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Effect of the activator on the performance of alkali-activated slag mortars with pottery sand as fine aggregate

机译:活化剂对以陶粒为细骨料的碱活化矿渣砂浆性能的影响

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Recently, alkali-activated slag mortars have attracted considerable attention as environmentally friendly materials. The objective of this paper was to explore the influence of an alkaline activator (NaOH or NaOH/Na2CO3 solutions) on the performance of alkali-activated slag (AAS) mortars with pottery sand as fine aggregate. Five Na2CO3-to-NaOH ratios of 0/100, 20/80, 40/60, 60/40, and 80/20, and three Na2O contents of 4%, 6%, and 8%, were used to prepare AAS mortars. The water-to-slag ratio and slagto-aggregate ratio were kept constant, at 0.38 and 0.8, respectively. The setting time, fluidity, compressive strength, and drying shrinkage were measured. The reaction hydrates were analyzed using microscopy and elemental analysis, while the pore structures were characterized using mercury intrusion porosimetry. The experimental results showed that both the Na2CO3-to-NaOH ratio and Na2O content had a significant effect on the fresh and hardened properties of AAS mortars. A high Na2CO3-to-NaOH ratio and low Na2O content resulted in AAS mortars with longer initial and final setting times. The higher Na2CO3-to-NaOH ratios led to a higher late compressive strength of AAS mortars, where the 6% Na2O samples showed the best performance with Na2O contents of 4-8%. In addition, the drying shrinkage behavior of AAS mortars as a function of Na2CO3-to-NaOH ratio was dependent on the Na2O content. Moreover, the compressive strength and drying shrinkage have a direct relationship with the microstructure of AAS mortars. (C) 2018 Elsevier Ltd. All rights reserved.
机译:近来,碱活化矿渣砂浆作为环保材料已引起相当大的关注。本文的目的是探讨碱性活化剂(NaOH或NaOH / Na2CO3溶液)对以陶粒为细骨料的碱活化矿渣(AAS)砂浆的性能的影响。用于制备AAS砂浆的5种Na2CO3与NaOH的比例分别为0 / 100、20 / 80、40 / 60、60 / 40和80/20,三种Na2O含量分别为4%,6%和8%。 。水渣比和炉渣-骨料比分别保持恒定,分别为0.38和0.8。测量凝固时间,流动性,抗压强度和干燥收缩率。使用显微镜和元素分析法分析反应水合物,同时使用压汞法测定孔隙结构。实验结果表明,Na2CO3与NaOH的比例和Na2O含量均对AAS砂浆的新鲜和硬化性能有显着影响。高的Na2CO3与NaOH之比和低的Na2O含量导致AAS砂浆的初始和最终凝固时间更长。较高的Na2CO3 / NaOH比值导致AAS砂浆的后期抗压强度较高,其中6%Na2O样品表现出最佳性能,Na2O含量为4-8%。此外,AAS砂浆的干燥收缩行为随Na2CO3与NaOH的比例而变化,还取决于Na2O的含量。而且,抗压强度和干燥收缩率与AAS砂浆的微观结构有直接关系。 (C)2018 Elsevier Ltd.保留所有权利。

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