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Behaviour and mineralogy changes in lime-treated expansive soil at 50 ℃

机译:石灰处理50℃膨胀土的行为和矿物学变化

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This paper presents a series of laboratory tests performed on the lime treatment of a highly expansive and extremely plastic clay soil and evaluates the effect of a high curing temperature of 50 ℃ on pozzolanic reaction progression, and consequently on soil behaviour. In the present study, a similar experimental protocol to that presented in Al-Mukhtar et al. [Al-Mukhtar M., Lasledj A., Alcover J-F. (2010). Behaviour and mineralogy changes in lime-treated expansive soil at 20 ℃. Appl. Clay Sri.] concerning the behaviour of treated soil cured at room temperature was applied. The results indicate that a higher temperature accelerates the pozzolanic reaction, resulting in rapid soil strength development There were significant increases in lime consumption during the first days at a curing temperature of 50 ℃; all lime added up to 20% was quasi consumed during the first month. Consequently, the pH reduces slowly in the first day and then diminishes as lime content increases. The electrical conductivity of the lime-soil mixture decreased slowly in the first day, rapidly during the first week and practically stabilised after. The wave velocity of the treated soil increased with increasing amounts of lime and rapidly reached an asymptotic value within 7 days. However, the unconfined compressive strength of treated soil significantly increased during the first days and continued to increase at later stages with higher amounts of lime. In the treated Impersol with ≥6% lime, CAH was identified after 1 day and CSH after 7 days by X-ray diffraction. These new hydrates produced by the pozzolanic reaction continue to increase with curing time and lime added.
机译:本文介绍了一系列对高膨胀性和高塑性粘土石灰进行石灰处理的实验室测试,并评估了50℃的高固化温度对火山灰反应进程以及由此对土壤行为的影响。在本研究中,与Al-Mukhtar等人提出的实验方案相似。 [Al-Mukhtar M.,Lasledj A.,Alcover J-F。 (2010)。石灰处理的膨胀土在20℃下的行为和矿物学变化。应用使用关于在室温下固化的处理过的土壤的性能的“粘土”。结果表明,较高的温度会加速火山灰反应,导致土壤强度快速发展。在固化温度为50℃的第一天,石灰的消耗量显着增加。在第一个月内,所有消耗量达20%的石灰都被准消耗掉了。因此,pH在第一天就缓慢降低,然后随着石灰含量的增加而降低。石灰-土壤混合物的电导率在第一天缓慢下降,在第一周迅速下降,之后基本稳定。处理过的土壤的波速随石灰的增加而增加,并在7天内迅速达到渐近值。但是,处理后的土壤的无限制抗压强度在开始的几天中显着增加,并在后期随着石灰的增加而继续增加。在用≥6%石灰处理的Impersol中,通过X射线衍射在1天后鉴定出CAH,在7天后鉴定出CSH。火山灰反应产生的这些新的水合物随着固化时间和石灰的添加而持续增加。

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