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Microstructure And Physical Properties Of Lime-clayey Adobe Bricks

机译:石灰黏土Adobe砖的微观结构和物理性能

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Microstructural changes of adobe bricks made of lime-clayey raw material mixes were investigated by X-ray diffraction, infrared spec-trometry, differential thermal analyses, scanning electron microscopy and energy dispersive spectrometry. The impact of these changes on the mechanical resistance and water absorption of adobe bricks was evaluated. It is found that lime additions resulted in the development of calcite and poorly crystallized calcium silicate hydrate (CSH). The latter compound is mainly originated from the reaction between fine filiform quartz and lime. The contribution of the pozzolanic reaction, involving kaolinite (the unique clayey constituent of the raw material), to CSH formation seems to be insignificant. The development of CSH together with the formation of minor amounts of calcite, in <10 wt.% lime samples, improved the mechanical strength and the compactness of adobe bricks. However, the quasi-absence of CSH and the excessive contents of portlandite (Ca(OH)_2) and calcite, observed for >10 wt.% lime, had a slight detrimental effect on the measured physical properties. In all cases, lime amended adobe bricks are suitable for rural building construction in tropical countries.
机译:通过X射线衍射,红外光谱,差示热分析,扫描电子显微镜和能谱分析研究了由石灰-粘土原料混合物制成的土坯砖的微观结构变化。评估了这些变化对土坯砖的机械阻力和吸水率的影响。发现添加石灰导致方解石的形成和结晶性差的硅酸钙水合物(CSH)。后一种化合物主要来源于细丝状石英和石灰之间的反应。涉及高岭石(原料的独特粘土成分)的火山灰反应对CSH的形成作用似乎微不足道。在<10 wt。%的石灰样品中,CSH的发展以及少量方解石的形成提高了土坯砖的机械强度和致密性。但是,对于> 10 wt。%的石灰,几乎不存在CSH以及过量的钙钛矿(Ca(OH)_2)和方解石含量,对测量的物理性能有轻微的不利影响。在所有情况下,石灰改良的土坯砖都适用于热带国家的农村建筑。

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