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Mechanical properties of recycled aggregate concrete treated byvariation in mixing approaches

机译:混合方法中再生骨料混凝土治疗方法的机械性能

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Increased demand for natural aggregates (NA) due to infrastructural development has necessitated the use of alternative aggregates in the field of construction. One such option is the utilization of construction and demolition wastes, preferably named as recycled coarse aggregates (RCA) to produce a sustainable recycled aggregate concrete (RAC). Perhaps, the quality of RCA is usually poor due to the presence of adhered mortar on its surface affecting the strength and durability properties of RAC. Consequently, it is essential to improve the behavior of recycled aggregate concrete. In order to improve the recycled concrete aggregate, four different processing techniques such as two-stage mixing approach (TSMA), mortar mixing approach (MMA), sand enveloped mixing approach (SEMA) and double mixing approach (DMA) were used to improve the quality of RAC. This paper aims at providing a comparative study on the suitability of different mixing approaches and their influence over the fresh and hardened properties of recycled aggregate concrete. The performance behaviour of RAC was evaluated at 7, 14, 28 and 90 days with various percentage replacements of RCA at w/c ratios of 0.45 and 0.5. Experimental results indicate that the strength of concrete made of 100% RCA was equivalent to the target strength at 90 days. Also, among the various mixing processing techniques, MMA shows better fresh and hardened properties of concrete at different curing ages. Micro-structural investigations through SEM were performed to investigate the modification in the ITZ of the RAC through MMA approach.
机译:由于基础设施的发展,对自然聚集体(NA)的需求增加所以需要在建设领域中使用替代聚集体。一种这样的选择是利用建筑和拆除废物,优选被命名为再循环粗聚集体(RCA),以产生可持续的再生骨料混凝土(RAC)。也许,由于其表面上存在粘附的砂浆,RCA的质量通常差,影响RAC的强度和耐久性性能。因此,必须改善再生骨料混凝土的行为。为了改善再生混凝土聚集体,四种不同的加工技术,如两级混合方法(TSMA),砂浆混合方法(MMA),砂包膜混合方法(SEMA)和双混合方法(DMA)用于改善rac的质量。本文旨在提供对不同混合方法的适用性及其对再生骨料混凝土的新鲜和硬化性能的适用性的比较研究。 RAC的性能行为在7,14,28和90天评估,在0.45和0.5的W / C比率下的各种百分比替代RCA。实验结果表明,100%RCA制成的混凝土强度相当于90天的目标强度。此外,在各种混合加工技术中,MMA在不同的固化年龄下显示了混凝土的更好的新鲜和硬化性质。通过SEM进行微观结构调查,以通过MMA方法调查RAC的ITZ中的修改。

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