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An industrial applicable method to improve the properties of recycled aggregate concrete by incorporating nano-silica and micro-CaCO_3

机译:通过掺入纳米二氧化硅和微型Caco_3改善再生骨料混凝土性能的工业应用方法

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摘要

Reutilization of waste concrete is gaining worldwide popularity for promoting the sustainable development. To improve the properties of recycled aggregate concrete (RAC), in this work an industrial applicable mixing method was applied to strengthen recycled aggregates by using ultra-densified slurry. Nano-silica with high reactivity was incorporated in the strengthening surface-coating slurry. The nanoparticles accelerated cement hydration, promoted pozzolanic reaction, and increased the content of C-S-H gel. However, the strength enhancement of RAC diminished with time, for which CaCO3 microparticles were added to overcome this drawback. The combination of nano-sized and micro-sized particles not only improved the particle dense packing of binders but also promoted the multilevel hydration of cementitious materials. The phase compositions and thus the nanoscopic mechanical properties of both mortar matrix and new interfacial transition zone were subsequently improved. The proposed industrial applicable method that fully exerted the filling effect, activity effect and acceleration effect of nano-SiO2 and micro-CaCO3 optimized the microstructure of RAC and thus improved its properties. (C) 2020 Elsevier Ltd. All rights reserved.
机译:废物混凝土的再利用在全球范围内获得促进可持续发展的普及。为了改善再循环骨料混凝土(RAC)的性能,在这项工作中,应用工业适用的混合方法,通过使用超致密浆料加强再循环的聚集体。纳米二氧化硅具有高反应性的纳米二氧化硅掺入强化表面涂层浆料中。纳米颗粒加速水泥水合,促进的火山灰反应,增加了C-S-H凝胶的含量。然而,随着时间的推移,RAC的强度增强,加入了CaCO 3微粒以克服该缺点。纳米和微尺寸颗粒的组合不仅改善了粘合剂的颗粒密集包装,还促进了水泥材料的多级水合。随后改善了相组合物,从而改善了砂浆基质和新的界面过渡区的纳米镜机械性能。所提出的工业适用方法,完全发挥纳米SiO2和微型CaCO3的灌注效果,活性效应和加速度效应优化了RAC的微观结构,从而提高了其性质。 (c)2020 elestvier有限公司保留所有权利。

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