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The Passive Film Growth Mechanism of New Corrosion-Resistant Steel Rebar in Simulated Concrete Pore Solution: Nanometer Structure and Electrochemical Study

机译:新型耐腐蚀钢筋在模拟混凝土孔隙溶液中的钝化膜生长机理:纳米结构和电化学研究

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An elaborative study was carried out on the growth mechanism and properties of the passive film for a new kind of alloyed corrosion-resistant steel (CR steel). The passive film naturally formed in simulated concrete pore solutions (pH = 13.3). The corrosion resistance was evaluated by various methods including open circuit potential (OCP), linear polarization resistance (LPR) measurements, and electrochemical impedance spectroscopy (EIS). Meanwhile, the 2205 duplex stainless steel (SS steel) was evaluated for comparison. Moreover, the passive film with CR steel was studied by means of X-ray photoelectron spectroscopy (XPS), transmission electron microscopy (TEM), Atomic Force Microscope (AFM), and the Mott?Schottky approach. The results showed that the excellent passivity of CR steel could be detected in a high alkaline environment. The grain boundaries between the fine passive film particles lead to increasing Cr oxide content in the later passivation stage. The filling of cation vacancies in the later passivation stage as well as the orderly crystalized inner layer contributed to the excellent corrosion resistance of CR steel. A passive film growth model for CR steel was proposed.
机译:对一种新型合金耐腐蚀钢(CR钢)的钝化膜的生长机理和性能进行了详尽的研究。在模拟混凝土孔隙溶液(pH = 13.3)中自然形成的钝化膜。通过包括开路电势(OCP),线性极化电阻(LPR)测量和电化学阻抗谱(EIS)在内的各种方法对耐蚀性进行了评估。同时,评价了2205双相不锈钢(SS钢)以进行比较。此外,还通过X射线光电子能谱(XPS),透射电子显微镜(TEM),原子力显微镜(AFM)和Mott?Schottky方法研究了含CR钢的钝化膜。结果表明,在高碱性环境中可以检测到CR钢的优良钝化性。钝态细薄膜颗粒之间的晶界导致在随后的钝化阶段增加Cr氧化物含量。钝化后期填充阳离子空位以及内层有序结晶有助于CR钢的优异耐腐蚀性。提出了铬钢钝化膜生长模型。

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