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Physical, mechanical and hygrothermal properties of lateritic building stones (LBS) from Burkina Faso

机译:布基纳法索的红土建筑石(LBS)的物理,机械和湿热特性

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摘要

Earth is a predominant eco-friendly construction material which provides a good occupational comfort consuming less energy. To improve the durability performance, stabilization is commonly adopted. However the additional costs induced by such process cannot be afforded by the majority of the population in developing countries, and in some circumstances, the environmental side effect may be controversial. Alternatively, laterite stone which is natural available and readily stabilized material that can be used for building construction is studied in this paper. Lateritic building stones (LBS) from Burkina Faso are studied for their hygroscopic, physical and mechanical characteristics by conducting experimental investigation such as moisture sorption and desorption, moisture buffering, three-point bending, and cyclic unconfined compression test. The analysis is focused on the moisture ingress of the material and its impact on the mechanical strength and also an insight on understanding linear elastic behaviour of LBS is carried out. The experimental results are compared with the stabilized and un-stabilized earthen construction materials. This comparison underlines the good performances of LBS, in both mechanical and hygrothermal properties as a building material. (C) 2016 Elsevier Ltd. All rights reserved.
机译:地球是一种主要的生态友好型建筑材料,可提供良好的职业舒适感,且耗能更少。为了提高耐久性能,通常采用稳定化。但是,发展中国家的大多数人口无法负担由该过程引起的额外费用,并且在某些情况下,环境副作用可能会引起争议。另外,本文研究了天然存在的红土石,该材料易于稳定,可用于建筑施工。通过对布基纳法索的红土建筑石(LBS)的吸湿,物理和机械特性进行了研究,例如吸湿和脱湿,湿气缓冲,三点弯曲和循环无侧限压缩试验。该分析着重于材料的水分进入及其对机械强度的影响,并且对理解LBS的线性弹性行为进行了深入研究。将实验结果与稳定和不稳定的土木建筑材料进行了比较。这种比较强调了LBS作为建筑材料在机械和湿热性能方面的良好性能。 (C)2016 Elsevier Ltd.保留所有权利。

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