会议论文详细信息
World Multidisciplinary Civil Engineering-Architecture-Urban Planning Symposium - WMCAUS
Influence of Exposure Conditions on the Efficacy of Lithium Nitrate in Mitigating Alkali Silica Reaction
土木建筑工程
Zapala-Slaweta, Justyna^1 ; Owsiak, Zdzislawa^1
Kielce University of Technology, Al. Tysiclecia Pastwa Polskiego 7, Kielce
25-314, Poland^1
关键词: Accelerated method;    Alkali-silica reaction;    Concrete pore solutions;    Exposure conditions;    Lithium carbonates;    Lithium nitrate;    Reactive aggregate;    X-ray microanalysis;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/245/2/022049/pdf
DOI  :  10.1088/1757-899X/245/2/022049
学科分类:土木及结构工程学
来源: IOP
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【 摘 要 】

Lithium nitrate is known to have the highest potential to inhibit alkali silica reaction in concrete. It is well soluble in water and does not increase the pH of concrete pore solution. The extent to which the alkali silica reaction is mitigated is affected by the amount of the applied lithium ions, exposure conditions and by the kind of reactive aggregate. It is known that some lithium compounds such as lithium carbonate or lithium fluoride, when used in insufficient amount, may increase expansion due to alkali silica reaction. This effect was not detected in the presence of lithium nitrate. The aim of this study was to determine the effect of lithium nitrate on alkali silica reaction in mortars exposed to different conditions. Expansion studies were conducted in accordance with the accelerated mortar bar test (ASTM C1260) and the standard mortar bar test (ASTM C227). It was observed that the long-term expansion results are different from the values obtained in the accelerated mortar bar test. Lithium nitrate does not reduce ASR-induced expansion when mortars are stored under conditions specified in ASTM C 227. The microstructure of the mortar samples exposed to different conditions was examined and X-ray microanalysis was performed. The microstructure and compositions of the alkali-silica reaction products varied. The amount of alkali silica gel in mortars with lithium nitrate in which the expansion was high was greater than that in the mortar bars tested by accelerated method.

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