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Chloride binding and time-dependent surface chloride content models for fly ash concrete

机译:粉煤灰混凝土的氯离子结合和时变表面氯含量模型

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摘要

Corrosion of embedded rebars is a classical deterioration mechanism of reinforced concrete structures exposed to chloride environments. Such environments can be attributed to the presence of seawater, deicing or sea-salts, which have high concentrations of chloride ion. Chloride ingress into concrete, essential for inducing rebar corrosion, is a complex interaction between many physical and chemical processes. The current study proposes two chloride ingress parameter models for fly ash concrete, namely: 1) surface chloride content under tidal exposure condition; and 2) chloride binding. First, inconsistencies in surface chloride content and chloride binding models reported in literature, due to them not being in line with past research studies, are pointed out. Secondly, to avoid such inconsistencies, surface chloride content and chloride binding models for fly ash concrete are proposed based upon the experimental work done by other researchers. It is observed that, proposed models are simple, consistent and in line with past research studies reported in literature.
机译:嵌入式钢筋的腐蚀是暴露于氯化物环境的钢筋混凝土结构的经典劣化机理。此类环境可归因于海水,除冰剂或海盐的存在,它们具有高浓度的氯离子。氯化物进入混凝土,是引起钢筋腐蚀的关键,是许多物理和化学过程之间的复杂相互作用。目前的研究提出了两种粉煤灰混凝土氯离子进入参数模型,即:1)潮汐暴露条件下的表面氯含量; 2)氯化物结合。首先,指出了文献中报道的表面氯化物含量和氯化物结合模型的不一致,因为它们与过去的研究不一致。其次,为避免这种矛盾,根据其他研究人员所做的实验工作,提出了粉煤灰混凝土的表面氯含量和氯离子结合模型。可以看出,提出的模型是简单,一致的,并且与文献中报道的以往研究相一致。

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