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首页> 外文期刊>Materials Science >Rust Layer Formed on Low Carbon Weathering Steels with Different Mn, Ni Contents in Environment Containing Chloride Ions
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Rust Layer Formed on Low Carbon Weathering Steels with Different Mn, Ni Contents in Environment Containing Chloride Ions

机译:含氯离子环境中具有不同Mn,Ni含量的低碳耐候钢上形成的锈层

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The rusting evolution of low carbon weathering steels with different Mn, Ni contents under a simulated environment containing chloride ions has been investigated to clarify the correlation between Mn, Ni and the rust formed on steels. The results show that Mn contents have little impact on corrosion kinetics of experimental steels. Content increase of Ni both enhances the anti-corrosion performance of steel substrate and the rust. Increasing Ni content is beneficial to forming compact rust. Semi-quantitative XRD phase analysis shows that the quantity ratio of α/γ*(α-FeOOH/(γ-FeOOH+Fe3O4)) decreases as Mn content increases but it increases as Ni content increases. Ni enhances rust layer stability but Mn content exceeding 1.06 wt.% is disadvantageous for rust layer stability. The content increase of Mn does not significantly alter the parameters of the polarization curve. However, as Ni contents increases, Ecorr has shifted to the positive along with decreased icorr values indicating smaller corrosion rate especially as Ni content increases from 0.42?wt.% to 1.50 wt.%.
机译:研究了在含有氯离子的模拟环境下,不同Mn,Ni含量的低碳耐候钢的锈蚀演变过程,以阐明Mn,Ni与钢上形成的锈蚀之间的关系。结果表明,Mn含量对实验钢的腐蚀动力学影响很小。 Ni含量的增加都增强了钢基材的防腐蚀性能和防锈性能。 Ni含量的增加有利于形成致密的锈。半定量XRD相分析表明,随着Mn含量的增加,α/γ*(α-FeO​​OH/(γ-FeOOH+ Fe3O4))的数量比减小,但随着Ni含量的增加而增大。 Ni提高了防锈层的稳定性,但是Mn含量超过1.06重量%对防锈层的稳定性不利。 Mn含量的增加不会明显改变极化曲线的参数。但是,随着镍含量的增加,Ecorr随正的icorr值下降到正值,表明腐蚀速率较小,尤其是当Ni含量从0.42%(重量)增加到1.50%(重量)时。

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