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MECHANISMS OF ENHANCING THE CORROSION RESISTANCE OF REBAR IN CHLORIDE-CONTAMINATED CONCRETE

机译:提高氯化物污染混凝土中钢筋耐腐蚀性的机制

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Research relating to the performance of reinforcement in concrete usually deals with factors affecting damage to the concrete matrix, protection and repair techniques, and ways to assess corrosion rates and determine the life time of a reinforced concrete structure. However, little is known about the electrochemistry of passivity breakdown on iron and its alloys in concrete, although much is known about this phenomenon on metals in contact with homogeneous aqueous environments. The Point Defect Model (PDM) for the growth and breakdown of passive films has been developed as a general model for passivity breakdown on metals in aqueous solutions and has been shown to accurately describe the processes that lead to growth of the passive film on metals and the mechanisms by which passivity breakdown occurs. The PDM is adapted and used here, for the first time, to describe the initiation of corrosion due to chloride ion on steel bars embedded in concrete. The theory describes the role of alloying elements and inhibitors in enhancing the resistance of alloys to passivity breakdown, and has allowed us to formulate the principles of designing corrosion resistant materials for use in concrete environments.
机译:关于混凝土增强性能的研究通常涉及影响混凝土基质,保护和修复技术损坏的因素,以及评估腐蚀速率的方法,并确定钢筋混凝土结构的寿命。然而,关于铁及其混凝土中的熨斗及其合金的电化学的电化学众所周知,尽管关于这种与均匀含水环境接触的金属的这种现象非常了解。被动膜的生长和击穿的点缺陷模型(PDM)被开发为水溶液中金属的被动击穿的一般模型,并且已被证明可以准确地描述导致金属磁铁生长的过程和发生了被动击穿的机制。本文首次适用并使用PDM来描述由于嵌入混凝土中的钢筋上的氯离子引起的腐蚀的启动。该理论描述了合金元素和抑制剂在增强合金对所谓的阻力方面的作用,并且使我们能够制定用于混凝土环境中使用耐腐蚀材料的原理。

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