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Numerical study of the influence of drying on properties governing the carbonation mechanism of concretes with low clinker content

机译:干燥对低熟料含量碳化机理性能影响的数值研究

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This paper presents a numerical study of the coupling between cement hydration and drying of concretes with high amount of fly ash or blast-furnace slag and concretes with Portland cement or blended cements. The study, conducted with the MLS by FEMMASSEA (R) code, aims at assessing the influence of drying on concrete properties governing carbonation kinetics, i.e. porosity, Portlandite content and liquid water saturation degree. These properties were found not uniform according to the depth within the concrete material. In the cover zone, high substitution concrete should have a higher carbonation risk than Portland cement concrete because of the slow hydration kinetics combined with the suspending effects of drying on hydration. Therefore, high substitution concrete should require a longer period of curing than Portland cement-based concretes.
机译:本文介绍了水泥水化与大量粉煤灰或高炉炉渣和带有波特兰水泥或混纺水泥的混凝土的混凝土耦合的数值研究。 通过Femmassea(R)代码的MLS进行的研究旨在评估干燥对混凝土性能的影响,用于治疗碳化动力学的混凝土性能,即孔隙率,波特兰石含量和液体水饱和度。 根据混凝土材料内的深度,发现这些性质并不均匀。 在覆盖区中,高取代混凝土应具有比波特兰水泥混凝土更高的碳化风险,因为缓慢的水合动力学联合干燥对水合的悬浮效果。 因此,高取代混凝土应需要比波特兰水泥的混凝土更长的固化。

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