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Surface Modification of Rusted Rebar and Enhanced Passivation/Anticorrosion Performance in Simulated Concrete Pore Solutions with Different Alkalinity

机译:不同碱度模拟混凝土孔隙溶液中生锈钢筋的表面改造,具有不同碱度的模拟混凝土孔溶液中的钝化/防腐性能

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摘要

Naturally exposed rusted rebar has been widely used for the production of reinforced concrete. However, rusted rebar is prone to corrosion under chloride ion (Cl−) contamination and/or at a low alkalinity of concrete. This study employed two surface modification methods, sand blasting and wire brushing, to augment the corrosion resistance of naturally exposed rusted rebar. Electrochemical tests revealed that the surface-modified rebar displayed a significant improvement of passivation in the concrete alkaline environment and anticorrosion performance in both the Cl− free and Cl−-containing simulated concrete pore solutions of different alkalinity. The enhanced performance was mainly due to the elimination of the rust layer and the direct exposure of the fresh metallic surface to the alkaline medium. Moreover, the effect of surface nanograins on the intensified passive film led to the best passivation performance of the wire-brushed rebar. The overall findings demonstrate that the two developed methods were conducive to the passivation and anticorrosion performance of the rusted rebar and thereby hold great promise for improving the service life of the reinforced concrete structures.
机译:自然暴露的生锈钢筋已被广泛用于钢筋混凝土的生产。然而,生锈的钢筋易于在氯离子(CL-)污染和/或混凝土的低碱度下腐蚀。本研究采用了两种表面改性方法,喷砂和丝刷,增加了自然暴露的生锈钢筋的耐腐蚀性。电化学测试表明,表面改性的钢筋在不同碱度的无铅和Cl - 含有模拟混凝土孔隙溶液中显着提高了混凝土碱性环境和防腐性能的钝化。增强的性能主要是由于消除了生锈层和新金属表面的直接暴露于碱性介质。此外,表面纳米对强化无源膜的影响导致了线刷钢筋的最佳钝化性能。整体研究结果表明,这两种开发的方法有利于生锈钢筋的钝化和防腐性能,从而对改善钢筋混凝土结构的使用寿命具有巨大的希望。

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