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Moisture characterization of cementitious material properties: Assessment of water vapor sorption isotherm and permeability variation with ages

机译:胶结材料特性的水分表征:水蒸气吸附等温线和渗透率随年龄的变化评估

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The water vapor adsorption desorption isotherm and the water vapor permeability of cementitious materials were experimentally evaluated in this study according to the evolving nature of the microstructure of this type of material due to their hardening over time (7 days and 28 days). For getting a constant microstructure during measurements, it was necessary to stop hydration. The cement arresting hydration technique was chosen based on a comparative study on various methods known in literature. Results show that the suitable method is immersion under air vacuum in acetone bath for 7 days, followed by drying in an air vacuum for 3 days (without acetone). Using adsorption and desorption isotherms allowed identifying the moisture storage capacity. This parameter varies according to the relative humidity and material age. Moreover, the range where the relative humidity values are important (saturation zone RH > 90%) was investigated by means of retention water measurements using the membrane extraction method. The results obtained show an important gap of water content from 90% of RH to saturation step. Consequently, the water vapor permeability tests highlight the evolution of this coefficient according to material age and its formulation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:由于这种材料随时间(7天和28天)的硬化,根据这种材料的微观结构的演变特性,在本研究中通过实验评估了水蒸气吸附解吸等温线和水泥质材料的水蒸气渗透性。为了在测量过程中获得恒定的微观结构,必须停止水合作用。基于对文献中已知的各种方法的比较研究,选择了水泥止水合技术。结果表明,合适的方法是在空气真空下浸入丙酮浴中7天,然后在空气真空中干燥3天(无丙酮)。使用吸附和解吸等温线可以确定储水量。该参数根据相对湿度和材料寿命而变化。此外,通过使用膜萃取法的保留水测量,研究了相对湿度值重要的范围(饱和区RH> 90%)。所获得的结果表明,从RH的90%到饱和阶段,水分含量存在很大差距。因此,水蒸气渗透性测试强调了该系数根据材料寿命及其配方的演变。 (C)2015 Elsevier Ltd.保留所有权利。

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