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Effect of the microstructure of mortars with low hydraulicity slag on their behavior in aggressive environments

机译:低水硬渣砂浆的微观结构对其在侵蚀性环境中的行为的影响

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Slag is one of the most used cement additives. Due to its latent hydraulic nature, attached to its hydraulicity, it can contribute to a microstructural modification and an improvement of the durability of the concrete face of aggressive environments. In this study, a low active slag is used in the manufacture of mortars as a substitute for cement, at a maximum rate of 50%. Firstly, a study of the microstructure with mercury porosimetry was used for determination of microstructural parameters (porosity, diameters and volume distribution). The behavior of mortars in aggressive environments (sodium and magnesium sulphate and seawater) was studied later. Despite the low reactivity of studied slag, its presence especially at 50% rate, in the long term, has led to a refinement of the microstructure. This effect, among others, led to better resistivity of the mortars in the sulphate environnements.
机译:矿渣是最常用的水泥添加剂之一。由于其潜在的水力特性,以及与水力相关的特性,它可以促进微观结构的改变,并改善侵蚀性环境下混凝土面的耐久性。在这项研究中,低活性矿渣用于制造砂浆以代替水泥,最大掺入率为50%。首先,利用水银孔率法对微观结构进行研究,以确定微观结构参数(孔隙度,直径和体积分布)。后来研究了砂浆在侵蚀性环境(硫酸钠和硫酸镁以及海水)中的行为。尽管所研究的炉渣的反应性较低,但从长远来看,尤其是以50%的比例存在时,已导致了微结构的细化。除其他外,该效应导致砂浆在硫酸盐环境中的更好的电阻率。

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