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Utilisation of water quenched slag as fine aggregate in alkali activated mortar

机译:水淬矿渣作为细骨料在碱活化砂浆中的利用

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This study investigates the performance of water-quenched slag (WQS) fine aggregate in blended ground granulated blast furnace slag (GGBFS) and fly ash (FA) alkali-activated materials (AAM). Mortar samples derived from the corresponding concrete mix proportion were synthesised in this study, where river sand and WQS constituted the fine aggregate system in different proportions. Analysis of workability, rheological properties, mechanical properties, shrinkage, and microstructure were carried out. The results showed that the workability of AAM, setting time, and flowability deteriorated with an increase in WQS aggregate. AAM samples witnessed higher viscosity with increasing WQS, and a certain amount of WQS added bonds and mechanical force between particles to make mortars flow at a suitable rate. Shrinkage testing included both autogenous shrinkage during the first three days and drying shrinkage during the following 360 days. WQS had an effect on shrinkage due to physical properties such as irregular grain shape and rough surface, however, high shrinkage was also attributed to pore structures. Although WQS is conducive to improvement of microstructures, too much WQS as fine aggregate in AAM deteriorates the microstructures. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究调查了水淬渣(WQS)细骨料在混合磨碎的高炉矿渣(GGBFS)和粉煤灰(FA)碱活化材料(AAM)中的性能。本研究从相应的混凝土配合比中提取了砂浆样品,其中河砂和WQS以不同的比例构成细骨料系统。进行了可加工性,流变性能,机械性能,收缩率和微观结构的分析。结果表明,随着WQS骨料的增加,AAM的可加工性,凝固时间和流动性降低。 AAM样品随着WQS的增加而具有较高的粘度,并且一定量的WQS在颗粒之间增加了键和机械力,使砂浆以适当的速率流动。收缩率测试包括前三天的自发收缩和随后的360天的干缩。 WQS由于物理特性(例如不规则的晶粒形状和粗糙的表面)而对收缩有影响,但是,高收缩也归因于孔结构。尽管WQS有助于改善微观结构,但过多的WQS作为AAM中的细骨料会破坏微观结构。 (C)2018 Elsevier Ltd.保留所有权利。

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