Mechanical and thermophysical characterization of local clay-based building materials

Abdallah Dadi Mahamat, Abakar Ali, J. Tanguier, A. Donnot, R. Benelmir
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Abstract

The work we present is a comparative study based on an experimental approach to the mechanical and thermal properties of different local clay-based building materials with the incorporation of agricultural waste in Chad. These local building materials have been used since ancient times by the low-income population. They were the subject of a detailed characterization of their mechanical and thermal parameters. The objective is to obtain lightweight materials with good thermomechanical performance and which can contribute to improving thermal comfort, energy-saving, and security in social housing in Chad while reducing the cost of investment. Several clay-based samples with increasing incorporation of 0 to 8% of agricultural waste (cow dung or millet pod) were made. We used appropriate experimental methods for porous materials (the hydraulic press for mechanical tests and the box method for thermal tests). In this article, we have highlighted the values and variations of the mechanical compressive resistances, thermal conductivities, and thermal resistances of test pieces made with these materials. Knowing the mechanical and thermal characteristics, we also carried out a thermomechanical study. The thermal data made it possible to make Dynamic Thermal Simulations (STD) of the buildings thanks to the Pléiades + COMFIE software. The results obtained show that the use of these materials in a building presents good mechanical and thermal performance with low consumption of electrical energy for better thermal comfort of the occupants. Thus agricultural waste can be recovered thanks to its integration into building materials based on clay.
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本地粘土基建筑材料的机械和热物理特性
我们提出的工作是一项基于实验方法的比较研究,以乍得不同的当地粘土基建筑材料的机械和热性能为基础,并结合农业废物。这些当地的建筑材料自古以来就被低收入人群使用。他们是详细表征其机械和热参数的主题。目标是获得具有良好热机械性能的轻质材料,有助于改善乍得社会住房的热舒适性、节能性和安全性,同时降低投资成本。制作了几种以粘土为基础的样品,其中农业废物(牛粪或谷子荚)的掺入量增加了0 - 8%。对多孔材料采用适当的实验方法(力学试验用液压机,热试验用箱法)。在本文中,我们强调了用这些材料制成的试件的机械抗压性、导热性和热阻的值和变化。了解了其力学和热特性后,我们还进行了热力学研究。热数据使得利用pl + COMFIE软件对建筑进行动态热模拟(STD)成为可能。结果表明,在建筑中使用这些材料具有良好的机械性能和热工性能,并且能耗低,可以提高居住者的热舒适性。因此,由于将农业废弃物整合到以粘土为基础的建筑材料中,农业废弃物可以得到回收。
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