Roles of Sb addition on the corrosion resistance of the low‐alloy steel in a real tropical marine atmosphere

Wei Wu, Niyun Liu, Peilin Chai, Li-li Zhu, Shiyu Huang, Ying Yang, Bo Zhao, Zhiyong Liu
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引用次数: 1

Abstract

The corrosion behaviors of Sb‐free and Sb‐added low‐alloy structural steels were comparatively studied in a real tropical marine atmosphere. And the role of Sb addition on corrosion resistance was clarified by electrochemical measurement and rust analysis. The results showed that the addition of 0.05% Sb increased the polarization resistance, reduced the cathodic current density, and slowed down the oxygen reduction process. Meanwhile, Sb addition optimized the physical structure, promoted the transformation of phase, and improved the protection of the rust. More importantly, 0.05% Sb addition inhibited the local acidification at the bottom of the pits, thus slowing down the local corrosion process at the rust/matrix interface. Accordingly, the corrosion resistance of the Sb‐added low‐alloy steel was enhanced, causing a lower corrosion rate than that of Sb‐free steel in a tropical marine atmosphere.
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添加Sb对低合金钢在真实热带海洋大气中耐腐蚀性能的影响
比较研究了不含Sb和添加Sb的低合金结构钢在热带海洋大气中的腐蚀行为。通过电化学测定和防锈分析,阐明了添加Sb对耐蚀性的影响。结果表明,0.05% Sb的加入增加了极化电阻,降低了阴极电流密度,减缓了氧还原过程。同时Sb的加入优化了镀层的物理结构,促进了镀层的相转变,提高了镀层的防锈性。更重要的是,添加0.05% Sb抑制了凹坑底部的局部酸化,从而减缓了锈斑/基体界面的局部腐蚀过程。因此,添加Sb的低合金钢在热带海洋大气中的腐蚀速率比不添加Sb的低合金钢低。
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