Analysis of the Corrosion Behavior According to the Characteristics of Sigma Phase Formed in Super Austenitic Stainless Steel

IF 0.8 Q4 ELECTROCHEMISTRY Corrosion Science and Technology-Korea Pub Date : 2020-01-01 DOI:10.14773/CST.2020.19.4.203
Ye Eun Kim, Jin-seong Park, D. Cho, Seunggab Hong, S. Kim
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Abstract

The corrosion behavior of super austenitic stainless steel was studied by examining the characteristics of the sigma phase formed in the steel. A range of experimental and analytical methods was employed, including potentiodynamic polarization tests, critical pitting temperature tests, transmission electron microscopy, and energy-dispersive spectroscopy. Three steel samples with different sigma phase levels were obtained by intentionally adjusting the manufacturing process. The results showed that the corrosion resistance of the samples was strongly dependent upon the size and distribution of the sigma phase precipitated in the samples. The larger the size of the sigma phase, the higher the Mo content in the sigma phase and the higher the depletion level of Mo at the interface between the matrix/sigma phase, the more samples with a coarse-sized sigma phase were susceptible to localized pitting corrosion at the interface. These results suggest that various manufacturing processes, such as welding and the post-heat treatment of the steel, should be optimized so that both the size and fraction of the sigma phase precipitated in the steel are small to improve the resistance to localized corrosion.
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根据超级奥氏体不锈钢形成的Sigma相特征分析其腐蚀行为
通过对超奥氏体不锈钢中形成的sigma相特征的研究,研究了该不锈钢的腐蚀行为。采用了一系列实验和分析方法,包括动电位极化测试、临界点蚀温度测试、透射电子显微镜和能量色散光谱。通过有意调整加工工艺,获得了三种不同sigma相电平的钢样。结果表明,样品的耐蚀性与样品中析出的sigma相的大小和分布有很大关系。σ相尺寸越大,σ相中Mo含量越高,基体/ σ相界面处Mo损耗水平越高,σ相尺寸较粗的试样越容易在界面处发生局部点蚀。这些结果表明,应优化各种制造工艺,如焊接和钢的后热处理,使钢中析出的sigma相的尺寸和分数都小,以提高钢的抗局部腐蚀能力。
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CiteScore
1.30
自引率
66.70%
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0
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