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Rheology, shrinkage and pore structure of alkali-activated slag-fly ash mortar incorporating copper slag as fine aggregate

机译:以铜渣为细骨料的碱渣-粉煤灰砂浆的流变,收缩和孔结构

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his study was conducted to investigate the effect of the use of copper slag (CS) as fine aggregate to replace natural sand (NS) at different volume replacement levels (namely, 0%, 20%, 40% and 60%) on the properties of alkali-activated slag-fly ash (AASF) mortars. In addition, both low calcium (LC) and high calcium (HC) alkali-activated slag-fly ash (AASF) mortars were used to studied the influence of the mass ratio of fly ash to fly ash and slag on the properties of mortars. The workability, mechanical properties, autogenous and drying shrinkage and pore structure of mortars were investigated. Results show that using CS to replace NS in AASF mortars at appropriate levels (i.e. 20% and 40%) slightly increases the fluidity, yield stress, consistency, and mechanical strength, while restraining the drying shrinkage and refining the pore structure of mortars. However, when the replacement ratio is increased to 60%, the mortar becomes inhomogeneous due to the high density of CS particles, leading to poor performance of mortars. The use of CS as fine aggregate at a suitable level in AASF mortars can reduce NS consumption while also providing an avenue for value added use of CS. (C) 2020 Elsevier Ltd. All rights reserved.
机译:他的研究旨在研究使用铜渣(CS)作为细骨料替代不同体积置换水平(即0%,20%,40%和60%)的天然砂(NS)的性能。碱活化的粉煤灰(AASF)砂浆。此外,还使用低钙(LC)和高钙(HC)碱活化矿渣-粉煤灰(AASF)砂浆研究了粉煤灰与粉煤灰和矿渣的质量比对砂浆性能的影响。研究了砂浆的可加工性,力学性能,自生和干缩以及孔隙结构。结果表明,在适当的水平(即20%和40%)下,使用CS替代ASF砂浆中的NS会稍微增加流动性,屈服应力,稠度和机械强度,同时抑制干燥收缩并细化砂浆的孔结构。然而,当替换率增加到60%时,由于CS颗粒的高密度,灰浆变得不均匀,导致灰浆的不良性能。在ASF砂浆中以合适的含量将CS用作细骨料可以减少NS消耗,同时也为CS的增值使用提供了途径。 (C)2020 Elsevier Ltd.保留所有权利。

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