不锈钢管承插焊缝在海水气氛下的选择性腐蚀

IF 0.8 Q4 ELECTROCHEMISTRY Corrosion Science and Technology-Korea Pub Date : 2020-01-01 DOI:10.14773/CST.2020.19.4.224
M. Boo, Jangseok Lee, Jong-Hoon Lee
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引用次数: 0

摘要

不锈钢具有优良的耐腐蚀性。缺点是由于氯化物的浓度,很容易发生点蚀。此外,与管道的其他部件相比,承插焊缝在结构和化学上都较弱,因此腐蚀发生得很快。由于这两种现象重叠,电站不锈钢海水管承插焊缝经常发生针孔泄漏。为了分析这种特殊的腐蚀,对不锈钢承插焊缝进行了冶金分析,在发电厂运行期间,实际腐蚀发生在那里。分析了各承插焊缝的显微组织和化学成分。此外,根据腐蚀区域的特征微观形貌和化学成分,研究了γ-奥氏体(γ相铁)和δ-铁素体(高温铁)混合枝晶结构中特定微观组织的选择性腐蚀。最后总结了承插焊缝腐蚀的不同阶段及腐蚀特点。
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Selective Corrosion of Socket Welds of Stainless Steel Pipes Under Seawater Atmosphere
Stainless steel has excellent corrosion resistance. The drawback is that pitting occurs easily due to the concentration of chloride. In addition, corrosion of socket weld, which is structurally and chemically weaker than the other components of the pipe, occurs rapidly. Since these two phenomena overlap, pinhole leakage occurs frequently in the seawater pipe socket welds made of stainless steel at the power plants. To analyze this specific corrosion, a metallurgical analysis of the stainless steel socket welds, where the actual corrosion occurred during the power plant operation, was performed. The micro-structure and chemical composition of each socket weld were analyzed. In addition, selective corrosion of the specific micro-structure in a mixed dendrite structure comprising γ-austenite (gamma-phase iron) and δ-ferrite (iron at high temperature) was investigated based on the characteristic micro-morphology and chemical composition of the corroded area. Finally, the different corrosion stages and characteristics of socket weld corrosion are summarized.
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CiteScore
1.30
自引率
66.70%
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