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Temporal flowability evolution of slag-based self-compacting concrete with recycled concrete aggregate

机译:回收混凝土骨料矿渣基自压力混凝土的时间流动性演化

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The addition of by-products, such as recycled concrete aggregate and ground granulated blast furnace slag, modify the in-fresh flowability of ordinary self-compacting concrete both initially and over time. A detailed study is presented in this paper of 18 mixtures (SF3 slump-flow class) containing 100% coarse recycled concrete aggregate, two types of cement (CEM I or CEM III/A, the latter with 45% ground granulated blast furnace slag), different contents of fine recycled concrete aggregate (0, 50, or 100%), and three different aggregate powders (ultra-fine limestone powder 0.063 mm, limestone fines 0/0.5 mm, and recycled concrete aggregate 0/0.5 mm). The temporal evolution of slump flow, viscosity, and passing ability, and the values of segregation resistance, air content, fresh and hardened density, and compressive strength were evaluated in all the mixtures. The addition of fine recycled concrete aggregate and CEM III/ A improved initial slump flow and passing ability by 6%, due to their higher proportion of fines. Nevertheless, the temporal loss of flowability within 60 min was 5.8% lower when adding natural aggregate and CEM I. Viscosity and air content increased 26% on average following additions of fine recycled concrete aggregate, unlike with additions of ground granulated blast furnace slag. Flowability and strength increased with the addition of limestone fines 0/0.5 mm. According to multi-criteria analyses, the mixtures with CEM III/A, 50% fine recycled concrete aggregate, and limestone fines 0/0.5 mm showed an optimal balance between their flowability (SF2 slump-flow class 60 min after the mixing process), compressive strengths (around 60 MPa), and carbon footprints. (C) 2021 Elsevier Ltd. All rights reserved.
机译:添加副产品,如再循环混凝土骨料和地造粒高炉炉渣,最初和随着时间的推移修改普通的自压力混凝土的新鲜流动性。本文介绍了含有100%粗再生混凝土聚集体,两种类型的水泥(CEM I或CEM III / A,后者45%地面粒状高炉炉渣)的本文进行了详细研究,不同含量的细循环混凝土聚集体(0,50,或100%)和三种不同的聚集粉(超细石灰石粉末<0.063mm,石灰石含量0 / 0.5mm,再循环混凝土骨料0 / 0.5 mm) 。在所有混合物中评估了坍落度,粘度和通过的坍落度,粘度和传递能力的时间演变,以及分离电阻,空气含量,新鲜和硬化密度的值和抗压强度。由于其较高的细粒比例,增加了精细再循环混凝土聚集体和CEM III / CEM III / A的初始坍落度和通过能力,通过较高的细粒比例。然而,当添加天然骨料和CEM I时,60分钟内的流动性的时间损失降低了5.8%。粘度和空气含量平均增加了26%,平均加入细循环混凝土聚集体,与地面粒状高炉渣不同。流动性和强度随着石灰石罚款0 / 0.5mm的增加而增加。根据多标准分析,用CEM III / A,50%精细的再生混凝土聚集体和石灰石罚款的混合物0 / 0.5mm在其流动性之间(SF2坍落度 - 流动级60分钟)显示了最佳平衡,压缩强度(约60MPa)和碳脚印。 (c)2021 elestvier有限公司保留所有权利。

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