Development of Eco-Friendly Mortars Produced with Blast Furnace Slag, Calcined Eggshell and Brick Waste: Mechanical Behavior and Microstructure Assessment

Salima Boukour, F. Bouteldja, E. Bensaifi
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Abstract

The granulated blast furnace slag exhibits pozzolanic reactivity when combined with appropriate activator and can be used in a wide range as cement replacement. The aim of this study is to investigate the effect on the mechanical and microstructure properties of incorporating admixture composed by granulated blast furnace slag (GBFS), calcined eggshell (CES), and brick waste (BW), as replacement of cement in the formulation of mortar. Ten different mixes of mortar prismatic specimens were tested with different replacement levels of raw materials (50, 75, and 100%). The results show that the increase in the proportion of raw materials decreases significantly drying shrinkage, dry unit weight and strengths of mixtures mortar compared to control mortar at early age. The decrease in strengths is less important in the long term due the development of pozzolanic reaction. Moreover, the water absorption and open porosity were increased for all cases. The microscopic analysis by Scanning Electron Microscopy (SEM) shows that the proportion of 15% of calcined eggshell powder in admixture, provides more Calcium Silicate Hydrate gel (C-S-H) in the internal cementitious matrix of the mortar, which explains the best mechanical strength provided by this mixture.
高炉渣、煅烧蛋壳和废砖环保型砂浆的研制:力学性能和微观结构评价
与适当的活化剂配合使用后,高炉矿渣颗粒表现出火山灰反应性,可广泛用作水泥替代品。本研究的目的是研究在砂浆配方中加入由粒状高炉渣(GBFS)、煅烧蛋壳(CES)和废砖(BW)组成的外加剂替代水泥对力学和微观结构性能的影响。采用不同的原材料替代水平(50%、75%和100%)测试了10种不同混合砂浆柱状试件。结果表明:与早期对照砂浆相比,原料掺量的增加显著降低了混合砂浆的干收缩率、干单位重和强度;长期来看,由于火山灰反应的发展,强度的降低已经不那么重要了。吸水率和孔隙率均有所提高。扫描电镜(SEM)分析表明,掺量为15%的煅烧蛋壳粉能在砂浆内部胶凝基质中提供更多的水合硅酸钙凝胶(C-S-H),这说明该混合物具有最佳的机械强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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