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Link between microstructure and tritiated water diffusivity in mortars

机译:砂浆微观结构与氚化水扩散率之间的联系

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Ions and radionuclide diffusivity in concrete is one of the most important factors that determine service life and safety assessment of cement based structures in nuclear power plants and radioactive-waste repositories. Apart from the influence of cement paste microstructure,the presence of aggregates may have an impact on transport properties of the material. The well-known interfacial transition zone,denoted by ITZ,is created near the aggregates and characterized by a greater porosity. The goal of this study is to investigate the competition between the more diffusing ITZ zone and the less diffusing aggregates. To this end,several series of tritiated water diffusion tests are conducted on mortars characterized by different water-to-cement ratios and sand volume fractions. In parallel,microstructure of these materials is explored by mercury and water porosimetry. It was observed that at low sand content (0% - 50%),diffusion properties of mortars are dominated by aggregates dilution effect. At 60% sand,diffusion increases significantly suggesting that percolation's pores threshold has been reached. Results indicate also that sand particle size distribution has a great impact on the diffusivity of mortars.
机译:在具体离子和放射性核素的扩散是决定使用寿命,并在核电厂和放射性废物处置库的水泥基础结构的安全性评估的最重要因素之一。除了水泥浆微观结构的影响,聚集物的存在可能对材料的传输特性的影响。公知的界面过渡区,通过ITZ表示时,在聚集体附近产生和其特征在于较大的孔隙率。这项研究的目的是调查更扩散界面过渡区和较扩散总量之间的竞争。为此,几个系列的氚化水扩散测试在迫击炮特征在于不同的水与水泥的比率和砂的体积分数进行。平行地,这些材料的微观结构是由汞和水孔隙率的探讨。据观察,在低含砂量(0% - 50%),迫击炮的扩散特性是由聚集体的稀释作用占主导地位。在60%的沙子,扩散增加显著表明渗透的毛孔已经达到阈值。结果还表明,粒度砂分布对砂浆的扩散有很大的影响。

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