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Characterisation and microstructure of high-performance concretes reinforced with metal fibres ripened in seawater

机译:海水中成熟的金属纤维增强高性能混凝土的特征和微观结构

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摘要

High-performance concretes reinforced with metal fibres (SFRHPC) have multiple advantages when they are used in the marine environment. These materials provide high strengths at the young age that permit faster formwork stripping, resistance to hydrostatic thrusts due to the tides, structural elements sections' reduction, as well as weight reduction of the structure, and the increase of the abrasion resistance to sand or gravel. The maritime works are exposed to specific seawater aggressions. Seawater contains aggressive salts, which damage the concrete and the steel that it may contain. These salts are mainly chlorides and sulphates. This study investigated the ripening of steel fibre-reinforced high-performance concrete, with 15% substitution of cement by blast furnace slag, in Rance (France's seawater). This experimental study analysed the effect of 6 and 24 months of ripening of the sample, in aggressive water, on the characterisation of the concrete and the microstructure of the cement's matrix and its fibres. Also, in this study, after two years of concrete conservation, we carried out the chemical and mineralogical composition of the seawater. The results showed that there is no significant alteration of concrete kept in seawater and the steel fibres were not altered. In other words, it stayed passivated even after two years of ripening.
机译:用金属纤维(SFRHPC)加强的高性能混凝土在海洋环境中使用时具有多种优点。这些材料在允许更快的模板上剥离,由于潮汐,结构元件部分的减少,以及结构的重量降低以及耐磨性的耐磨性和砂砾或砂砾的重量增加。海上工作面临特定的海水攻击。海水含有腐蚀性的盐,它损坏了它可能含有的混凝土和钢。这些盐主要是氯化物和硫酸盐。本研究调查了钢纤维增强高性能混凝土的成熟,在RASE(法国海水)中通过高炉渣替换水泥15%。该实验研究分析了样品成熟的6和24个月,在侵蚀性水中的效果和水泥基质及其纤维的微观结构上的效果。此外,在这项研究中,经过两年的混凝土保护,我们进行了海水的化学和矿物学组成。结果表明,在海水中没有明显改变混凝土,钢纤维没有改变。换句话说,即使经过两年的成熟,它也会保持钝化。

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