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Effect of weld heat input on corrosion of dissimilar welded pipeline steels under simulated coating disbondment protected by cathodic protection

机译:焊接热输入对阴极保护保护涂层管料下不同焊接管道钢腐蚀的影响

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Dissimilar welding is extensively used for oil and gas pipelines for new installations or repairs. Despite applying cathodic protection (CP) and coatings, corrosion and cracking can occur, usually on external surface of pipelines under coating disbondments close to weld lines. In this study, corrosion of dissimilar welded X-42 and grade B pipelines, under a simulated coating disbondment, is investigated. Welding was performed using shielded metal arc welding (SMAW) process. In order to simulate a coating disbondment, a corrosion cell containing 10 coupons was utilized. Coupons were exposed to a simulated soil solution purged with 5%CO2–95%N2to maintain an anaerobic environment. CP potential of ?870?mVSCEwas applied to the open mouth of the disbondment. Results showed that by decreasing weld heat input from 0.74 to 0.61?kJ/mm, corrosion rate at the weld line increased. This was explained by formation of phases with higher corrosion rates (e.g. Widmanstatten and acicular ferrite). It was also observed that the corrosion rate at the weld line was higher than that at the heat affected zone (HAZ), followed by the base metals. The higher corrosion rate at the weld line and HAZ was explained by formation of acicular ferrite and secondary phases during the welding process. It was also observed that for similar heat inputs, the corrosion rate of dissimilar welded X-42 and grade B was higher than that of similar welded samples. This was possibly due to the minor galvanic effect between X-42 and the grade B pipeline steel.
机译:不同的焊接广泛用于新安装或维修的石油和天然气管道。尽管施加阴极保护(CP)和涂料,但腐蚀和裂缝可能会发生腐蚀和裂缝,通常在管道的外表面上,涂层覆盖物靠近焊接线。在该研究中,研究了不同焊接X-42和B级管道的腐蚀,在模拟的涂层脱落中。使用屏蔽金属弧焊(SMAW)工艺进行焊接。为了模拟涂层脱屑,利用含有10张优惠券的腐蚀细胞。优惠券暴露于用5%CO 2 -95%N2吹扫的模拟土壤溶液,维持厌氧环境。 CP电位?870?MVSCEWAS应用于露天的分离嘴。结果表明,通过将0.74至0.61×kj / mm的焊接热量减小,焊接线的腐蚀速率增加。这是通过腐蚀速率较高的阶段(例如Widmanstatten和针状铁氧体)的阶段来解释。还观察到,焊接线的腐蚀速率高于热影响区(HAZ)的腐蚀速率,其次是基础金属。通过在焊接过程中形成针状铁氧体和二次相,解释了焊接线和HAZ处的较高腐蚀速率。还观察到,对于类似的热输入,不同焊接X-42和B级的腐蚀速率高于类似焊接样品的腐蚀速率。这可能是由于X-42和B级管道钢之间的微小电流效果。

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