Mechanical and durability performance of ternary blended calcined clay and pulverized granite mortar composites

IF 2 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Advances in Materials and Processing Technologies Pub Date : 2023-10-09 DOI:10.1080/2374068x.2023.2264590
Kwabena Boakye, Morteza Khorami
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Abstract

ABSTRACTPartially replacing cement with pozzolans, apart from the enormous technical benefits, has been reported as an effective approach to reducing greenhouse gases emanating from cement production. Calcined clay and pulverised granite, in recent years, have been experimented individually for their use as filler or pozzolan in concrete to improve workability and compressive strength. This research includes study of the synergistic characteristics of these two mineral admixtures and their influence on the mechanical and durability properties of mortar. Cement was partially substituted with 5–20% by weight of the composite material to form a ternary blended cement composite. The compressive strengths of the ternary blended cements were evaluated at 3, 7, 28 and 90 days. Durability properties such as alkali silica reactivity (ASR), rapid chloride permeability test (RCPT) and performance of the blended cements in aggressive media have been discussed. Test results indicated that, blended cements containing 5% and 10% of the pozzolan recorded similar compressive strengths at 28 days and outperformed it by 2.4% and 0.6% respectively at 90 days. Beyond 10% replacement, compressive strengths declined. The ternary blended cements were found to be highly reactive, potentially causing ASR in concrete than the reference cement.KEYWORDS: Pulverized granitecalcined clayporosityASRelectrical resistivitydurability Disclosure statementNo potential conflict of interest was reported by the author(s).
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煅烧粘土与花岗岩粉砂浆复合材料的力学性能和耐久性
摘要用火山灰部分替代水泥,除了具有巨大的技术效益外,还被报道为减少水泥生产产生的温室气体的有效方法。近年来,煅烧粘土和花岗岩粉分别作为混凝土填料或火山灰进行了试验,以提高混凝土的和易性和抗压强度。研究了这两种矿物掺合料的协同特性及其对砂浆力学性能和耐久性的影响。用复合材料重量的5-20%部分取代水泥,形成三元混合水泥复合材料。分别在第3、7、28和90天对三元水泥的抗压强度进行评价。讨论了混合水泥的耐久性能,如碱硅反应性(ASR)、快速氯化物渗透试验(RCPT)和在侵蚀介质中的性能。试验结果表明,掺入5%和10%火山灰的水泥在28天的抗压强度相似,在90天的抗压强度分别高出2.4%和0.6%。替代量超过10%后,抗压强度下降。发现三元混合水泥具有高活性,与参考水泥相比,可能导致混凝土中的ASR。关键词:花岗岩粉煅烧粘土孔隙率电阻率耐久性披露声明作者未报告潜在的利益冲突。
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来源期刊
Advances in Materials and Processing Technologies
Advances in Materials and Processing Technologies MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
3.90
自引率
27.30%
发文量
222
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