Thermal and Mechanical Characterization of Compressed Clay Bricks Reinforced by Rice Husks for Optimizing Building in Sahelian Zone

  Modjonda,   Souaibou, Yanné Etienne, Danwe Raidandi
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Abstract

This article deals with the characterization of local materials used in insulation building heat. These materials are bricks of earth compressed and stabilized with rice husks. Thermal conductivity, the specific heat and the thermal diffusivity of materials based on clay incorporating rate of 0, 2%, 4%, 6%, 8% and 10% are determined. The results showed that the clay blocks + rice balls had better thermal insulators than simple clay blocks. However, these composite materials used for the envelope of the building must have sufficient mechanical resistance when used in construction. The measurement of mechanical properties such as compressive strength showed an improvement of 6% and beyond, a drop in resistance when increasing rice husks in clay is observed. These results allow to specify the optimal conditions of use of these materials for the building envelope.
用于萨赫勒地区建筑优化的稻壳增强压缩粘土砖热力学特性研究
本文讨论了用于建筑隔热的本地材料的特性。这些材料是用稻壳压缩和稳定的土砖。测定了粘土掺入率为0、2%、4%、6%、8%和10%的材料的导热系数、比热和热扩散系数。结果表明,粘土块+饭团的保温效果优于单纯粘土块。然而,这些用于建筑围护结构的复合材料在施工时必须具有足够的机械阻力。抗压强度等力学性能的测定结果表明,在粘土中加入稻壳后,稻壳的抗压强度提高了6%以上,稻壳的抗压强度下降。这些结果允许指定这些材料用于建筑围护结构的最佳使用条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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