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Effect of aggregates on the diffusion properties and microstructure of cement with slurried silica fume based materials

机译:骨料对硅粉浆料对水泥的扩散性能和微结构的影响

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摘要

Diffusivity of cement-based materials is an important factor regarding durability and the service life prediction of concrete structures. The present research focuses on investigating the influence of aggregates on tritiated water diffusivity of cement-based materials containing slurried silica fume. Effective diffusion coefficients of mortars with several sand volume fractions varying from 0 to 65% were determined by through-out diffusion tests. Microstructure was examined by scanning electron microscopy associated to energy dispersive spectrometry analysis, thermogravimetric analysis, water and mercury porosimetry, and BET adsorption analysis. It was found that large agglomerated particles of silica fume observed in cement paste and mortar with a low sand content (here 10%), reduce pozzolanic reactivity and thus affect the effectiveness of silica fume on the materials sustainability parameters. The clusters present in these formulations are mainly due to the interaction of silica fume with calcium hydroxide of the mixing solution and not to the initial state of the slurry, which was well stirred and whose particles size were checked before use. However, the presence of high content of aggregates (more than 30% of sand volume fraction) during mortar's mixing improves the dispersion of slurried silica fume particles and helps to 'shear' and break up agglomerates of silica fume providing a better homogenization of the material and improving the microstructural and diffusivity parameters. The addition of superplastizer in mortars with more than 50% sand content may also participate in dispersing silica fume. (C) 2016 Elsevier Ltd. All rights reserved.
机译:水泥基材料的扩散性是影响混凝土结构耐久性和使用寿命的重要因素。本研究的重点是调查骨料对含浆状硅粉的水泥基材料tri化水扩散率的影响。通过全程扩散测试,确定砂体积分数在0至65%之间的砂浆的有效扩散系数。通过与能量色散分析,热重分析,水和汞孔隙率法以及BET吸附分析相关的扫描电子显微镜检查微观结构。已发现在水泥浆和砂浆中观察到的大的硅粉团聚颗粒具有低的砂含量(此处为10%),降低了火山灰反应性,因此影响了硅粉对材料可持续性参数的有效性。这些配方中存在的簇主要是由于硅粉与混合溶液的氢氧化钙的相互作用,而不是由于浆液的初始状态,浆液被充分搅拌并在使用前检查了其粒径。但是,在砂浆混合过程中,高含量的骨料(超过砂体积分数的30%)的存在会改善浆状硅粉颗粒的分散性,并有助于“剪切”和分解硅粉团聚体,从而使物料更好地均质化并改善了微结构和扩散参数。在砂含量超过50%的砂浆中添加超塑化剂也可能参与分散硅粉。 (C)2016 Elsevier Ltd.保留所有权利。

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