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Early strength and durability of metakaolin-based geopolymer concrete

机译:偏高岭土基高分子聚合物混凝土的早期强度和耐久性

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Approaches to improve the early strength of geopolymer mortar were studied in order to apply it to a fast-tack concrete pavement repair. The effects of modifying the molar ratio of silicon dioxide/sodium oxide (SiO2/Na2O) of the alkaline solution in a conventional geopolymer mixture and the addition of calcium aluminate cement and slag were studied. The early strength measured in the experiments was at curing times of 8 and 24 h, which are typically construction controlling times for pavement repair. It was found that a molar ratio of silicon dioxide/sodium oxide of 1.0 gave the shortest curing time and the highest early strength after 24 h. Adding calcium aluminate cement was found to reduce the curing time, but decrease the early strength. Slag substitution helped workability, but reduced the early strength at 8 and 24 h. Durability was also tested for the purpose of finding an economical pavement repair solution. A freeze-thaw durability experiment of the suggested metakaolin-based geopolymer concrete was conducted. It was found that a mix with a silicon dioxide/sodium oxide molar ratio of 1.0 produced higher durability than a mix with a silicon dioxide/sodium oxide molar ratio of 1.4. The geopolymer concrete mix with slag showed less weight loss than the other mixes.
机译:为了将其应用于快粘混凝土路面修补,研究了提高地质聚合物砂浆早期强度的方法。研究了改变传统地质聚合物混合物中碱性溶液的二氧化硅/氧化钠(SiO2 / Na2O)摩尔比以及添加铝酸钙水泥和矿渣的效果。在实验中测得的早期强度为8和24小时的固化时间,这通常是路面修复的施工控制时间。发现二氧化硅/氧化钠的摩尔比为1.0时,固化时间最短,24小时后的早期强度最高。发现添加铝酸钙水泥可减少固化时间,但会降低早期强度。矿渣替代提高了可加工性,但降低了8小时和24小时的早期强度。为了找到经济的路面修补解决方案,还对耐久性进行了测试。进行了建议的偏高岭土基高分子聚合物混凝土的冻融耐久性试验。发现二氧化硅/氧化钠摩尔比为1.0的混合物比二氧化硅/氧化钠摩尔比为1.4的混合物产生更高的耐久性。含矿渣的地聚合物混凝土混合物的重量损失比其他混合物少。

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