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Fractal dimension of concrete incorporating silica fume and its correlations to pore structure, strength and permeability

机译:掺入硅粉的混凝土的分形维数及其与孔隙结构,强度和渗透性的关系

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In this study, we focused on the correlations among the fractal dimension, compressive strength, and permeability of concrete incorporating silica fume. The fractal dimension was calculated from SEM images by using a box-counting method, and the pore structure, compressive strength, and permeability were tested by mercury intrusion, compression and water penetration tests, respectively. Results show that increasing silica fume content improves compressive strength but decreases permeability and fractal dimension. The filling of available space, the promotion of heterogeneous nucleation of cement hydrates and the pozzonlanic reaction of silica fume itself, which densifies and homogenizes concrete microstructures, account for the effects of silica fume on the strength, permeability, and fractal dimensions of concrete. Compressive strength shows no appealing correlations with total porosity, but decreases as median pore size increases. Increasing meso porosity tends to strengthen concrete, whereas coarse pores are always harmful to compressive strength. The relationship between permeability and threshold pore size roughly follows the Katz-Thompson relation. Increasing fractal dimension can linearly depress compressive strength but nonlinearly promote permeability. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在这项研究中,我们关注掺入硅粉的混凝土的分形维数,抗压强度和渗透性之间的关系。分形维数是使用盒数法从SEM图像计算得出的,其孔隙结构,抗压强度和渗透性分别通过压汞法和压水法测试。结果表明,增加硅粉含量可提高抗压强度,但会降低渗透率和分形维数。可用空间的填充,水泥水合物的不均匀成核的促进以及硅粉本身的火山灰反应(使水泥微结构致密化和均质化)说明了硅粉对混凝土强度,渗透性和分形尺寸的影响。抗压强度与总孔隙率没有明显的相关性,但随着中值孔径的增加而降低。细观孔隙率的增加往往会增强混凝土的强度,而粗大的孔隙始终对压缩强度有害。渗透率和阈值孔径之间的关系大致遵循Katz-Thompson关系。分形维数的增加可以线性地降低抗压强度,但是非线性地提高渗透率。 (C)2019 Elsevier Ltd.保留所有权利。

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