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Thermal, hydric and mechanical behaviours of adobes stabilized with cement

机译:水泥稳定的adobes的热,水和力学行为

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The main objectives of this work were to manufacture adobes with good mechanical properties, even in a wet environment, and low thermal conductivity so as to give the population homes that provided better thermal comfort than cement-based constructions. For this purpose, clayey raw material from Burkina Faso, mainly composed of quartz (49 wt%), kaolinite (28 wt%), goethite (7 wt%) and muscovite (9 wt%) was mixed with up to 12 wt% of cement to manufacture adobes. Various characterization techniques were implemented to assess the microstructure of these materials: X-ray diffraction, infrared spectrometry, differential scanning calorimetry, scanning electron microscopy and energy dispersive spectrometry. Their physical properties were also investigated (through water absorption, spray test, apparent density, porosity and thermal conductivity) as their mechanical characteristics (compressive and flexural strengths). It was found that the addition of cement resulted in the formation of calcium silicate hydrate (CSH) (I), ettringite and calcite. The CSH was formed partly through the hydration of anhydrous cement compounds (alite and belite) and also through pozzolanic reactions strongly involving finely crushed quartz and, to a lesser extent, kaolinite. These cement-stabilized adobes were particularly distinguished by good mechanical resistance even in a wet environment, and low thermal conductivity. These results indicate that adobes stabilized with 2 wt% of cement are suitable for use as building materials for mass housing. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项工作的主要目的是制造即使在潮湿环境中也具有良好机械性能且热导率低的adobe,以便为居民住房提供比水泥建筑更好的热舒适性。为此,将主要由石英(49重量%),高岭石(28重量%),针铁矿(7重量%)和白云母(9重量%)组成的布基纳法索的黏土原料与最多12重量%的水泥生产阿多贝斯。实施了各种表征技术来评估这些材料的微观结构:X射线衍射,红外光谱,差示扫描量热法,扫描电子显微镜和能量色散光谱法。还研究了它们的物理性能(通过吸水,喷雾试验,表观密度,孔隙率和导热系数)作为其机械特性(抗压强度和抗弯强度)。发现添加水泥导致形成水合硅酸钙(CSH)(I),钙矾石和方解石。 CSH的形成部分是通过无水水泥化合物(水铝石和贝利特石)的水合,还通过火山灰反应(强烈地涉及细碎的石英,以及程度较低的高岭石)而形成的。这些水泥稳定的adobes的特别之处在于,即使在潮湿环境中也具有良好的机械抵抗力,并且导热系数低。这些结果表明,用2 wt%的水泥稳定的adobe适合用作大规模住房的建筑材料。 (C)2017 Elsevier Ltd.保留所有权利。

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