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首页> 外文期刊>RSC Advances >Pit evolution around the fusion line of a NiCrMoV steel welded joint caused by galvanic and stress-assisted coupling corrosion
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Pit evolution around the fusion line of a NiCrMoV steel welded joint caused by galvanic and stress-assisted coupling corrosion

机译:电流和应力辅助耦合腐蚀引起的NiCrMoV钢焊接接头熔合线周围的点蚀

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The corrosion of NiCrMoV steel welded joints is performed in an aqueous solution of 3.5 wt% NaCl at 180 °C in a container at a pressure of 0.8 MPa. The specimens in the shape of cylindrical tensile rods are immersed in the aqueous solution under the action of tensile stress in a range of 0 to 0.9 of the yield stress of the base metal. The experimental results suggest that there is macro-galvanic corrosion in the welded joint with the coarse-grained heat affected zone (CGHAZ) as anode due to the highest corrosion susceptibility of the CGHAZ. The CGHAZ has the highest positive current density in the welded joints as measured by the scanning vibrating electrode technique. The two-parameter Weibull distribution function, which is represented by the Weibull modulus and characteristic strength, is used to analyze the distribution of the depth of pits at different immersion times. Both the Weibull modulus and characteristic strength are calculated, and found to be dependent on the applied tensile stress. The values of the characteristic pit depth and the average pit depth reveal that there are two mechanisms controlling the corrosion of the NiCrMoV steel welded joints; one is galvanic corrosion, and the other is stress-assisted corrosion.
机译:NiCrMoV钢制焊接接头的腐蚀是在180℃,压力为0.8 MPa的容器中,在3.5 wt%NaCl的水溶液中进行的。在拉伸应力的作用下,将圆柱形拉伸棒状的试样浸入水溶液中,拉伸应力的范围为母材的屈服应力的0至0.9。实验结果表明,由于粗晶热影响区(CGHAZ)的最高腐蚀敏感性,在焊接接头中存在宏观电腐蚀。通过扫描振动电极技术测量,CGHAZ在焊接接头中具有最高的正电流密度。用威布尔模量和特征强度表示的两参数威布尔分布函数用于分析在不同浸入时间下凹坑深度的分布。计算了威布尔模量和特征强度,并发现它们取决于所施加的拉应力。特征凹坑深度和平均凹坑深度的值表明,存在两种控制NiCrMoV钢焊接接头腐蚀的机理。一种是电偶腐蚀,另一种是应力辅助腐蚀。

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