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Pitting Corrosion Behaviour of New Corrosion-Resistant Reinforcement Bars in Chloride-Containing Concrete Pore Solution

机译:新型耐腐蚀钢筋在含氯混凝土孔隙溶液中的点蚀行为

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In this study, the pitting behaviour of a new corrosion-resistant alloy steel (CR) is compared to that of low-carbon steel (LC) in a simulated concrete pore solution with a chloride concentration of 5 mol/L. The electrochemical behaviour of the bars was characterised using linear polarisation resistance (LPR) and electrochemical impedance spectroscopy (EIS). The pitting profiles were detected by reflective digital holographic microscopy (DHM), scanning electron microscopy (SEM), and the chemical components produced in the pitting process were analysed by X-ray energy dispersive spectroscopy (EDS). The results show that the CR bars have a higher resistance to pitting corrosion than the LC bars. This is primarily because of the periodic occurrence of metastable pitting during pitting development. Compared to the pitting process in the LC bars, the pitting depth grows slowly in the CR bars, which greatly reduces the risk of pitting. The possible reason for this result is that the capability of the CR bars to heal the passivation film helps to restore the metastable pits to the passivation state.
机译:在这项研究中,比较了新型耐腐蚀合金钢(CR)和低碳钢(LC)在模拟氯浓度为5 mol / L的混凝土孔隙溶液中的点蚀行为。使用线性极化电阻(LPR)和电化学阻抗谱(EIS)来表征棒的电化学行为。通过反射数字全息显微镜(DHM),扫描电子显微镜(SEM)检测点蚀轮廓,并通过X射线能量色散谱(EDS)分析在点蚀过程中产生的化学成分。结果表明,CR棒比LC棒具有更高的抗点蚀性。这主要是由于在点蚀过程中周期性发生亚稳点蚀。与LC棒中的点蚀过程相比,CR棒中的点蚀深度增长缓慢,这大大降低了点蚀的风险。该结果的可能原因是CR棒愈合钝化膜的能力有助于将亚稳态凹坑恢复到钝化状态。

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