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Mechanism of improvement in the strength and volume change behavior of lime stabilized soil

机译:石灰稳定土强度和体积变化行为改善的机理

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摘要

An attempt has been made to bring out the influence on strength and volume change behavior of fabric changes and new cementitious compound formation in a soil upon addition of various lime contents and with curing periods. The effects of changes in fabric of treatment with various lime contents (0, 2,4 and 6%) and with curing periods (0, 7, 14 and 28 days) have been evaluated by one-dimensional consolidation tests, in terms of void ratio changes and compressibility. The strength of soil treated with different lime contents with curing periods up to 28 days, and with the optimum lime content of 6% up to one year has been determined by unconfined compression tests. Comparison of effects of lime on the strength and volume change behavior of the soil brings out that the formation of flocculated fabric and cation exchange significantly reduces the compressibility of soil but marginally increases the strength. Cementation of soil particles and filling with cementitious compounds of the voids of flocculated fabric in the soil marginally reduces the compressibility but significantly increases the strength. Thus, the mechanism of volume change behavior of soil treated with lower lime content at short curing periods is distinctly different from that of the soil treated with optimum lime content at longer curing periods. This is consistent with the increase in the permeability caused by the addition from 2 to 4% lime and the decrease following the addition of 6% lime. Changes consistent with mechanical behavior have been determined by scanning electron microscope, X-ray diffraction and thermal analyses, energy dispersive X-ray spectrometer and pH value in microstructure, mineralogy, chemical composition and alkalinity, respectively. (C) 2015 Published by Elsevier B.V.
机译:尝试通过添加各种石灰含量和固化时间,对织物变化的强度和体积变化行为以及在土壤中形成新的胶结化合物产生影响。通过一维固结测试,评估了不同石灰含量(0、2、4和6%)和固化时间(0、7、14和28天)的处理织物变化的影响,以空隙率表示比率变化和可压缩性。通过无边压缩试验确定了不同石灰含量,固化时间长达28天,最佳石灰含量为6%,长达一年的土壤强度。比较石灰对土壤强度和体积变化行为的影响,结果表明,絮凝织物的形成和阳离子交换显着降低了土壤的可压缩性,但略有增加了强度。土壤颗粒的胶结和在土壤中充填絮凝织物空隙的胶结化合物会稍微降低可压缩性,但会显着提高强度。因此,在较短的固化时间内用较低石灰含量处理的土壤的体积变化行为机理与在较长的固化期间用最佳石灰含量处理的土壤的体积变化行为明显不同。这与由于添加2%至4%的石灰而导致的渗透性增加以及添加6%的石灰后导致的渗透性降低相一致。分别通过扫描电子显微镜,X射线衍射和热分析,能量色散X射线光谱仪以及组织中的pH值,矿物学,化学成分和碱度确定了与机械行为一致的变化。 (C)2015由Elsevier B.V.发布

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