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Mechanical behaviour of lateritic soil stabilized with bone ash and hydrated lime for sustainable building applications

机译:骨灰和水合石灰稳定的后廓土壤的力学行为,可持续建筑应用

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This research is aimed at achieving effective utilization of lateritic soil as a sustainable building material by improving its strength using lime and bone ash. Different percentages of hydrated lime (3%, 9% and 15%) and bone ash (5%, 10%, 15% and 20%) were used. Room-drying, sun-drying and oven-drying methods of curing were explored to cure the lateritic brick samples. The bricks were crushed using the universal testing machine to obtain the compressive strengths. Samples cured using the room-drying method gave the highest compressive strength. The optimum composition of 9% hydrated lime and 5% bone ash respectively increased the compressive strength of soil significantly, after 28 days. The microstructural analysis gave a morphology with reduced porosity for the stabilized soil samples. Bone ash can be used in place of lime for stabilization of lateritic soil for making of bricks.
机译:该研究旨在通过利用石灰和骨灰改善其力量来实现Xkingitic土壤作为可持续建筑材料的有效利用。使用不同百分比的水合石灰(3%,9%和15%)和骨灰(5%,10%,15%和20%)。探索了房间干燥,阳光干燥和烘箱干燥方法,以固化外形砖样品。使用通用试验机压碎砖块以获得压缩强度。使用房间干燥方法固化的样品给出了最高的抗压强度。在28天后,9%水合石灰和5%骨灰的最佳组成分别显着增加了土壤的抗压强度。微观结构分析对稳定的土壤样品的孔隙率降低了。骨灰可以用来代替石灰,以稳定横向土壤制作砖块。

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