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Influence of fine recycled concrete aggregates on the properties of mortars

机译:细粒再生混凝土骨料对砂浆性能的影响

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Fine recycled concrete aggregates (FRCA) also called recycled sand, having particle sizes smaller than 5 mm, are essentially composed of mortar and hardened cement paste. Therefore they induce a large water demand which makes them hard to recycle into mortar and concrete. In this paper, the properties of mortars containing FRCA have been studied, including fresh properties, mechanical properties and interfacial transition zone (ITZ) microstructure. The influence of saturation state of FRCA (dried or saturated) on the properties of mortars of identical compositions has first been studied. The results showed that the slump of mortars containing dried FRCA is always larger than that of mortars containing saturated FRCA. Indeed, in the case of dried FRCA, the theoretical amount of absorbed water is added at the beginning of mixing leading to a temporary increase of the initial efficient W/C ratio and volume of paste, leading to a better workability before its absorption into FRCA. On the contrary, the absorbed water in saturated FRCA is not readily available and thus cannot contribute to increase the initial efficient W/C ratio. Moreover, the compressive strength of mortars containing dried FRCA is always larger than that of mortars made with saturated FRCA, which is attributed to a thinner interfacial transition zone improving its mechanical properties. The influence of the fraction of recycled sand and of the granular class of recycled sand on the mechanical properties of mortars has then been studied with saturated FRCA. The compressive strength of mortars decreases quasi linearly as the replacement percentage of recycled sand increases. Moreover, it is shown that the finer fraction of recycled sand (0/0.63 mm) has the worse effect on the mechanical properties, of mortars. (c) 2015 Elsevier Ltd. All rights reserved.
机译:细的再生混凝土骨料(FRCA)也称为再生砂,其粒径小于5毫米,主要由砂浆和硬化的水泥浆组成。因此,它们引起大量的水需求,这使得它们难以回收成砂浆和混凝土。本文研究了含FRCA砂浆的性能,包括新鲜性能,机械性能和界面过渡区(ITZ)微观结构。首先研究了FRCA(干燥或饱和)饱和状态对相同组成砂浆性能的影响。结果表明,含有干燥FRCA的砂浆的坍落度始终大于含有饱和FRCA的砂浆的坍落度。的确,对于干燥的FRCA,在混合开始时就添加了理论量的吸收水,这会导致初始有效W / C比和浆料体积暂时增加,从而在吸收到FRCA中之前具有更好的可加工性。 。相反,在饱和FRCA中吸收的水不易获得,因此不能有助于增加初始有效W / C比。此外,含有干燥的FRCA的砂浆的抗压强度始终大于使用饱和FRCA制成的砂浆的抗压强度,这归因于更薄的界面过渡区,改善了其机械性能。然后用饱和FRCA研究了再生砂的比例和粒状再生砂对砂浆力学性能的影响。随着再生砂替代率的增加,砂浆的抗压强度近似线性下降。此外,结果表明,再生砂的细颗粒(0 / 0.63 mm)对砂浆的机械性能影响较差。 (c)2015 Elsevier Ltd.保留所有权利。

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