Modelling of fresh properties and strength activity index with microstructure characterisation of ternary cement incorporating waste glass and granulated blast furnace slag

Salah Eddine Daguiani, Oussama Kessal, Abdelouahed kriker, Abdessamed Mokhtari
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Abstract

Research in innovative construction materials has focused on utilising supplementary materials in cementitious composites to promote sustainable development and reduce CO2 emissions. Within this context, this study aims to investigate the fresh properties and assess the pozzolanic activity of ternary blended cement by incorporating two industrial waste materials, namely waste glass (WG) and granulated blast furnace slag (GBS), as cement replacements up to 30%. A mixture design approach was employed for composition optimisation, and mathematical models were implemented to achieve this. XRD and SEM/EDS analyses were conducted to examine the structure and composition of the cementitious matrix. The results indicate that the setting time was prolonged compared to the reference mixture. Furthermore, based on the results of the SAI (Strength Activity Index) test, an acceptable level of strength development was demonstrated, confirming that WG and GBS possess the potential to replace cement while meeting the minimum strength requirements outlined in the specifications. Microstructure analyses revealed good adhesion between WGP, GGBS, and the cementitious binder. This research contributes to the development of eco-efficient binders that exhibit increased cement replacement ratios and qualities comparable to, or even superior to, traditional cement systems.
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废玻璃-高炉矿渣颗粒型三元水泥的微观结构表征及其新性能和强度活性指标的建模
创新建筑材料的研究主要集中在利用胶凝复合材料中的补充材料来促进可持续发展和减少二氧化碳排放。在此背景下,本研究旨在通过加入两种工业废料,即废玻璃(WG)和颗粒状高炉炉渣(GBS)作为水泥替代品,研究三元混合水泥的新性能并评估其火山灰活性。混合设计方法用于成分优化,并实现了数学模型来实现这一目标。用XRD和SEM/EDS分析了胶凝基质的结构和组成。结果表明,与参比混合物相比,凝固时间延长。此外,基于SAI(强度活性指数)测试的结果,证明了可接受的强度发展水平,确认了WG和GBS具有替代水泥的潜力,同时满足规范中概述的最低强度要求。微观结构分析表明WGP、GGBS和胶凝粘合剂之间具有良好的粘附性。这项研究有助于开发具有生态效益的粘合剂,这种粘合剂具有更高的水泥替代率和质量,可与传统水泥系统相媲美,甚至优于传统水泥系统。
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