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Modification in Cay Concrete Properties During Fluid Flow Permeability Measurement

机译:流体流动渗透率测量过程中的Cay混凝土特性改造

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In this paper, two methods consisting of triaxial water permeability and water penetration were used to evaluate the changes occurring in the pores of clay concretes during the tests. Triaxial permeability is generally used for concrete with higher permeability while concretes with very low permeability are suited for the penetration method. Clay concrete specimens of 0 to 40% clay content were used in the study. The concrete mixes had water-to-cement ratios (w/c) of 0.70, 0.75, 0.80, 0.85, and the cementitious content 380 and 450 kg/m3. Results show that concrete gains moisture during wetting at a much faster rate than loses it during subsequent drying. This could be explained by the contribution of suction pressure created upon drying. When water penetration pressure is applied, more water is driven into pore space that could be responsible for changihgr the network of the voids. Pore structure during drying may certainly be different in size and shape than its form during wetting, leading to a consequent effect on the permeability of the clay concretes. The modification could be one reason why the moisture gain percentage in clay concretes was higher than in normal concretes.
机译:在本文中,使用三轴水渗透性和水渗透的两种方法来评估在试验期间粘土孔中发生的变化。三轴渗透性通常用于具有较高渗透性的混凝土,而具有非常低的渗透性的混凝土适用于渗透方法。研究中使用0至40%粘土含量的粘土混凝土标本。混凝土混合物具有0.70,0.75,0.80,0.85和水泥含量380和450kg / m3的水 - 水泥比(w / c)。结果表明,在随后的干燥过程中,混凝土在润湿期间润湿时的水分比失去速度。这可以通过在干燥时产生的吸入压力的贡献来解释。当施加水穿透压力时,孔隙空间被驱动更多的水,这可能负责长度的空隙网络。干燥过程中的孔结构可能肯定是不同的尺寸和形状,而不是其在润湿期间的形状,导致粘土混凝土的渗透性影响。修改可能是为什么粘土混凝土中的水分增益百分比高于正常混凝土的一个原因。

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