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Effects of Curing Conditions and Sand-to-Binder Ratios on Compressive Strength Development of Fly Ash Geopolymer

机译:养护条件和砂灰比对粉煤灰土聚合物抗压强度发展的影响

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摘要

This paper investigates the effects of curing conditions on a high-strength geopolymer material synthesized by activating different combinations of Class F fly ash (FA), ground-granulated blast-furnace (slag), and ultrafine fly ash (UFFA) with a unified mixture of D-grade sodium silicate (Na_2SiO_3) and 12-M sodium hydroxide (NaOH) solutions. The effect of ambient air and water curing on the strength properties, cumulative porosity, and microstructure of geopolymer mortar samples was evaluated at room temperature. Subsequently, the effects of two different sand-binder ratios, the amount of FA replacement with UFFA, and slag on the short-term mechanical properties and workability of geopolymer mixtures is also discussed. The results show that the geopolymer specimens cured in water possessed a higher total porosity in relation to the air-cured samples. Air curing resulted in additional polymerization and fewer microcracks were observed within the scanning electron microscope photographs, which led to an increased compressive strength. Moreover, the use of UFFA was observed to significantly improve the strength of FA-slag blended geopolymers, where reduced porosity and denser microstructure in FA geopolymers was observed with the inclusion of slag at higher quantities.
机译:本文研究了固化条件对高强度地聚合物材料的影响,该材料是通过用统一的混合物活化F类粉煤灰(FA),磨碎的高炉矿渣和超细粉煤灰(UFFA)的不同组合而合成的D级硅酸钠(Na_2SiO_3)和12-M氢氧化钠(NaOH)溶液。在室温下评估环境空气和水固化对地质聚合物砂浆样品的强度性能,累积孔隙率和微观结构的影响。随后,还讨论了两种不同的砂粘结剂比率,用UFFA替代FA的量和矿渣对地质聚合物混合物的短期机械性能和可加工性的影响。结果表明,相对于空气固化样品,在水中固化的地质聚合物标本具有更高的总孔隙率。空气固化导致额外的聚合反应,并且在扫描电子显微镜照片中观察到的微裂纹更少,这导致了压缩强度的提高。此外,观察到使用UFFA可以显着提高FA-矿渣掺混土聚合物的强度,其中观察到FA土工聚合物中孔隙率的降低和微观结构的致密化,其中包括大量的矿渣。

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