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Performance of self-compacting geopolymer concrete with and without GGBFS and steel fiber

机译:含和不含GGBFS和钢纤维的自密实地聚合物混凝土的性能

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The study herein reports the impact of Steel Fiber (SF) and Ground Granulated Blast Furnaces slag (GGBFS) content on the fresh and hardened properties of fly ash (FA) based Self-Compacting Geopolymer Concrete (SCGC). Two series of self-compacting geopolymer concrete (SCGC) were formulated with a constant binder content of 450 kg/m~3 and at an alkaline-to-binder (a/b) ratio of 0.50. Fly ash (FA) was substituted with GGBFS with the replacement levels being 0%, 25%, 50%, 75%, and 100% by weight in each SCGC series. Steel fiber (SF) wasn't employed in the assembly of the initial concrete series whereas, within the second concrete series, an SF combination was achieved by a constant additional level of 1% by volume. Fresh properties of mixtures were through an experiment investigated in terms of slump flow diameter, T50 slump flow time, V-funnel flow time, and L-box height ratio. Moreover, the mechanical performance of the SCGCs was evaluated in terms of compressive strength, splitting tensile strength, and fracture toughness. Furthermore, a statistical analysis was applied in order to judge the importance of the experimental parameters, like GGBFS and SF contents. The experimental results indicated that the incorporation of SF had no vital impact on the fresh characteristics of the SCGC mixtures whereas GGBFS aggravated them. However, the incorporation of GGBFS was considerably improved the mechanical properties of SCGCs. Moreover, the incorporation of SF with the total different quantity of GGBFS replacement has considerably increased the mechanical properties of SCGCs, by close to (65%) for the splitting strength and (200%) for compressive strength.
机译:本文的研究报告了钢纤维(SF)和高炉矿渣粉(GGBFS)含量对基于粉煤灰(FA)的自密实地质聚合物混凝土(SCGC)的新鲜和硬化性能的影响。配制了两种系列的自密实地聚合物混凝土(SCGC),其恒定粘结剂含量为450 kg / m〜3,碱与粘结剂(a / b)的比例为0.50。粉煤灰(FA)替换为GGBFS,每个SCGC系列中的替代含量分别为0%,25%,50%,75%和100%(重量)。最初的混凝土系列的装配中未使用钢纤维(SF),而在第二个混凝土系列中,SF组合的添加量恒定为1%(体积)。通过坍落流直径,T50坍落流时间,V漏斗流时间和L箱高度比研究了混合物的新鲜特性。此外,根据抗压强度,劈裂抗张强度和断裂韧性评估了SCGC的机械性能。此外,为了判断实验参数(例如GGBFS和SF含量)的重要性,进行了统计分析。实验结果表明,SF的掺入对SCGC混合物的新鲜特性没有重要影响,而GGBFS使它们恶化。但是,GGBFS的加入大大改善了SCGC的机械性能。而且,SF与不同总量的GGBFS替代品的结合大大提高了SCGC的机械性能,其抗裂强度接近(65%),抗压强度接近(200%)。

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