耗尽区域。尽管在焊缝金属中形成的相已得到充分证明,但碳扩散的程度仍未探索。为了解决该问题,采用了组合的实验和建模方法。 DICTRA模拟用于计算元素扩散,而电子显微镜已用于验证相形成和碳扩散程度。本文报道的结果表明,可以改变这些接头对氢脆的敏感性。

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