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Initiation of chloride-induced corrosion of steel in concrete: role of the interfacial zone

机译:氯化物引起的混凝土中钢的腐蚀的引发:界面带的作用

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This paper provides a brief review of research aimed at characterising the steel- concrete interfacial zone (SCIZ) and its influence on the susceptibility of the metal to pitting corrosion when concrete is exposed to environments that cause ingress of chloride ions accompanied by leaching of hydroxyl ions. For reinforced concrete made from Portland cements, exposed to aqueous solutions of sodium chloride, the buffering effect of solid calcium hydroxide (portlandite) at pH ~12.6 has been shown to restrain the gradual decline in the hydroxyl ion concentration of the concrete pore solution phase at depths corresponding to the embedded steel. When the concrete is produced under laboratory conditions that are carefully controlled to exclude macroscopic defects from the SCIZ and the steel is cleaned before being embedded, this can lead to observed chloride threshold levels being consistently greater than 1% chloride by mass of cement. The buffering action of cement hydration products formed in the SCIZ is believed to be partly responsible for this high tolerance to chloride-induced corrosion because it counters the generation of 'anodic acidity' that is a necessary condition for stable growth of pits to occur. Translating this behaviour of laboratory specimens to the performance of full-scale reinforced concrete structures has often proved difficult in the past and there is a need for further research in this area, particularly in relation to the role of non-traditional cements.
机译:本文简要概述了旨在表征钢-混凝土界面区域(SCIZ)及其对混凝土在暴露于会导致氯离子进入并伴有氢氧根离子浸出的环境中时金属对点蚀敏感性的影响的研究的简要综述。 。对于由波特兰水泥制成的钢筋混凝土,暴露于氯化钠水溶液中,在pH〜12.6的条件下,固体氢氧化钙(钙矾石)的缓冲作用已显示出可以抑制混凝土孔隙溶液相中氢氧根离子浓度的逐渐下降。对应于嵌入钢的深度。当在实验室条件下生产的混凝土经过仔细控制以排除SCIZ中的宏观缺陷,并且在埋入钢之前对其进行清洁时,这可能导致观察到的氯化物阈值水平始终大于水泥质量的1%。人们认为,在SCIZ中形成的水​​泥水合产物的缓冲作用部分归因于这种对氯化物诱导的腐蚀的高耐受性,因为它可以抵消“阳极酸度”的产生,而“酸性酸度”是产生矿坑稳定生长的必要条件。在过去,通常很难将实验室标本的这种行为转换为全尺寸钢筋混凝土结构的性能,并且需要在这一领域进行进一步的研究,尤其是与非传统水泥的作用有关的研究。

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