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混合浮石-波特兰水泥提取物对不锈钢SS304和碳素软钢A36腐蚀活性的影响

Effect of a Hybrid Pumice-Portland Cement Extract on Corrosion Activity of Stainless Steel SS304 and Carbon Mild Steel A36.

作者信息

Bonfil David, Veleva Lucien, Escalante-Garcia Jose Ivan

机构信息

Center for Research and Advances Study (CINVESTAV), Applied Physics Department, Campus Merida, Merida 97310, Yucatan, Mexico.

Center for Research and Advanced Study (CINVESTAV), Campus Saltillo, Ramos Arizpe 25900, Coahuila, Mexico.

出版信息

Materials (Basel). 2024 May 10;17(10):2255. doi: 10.3390/ma17102255.

Abstract

The change in the corrosion activities of SS304 and the carbon steel A36 were studied during their exposure for 30 days to hybrid pumice-Portland cement extract (CE), to simulate the concrete-pore environment. The ionic composition and the initial pH (12.99) of the CE were influenced by the reduction of Portland cement (PC) content, volcanic pumice oxides and alkaline activators. Because of the air CO2 dissolution, the pH decreased and maintained a constant value ≈ 9.10 (established dynamic ionic equilibrium). The CE promoted the passivation of both steels and their free corrosion potential (OCP) reached positive values. On the surfaces, Fe and Cr oxides were formed, according to the nature of the steel. Over the time of exposure, the presence of chloride ions in the pumice caused a localized pitting attack, and for carbon steel, this fact may indicate an intermediate risk of corrosion. The chloride effect was retarded by the accumulation of SO42- ions at the steel surfaces. Based on electrochemical impedance (EIS), the polarization resistance (Rp) and the thickness of the passive layers were calculated. Their values were compared with those previously reported for the steels exposed to CEs of Portland and supersulfated cements, and the hybrid cement was considered as a PC "green" alternative.

摘要

研究了SS304不锈钢和A36碳钢在暴露于混合浮石-波特兰水泥提取物(CE)30天期间的腐蚀活性变化,以模拟混凝土孔隙环境。CE的离子组成和初始pH值(12.99)受波特兰水泥(PC)含量、火山浮石氧化物和碱性活化剂减少的影响。由于空气中二氧化碳的溶解,pH值下降并保持在约9.10的恒定值(建立动态离子平衡)。CE促进了两种钢材的钝化,其自由腐蚀电位(OCP)达到正值。根据钢材的性质,在表面形成了铁和铬的氧化物。在暴露期间,浮石中氯离子的存在导致了局部点蚀,对于碳钢来说,这一事实可能表明存在中等腐蚀风险。硫酸根离子在钢材表面的积累抑制了氯离子的作用。基于电化学阻抗(EIS),计算了极化电阻(Rp)和钝化层的厚度。将它们的值与先前报道的暴露于波特兰水泥和超硫酸盐水泥CE中的钢材的值进行了比较,并将混合水泥视为PC的“绿色”替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bc1/11123326/d5828aedd7ae/materials-17-02255-g001.jpg

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