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Effect of Mo, Cr on Corrosion Behavior of Low-Carbon Weathering Steels

机译:钼,铬对低碳耐候钢腐蚀行为的影响

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摘要

To investigate the effect of Mo, Cr on the atmospheric corrosion behavior of low-carbon weathering steel, experimental steel samples with different Mo, Cr contents were prepared by vacuum induction melting and rolling. Optical microscope, XRD, SEM and weight loss method were employed to study the weight loss and evolutions of rust phases at different stages of laboratory accelerated test involving cyclic wet/dry conditions in 0.1 mol/LNaCl environment. Results showed that, the corrosion resistance of experimental steels was improved with the addition of Mo and Cr. In the initial stage of corrosion, Mo and Cr accelerated the corrosion rate and denser rust layer formed quickly. Mo could refine grain in the rust as corrosion proceeded. Crystal phases were mainly composed of Fe_3O_4, γ-FeOOH and α-FeOOH in the rust With the addition of Mo, the content of a-FeOOH increased, meanwhile, with the addition of Cr the content of γ-FeOOH decreased.
机译:为了研究钼,铬对低碳耐候钢大气腐蚀行为的影响,通过真空感应熔炼和轧制制备了钼,铬含量不同的实验钢样品。采用光学显微镜,XRD,SEM和失重法研究了在0.1 mol / LNaCl环境中循环湿/干条件下实验室加速试验不同阶段的失重和锈相的演变。结果表明,添加Mo和Cr可以提高实验钢的耐腐蚀性。在腐蚀的初始阶段,Mo和Cr加速了腐蚀速率,并且很快形成了致密的锈层。随着腐蚀的进行,钼可以细化铁锈中的晶粒。锈中的晶相主要由Fe_3O_4,γ-FeOOH和α-FeO​​OH组成。添加Mo时,a-FeOOH含量增加;同时,添加Cr时,γ-FeOOH含量降低。

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