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Corrosion behavior of hydrogen charged super duplex stainless steel welded joints

机译:氢气充电超级双相不锈钢焊接接头的腐蚀行为

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The electrochemical behavior of the weld metal, heat-affected zone (HAZ), and base material of super duplex stainless steel (SDSS) welded joints, made with the application of flux-cored arc welding (FCAW) and submerged arc welding (SAW), were investigated with the use of metallographic examinations (optical microscopy and scanning electron microscopy), potentiodynamic polarization measurements and total hydrogen content determination in the initial state and after hydrogen charging. The obtained results revealed that the effect of hydrogen depended on the microstructure and type of the region of a welded joint. The highest amount of hydrogen penetrated the welded joint charged at 1mAcm(-2). It was observed in case of the FCAW-welded joint, made with lower heat input. The electrochemical measurements showed that the base material was the most corrosion resistant part of the welded joint while the hydrogen charging strongly changed pitting and general corrosion susceptibility of HAZ and weld metal of both welded joints.
机译:用芯片弧焊(Fcaw)和浸没电弧焊接(SAW)的焊接金属,热影响区域(HAZ)和超级双相不锈钢(SDSS)焊接接头的基材的电化学行为。通过使用金相检查(光学显微镜和扫描电子显微镜)来研究,次级动力学偏振测量和初始状态下的总氢含量测定和氢气充电。所得结果表明,氢依赖于焊接接头区域的微观结构和类型的效果。最高量的氢气穿透在1macm(-2)时充电的焊接接头。在Fcaw焊接接头的情况下观察到,用较低的热输入制成。电化学测量表明,基材是焊接接头的最耐腐蚀的部分,而氢气充电的烧结和焊接接头的焊接金属的凹坑和一般腐蚀敏感性。

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