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Improvement of early strength of fly ash-slag based one-part alkali activated mortar

机译:粉煤灰渣的早期强度提高综合碱活性砂浆

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One-part Alkali activated material (AAM) is eco-friendly replacement of OPC with adequate strength and durability characteristics. In this study, the impact of slag content, activator dosage, retarder content and curing temperature was evaluated on fresh and early-age mechanical properties of one-part fly ash/slag-based alkali activated mortar. For assessing the effect of curing temperatures, three temperatures were selected: 20 degrees C low ambient temperature, 35 degrees C high ambient temperature and 65 degrees C replicating heat curing. Consistency, setting time, mix temperature and pH measurements were recorded for fresh mix using standard procedures. In addition, hardened mortar specimens were tested for compressive and flexure strength in conjunction with microstructural characteristics (SEM, XRD, and FTIR analysis). The test results depicted that among all parameters, curing temperature governed the development of early age strength of one-part AAM mortar. Microstructural testing confirmed the enhancement of the geopolymerization reaction through heat curing thus leading to a substantial increase in the early strength. (C) 2020 Elsevier Ltd. All rights reserved.
机译:单份碱活性物质(AAM)是ECO友好的替代OPC,具有足够的强度和耐久性特性。在该研究中,对矿渣含量,活化剂剂量,延迟剂含量和固化温度的影响进行了评估对新鲜和早期的粉煤灰/渣碱活性砂浆的新鲜和早期机械性能。为了评估固化温度的效果,选择了三个温度:20℃低环境温度,高环境温度高,65摄氏度复制热固化。使用标准程序记录用于新混合的一致性,设定时间,混合温度和pH测量。此外,测试硬化的砂浆标本,与微观结构特征(SEM,XRD和FTIR分析相结合,测试压缩和挠曲强度。测试结果描绘了,在所有参数中,固化温度控制了一部分AAM砂浆的早期强度的发展。微观结构测试证实通过热固化来提高地质聚合物化反应,从而导致早期强度大幅增加。 (c)2020 elestvier有限公司保留所有权利。

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