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Mechanical and durability properties of recycled aggregate concrete with ternary binder system and optimized mix proportion

机译:用三元粘合剂系统再生骨料混凝土的机械和耐用性能,优化混合比例

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This study aimed to investigate the mechanical and durability properties of recycled aggregate concrete with a ternary binder system and optimized mix proportion. Two concrete batches were developed using a densified mix design approach (DMDA) to evaluate the required mix proportions. Batch I have GGBS content varied at 0%, 10%, 20%, 30%, 40% and 50% at constant w/b ratio of 0.45, while batch II concrete mix have varied water/binder ratios: 0.3, 0.35, 0.4, 0.45 and 0.5 at constant GGBS replacement level of 30%. The fine aggregate (river sand) of the two batches was blended with fly ash at optimum loose packing density (FA+Sand) and superplasticizer (SP) was incorporated in the mix at a constant level of 1.4%. A control mix comprising of natural aggregate was also developed. The results obtained showcased the feasibility of producing structural concrete with recycled aggregates using GGBS and fly ash. The mechanical and durability properties were best at 30% GGBS content and 0.35 water/binder ratio. The DMDA for mix proportion adopted for RAC contributed significantly to improving its properties when compared to NAC, especially at the optimum observed RAC mix with compressive strength of 52MPa. Also, the mix demonstrated good permeability resistance in terms of chloride-ion ingress and capillary water absorption.
机译:本研究旨在探讨用三元粘合剂体系的再生骨料混凝土的机械和耐久性特性,并优化混合比例。使用致密的混合设计方法(DMDA)开发了两种混凝土批次,以评估所需的混合比例。批次I具有GGBS含量的0%,10%,20%,30%,40%和50%,恒定的w / b比为0.45,而批次II混凝土混合物具有各种水/粘合剂比例:0.3,0.35,0.4 ,0.45和0.5,恒定的GGBS更换水平为30%。两批的细骨料(河砂)与粉煤灰以最佳的松散填料密度(Fa +砂)混合,并在混合物中以1.4%的恒定水平掺入过度塑化剂(SP)。还开发了包含天然骨料的控制混合物。得到的结果阐述了使用GGB和粉煤灰用再循环聚集体产生结构混凝土的可行性。机械和耐久性特性最佳地为30%GGBS含量和0.35水/粘合剂比。用于RAC采用的混合比例的DMDA显着促进其与NAC相比改善其性质,特别是在最佳观察到的RAC混合中,抗压强度为52MPa。此外,该混合物在氯离子进入和毛细管吸水方面表现出良好的渗透性抗性。

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