Fly Ash-Lime Lateritic Compressed Stabilized Earth Bricks for Low Cost Housing

D. Yunusa, A. Mohammed, O. B. E. Salau
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Abstract

This study assessed the mechanical and durability properties of compressed stabilized earth bricks (CSEB) made from laterite soil, stabilized with various proportions of fly ash and lime (4% to 12%). Tests conducted on the soil sample and fly ash used for the research proved that the soil is True Laterite (S-S=1.03<1.33) and the fly ash is Class F pozzolana (SiO2 + Al2O3 + Fe2O3 =74.69%>70%). A total of 165 CSEB samples were produced and the research identified various properties as a result of changing the proportion of the stabilizers. The findings of the study revealed that compressive strength values of CSEB 8 (5% fly ash, 5% lime) at the 28th day and CSEB 11 (6% fly ash, 6% lime) at the 14th and 28th days as 1.72 N/mm2, 1.69 N/mm2 and 2.02 N/mm2 respectively met the requirement for construction material in rural houses, bungalow houses and low rise buildings. The mean bulk density values ranged from 1727.35 to 1865.35 kg/m3. for all curing age. From water absorption test results, all values obtained fell below the maximum recommendation except for CSEB 1 (2% fly ash, 2% lime) and CSEB 2 (4% fly ash, 2% lime) as specified by NIS 87 (2004) and NBRRI (2008).
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用于低成本住房的粉煤灰-石灰红土压缩稳定土砖
这项研究评估了红土制成的压缩稳定土砖(CSEB)的机械和耐久性能,红土使用不同比例的粉煤灰和石灰(4% 至 12%)进行稳定。对用于研究的土壤样本和粉煤灰进行的测试证明,土壤为真红土(S-S=1.0370%)。共制作了 165 个 CSEB 样本,研究确定了改变稳定剂比例后的各种特性。研究结果显示,CSEB 8(5% 粉煤灰、5% 石灰)在第 28 天的抗压强度值和 CSEB 11(6% 粉煤灰、6% 石灰)在第 14 天和第 28 天的抗压强度值分别为 1.72 牛顿/平方毫米、1.69 牛顿/平方毫米和 2.02 牛顿/平方毫米,符合农村房屋、平房和低层建筑对建筑材料的要求。所有固化龄期的平均体积密度值范围为 1727.35 至 1865.35 kg/m3。从吸水率测试结果来看,除 CSEB 1(2% 粉煤灰,2% 石灰)和 CSEB 2(4% 粉煤灰,2% 石灰)外,所有吸水率值均低于 NIS 87(2004 年)和 NBRRI(2008 年)规定的最大建议值。
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Fly Ash-Lime Lateritic Compressed Stabilized Earth Bricks for Low Cost Housing Exploring the Potential of Weld Slag as Aggregate Replacement in Concrete for Sustainable Construction: A Review Paper Modelling of Cyclic Shear Modulus and Factor of Safety in Clay Soil Comparison of Effects of Alkaline Activator Molarity and Cure Temperature for Geopolymer Synthesized from Alternative Laterite Sources Network Analysis on Phase 1B Building of the University Health Centre, FUTA, using Critical Path Method (CPM) and Program Evaluation Review Technique (PERT)
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