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首页> 外文期刊>Cement and Concrete Research >Isothermal moisture properties of Clayey Cellular Concretes elaborated from clayey waste, cement and aluminium powder
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Isothermal moisture properties of Clayey Cellular Concretes elaborated from clayey waste, cement and aluminium powder

机译:由黏土废料,水泥和铝粉制成的黏土蜂窝混凝土的等温水分特性

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This paper describes a study undertaken to examine the moisture behaviour, in either the vapour or liquid phase of a series of six Clayey Cellular Concrete (CCC) mixes featuring different porosities. These mixes have been obtained by expanding a clay-cement paste through adding a small quantity of aluminium powder during mixing. The material porosity analysis performed using mercury intrusion porosimetry shows that two classes of porosity in the materials derived may be distinguished: microporosity within the clay-cement matrix and macroporosity in the form of gaseous cells dispersed within the matrix, resulting from the chemical reaction between aluminium powder and lime freed at the time of cement hydration. Macroporosity would thus constitute the parameter that differentiates all CCC mixes. Another purpose of the present work is to display how the moisture properties of homogeneous porous materials are expected to change as the macroporosity rate changes. On the basis of experimental results, it will be demonstrated that macroporous cells serve to diminish both the adsoiption capacity and sorptivity of CCC; however hydraulic diffusivity in the capillary process increases as a function of macroporosity.
机译:本文介绍了一项研究,以研究一系列具有不同孔隙率的六种粘土蜂窝混凝土(CCC)混合物在蒸汽或液相中的湿气行为。这些混合物是通过在混合过程中加入少量铝粉使粘土-水泥浆膨胀而获得的。使用压汞法进行的材料孔隙度分析表明,可以区分衍生材料中的两类孔隙度:粘土-水泥基质中的微孔性和分散在基质中的气孔形式的大孔,这是铝之间的化学反应导致的水泥水化时释放出的粉末和石灰。大孔隙率将因此成为区分所有CCC混合物的参数。本工作的另一个目的是显示均匀多孔材料的水分特性如何随着大孔隙率的变化而变化。根据实验结果,将证明大孔细胞可同时降低CCC的吸附能力和吸附能力。但是,毛细作用过程中的水力扩散率随大孔隙率的增加而增加。

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