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Corrosion Behavior of AISI 316L Stainless Steel Used as Inner Lining of Bimetallic Pipe in a Seawater Environment

机译:AISI 316L不锈钢的腐蚀行为用作海水环境中双金银管内衬的

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摘要

Seawater leakage commonly leads to corrosion in the inner lining of submarine bimetallic pipes, with significant financial implications for the offshore oil and gas production industry. This study aims to improve understanding of the performance of bimetallic pipes by investigating the corrosion behaviors of mechanically bonded 316L stainless steel. Immersion experiments were conducted in a seawater environment, under both atmospheric conditions and high temperature and high pressure conditions, and corroded surfaces were examined using scanning electron microscopy (SEM) and energy-dispersive X-ray spectroscopy (EDS) to reveal micromorphology and elementary compositions. The results demonstrated that the corrosion rates of the bonded 316L specimen were between 5% and 20% higher than those of specimens without bonding under atmospheric conditions. This is attributed to the stress cracking that occurs during corrosion. Under high temperature and high pressure conditions, the corrosion rates were remarkably increased (91% to 135%) and the corrosion process took longer to reach equilibrium. This may be attributed, firstly, to the products becoming increasingly porous and weak, and also to the fluid stress caused by stirring in these experiments to simulate seawater movement.
机译:海水泄漏通常导致潜艇二金属管道内衬的腐蚀,对海上石油和天然气生产行业具有重大财务影响。本研究旨在通过研究机械粘合316L不锈钢的腐蚀行为来改善对双金属管的性能的理解。在海水环境中进行浸渍实验,在大气条件下,使用扫描电子显微镜(SEM)和能量分散X射线光谱(EDS)检查腐蚀表面,以显示微晶和基本组合物。结果表明,键合316L样品的腐蚀速率比在大气条件下不粘接的试样高出5%至20%。这归因于腐蚀期间发生的应力裂缝。在高温和高压条件下,腐蚀速率显着增加(91%至135%),腐蚀过程需要更长时间达到平衡。这可能是归因于产品变得越来越多的多孔且弱,并且还可以在这些实验中搅拌引起的流体应力来模拟海水运动。

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