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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Effect of Ni on the corrosion resistance of bridge steel in a simulated hot and humid coastal-industrial atmosphere
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Effect of Ni on the corrosion resistance of bridge steel in a simulated hot and humid coastal-industrial atmosphere

机译:Ni对模拟潮湿沿海工业大气桥梁钢耐腐蚀性的影响

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摘要

The corrosion resistance of weathering bridge steels containing conventional contents of Ni (0.20wt%, 0.42wt%, 1.50wt%) and a higher content of Ni (3.55wt%) in a simulated hot and humid coastal-industrial atmosphere was investigated by corrosion depth loss, scanning electron microscopy-energy-dispersive X-ray spectroscopy, Raman spectroscopy, X-ray diffraction, X-ray photoelectron spectroscopy, and electrochemical methods. The results showed that, with increasing Ni content, the mechanical properties of the bridge steel were markedly improved, the welding parameters were satisfactory at room temperature, and the corrosion resistance was enhanced. When the Ni content was low (aecurrency0.42wt%), the crystallization process of the corrosion products was substantially promoted, enhancing the stability of the rust layer. When the Ni content was higher (3.55wt%), the corrosion reaction of the steel quickly reached a balance, because the initial rapid corrosion induced the formation of a protective rust layer in the early stage. Simultaneously, NiO and NiFe2O2 were generated in large quantities; they not only formed a stable, compact, and continuous oxide protective layer, but also strongly inhibited the transformation process of the corrosion products. This inhibition reduced the structural changes in the rust layer, thereby enhancing the protection. However, when the Ni content ranged from 0.42wt% to 1.50wt%, the corrosion resistance of the bridge steel increased only slightly.
机译:通过腐蚀研究了含有常规Ni的常规含量(0.20wt%,0.42wt%,1.50wt%)和较高含量的Ni(3.55wt%)的耐风化桥钢的耐腐蚀性深度损失,扫描电子显微镜 - 能量分散X射线光谱,拉曼光谱,X射线衍射,X射线光电子体光谱和电化学方法。结果表明,随着Ni含量的增加,桥钢的机械性能明显改善,焊接参数在室温下令人满意,耐腐蚀性增强。当Ni含量低(AE& ops& 0.42wt%)时,基本上促进了腐蚀产物的结晶过程,提高了防锈层的稳定性。当Ni含量较高(3.55wt%)时,钢的腐蚀反应迅速达到平衡,因为初始快速腐蚀诱导在早期阶段形成保护锈层。同时,NIO和NIFE2O2以大量产生;它们不仅形成了稳定,紧凑和连续的氧化物保护层,而且强烈抑制了腐蚀产品的转化过程。该抑制减少了锈层中的结构变化,从而提高了保护。然而,当Ni含量为0.42wt%至1.50wt%时,桥钢的耐腐蚀性仅略微增加。

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