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Correlating the permeability of mortar under compression with connected porosity and tortuosity

机译:将砂浆在压缩状态下的渗透率与孔隙率和曲率联系起来

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This paper describes the influence of pore structure parameters - connected porosity and tortuosity - on the water permeability coefficient of cement mortar. Plain and fibre-reinforced mortar specimens were prepared to evaluate the permeability and characterise the microstructure. Polypropylene microfibres were incorporated at 0.25% volume fraction in the fibre-reinforced mortar specimens. The permeability of the mortar specimens was determined using an in situ method where hollow cylinders were subjected to uniaxial compressive stress. The specimens were loaded in the range of 0-90% of the ultimate compressive strength in five different stages. X-ray computed microtomography was employed to characterise the pore system of the mortar specimens. By analysing the tomographic images, both connected porosity and tortuosity of the pore network were evaluated. The results showed that the coefficient of water permeability has a correlation with connected porosity across the load levels. While no significant correlation was found with tortuosity alone, the water permeability was found to depend on the ratio between connected porosity and tortuosity as expressed by the Kozeny-Carman formulation.
机译:本文描述了孔隙结构参数(连通孔隙度和曲折度)对水泥砂浆透水系数的影响。准备了平原和纤维增强的砂浆标本,以评估渗透率并表征微观结构。将聚丙烯微纤维以0.25%的体积分数掺入到纤维增强的砂浆样品中。砂浆试样的渗透率使用原位法确定,其中空心圆柱体承受单轴压缩应力。在五个不同阶段中,试样的极限抗压强度为0-90%。使用X射线计算机断层扫描来表征砂浆样本的孔系统。通过分析断层图像,评估了孔隙网络的连通孔隙度和曲折度。结果表明,在不同载荷水平下,水的渗透系数与孔隙率相关。虽然没有发现仅与曲折度有显着相关性,但发现水渗透率取决于由Kozeny-Carman公式表示的连通孔隙度和曲折度之间的比率。

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