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首页> 外文期刊>Arabian journal of geosciences >Experimental study on stabilization of a low plasticity clayey soil with cement/lime
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Experimental study on stabilization of a low plasticity clayey soil with cement/lime

机译:水泥/石灰稳定低塑性黏土的试验研究

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摘要

One of the possible problems that may be encountered by execution of future projects such as highway, mass construction, and also industrial buildings in Farmahin (in the northwestern of Arak, Iran) is low strength and large deformation of the field soil. Such soils can be treated with the general traditional soil stabilization methods such as lime or cement stabilization methods. In the current study, the effects of two types of additive for the soil (i.e., lime/cement) on the geotechnical and engineering properties of the soil are studied. The results of the study indicate that optimum moisture content, maximum dry unit weight, and plasticity index are affected by the addition of cement or lime. Also cement treatment results in increase of unconfined compressive strength (UCS) of the soils significantly, whereas the test results indicate that there is an optimum of lime content so that the addition of a few percentage of lime results in increase of unconfined compressive strength. Generally, improvement in mechanical behaviors of the soil due to cement treatment was noticeably higher than lime treatment. Also the results of tests show that the change of UCS of the specimens with the initial water content and curing time is significant, so that decreasing of initial water content or increasing of curing time results in increase of USC of the specimens. Also, the current study sought to characterize the relationship between secant modulus (E-50) and UCS, curing time, and cement or lime content.
机译:执行未来的项目(例如高速公路,大规模建设以及Farmahin(位于伊朗阿拉克西北部)的工业建筑)可能遇到的问题之一是强度低且田间土壤变形大。可用常规的传统土壤稳定方法(例如石灰或水泥稳定方法)处理此类土壤。在当前的研究中,研究了两种类型的土壤添加剂(即石灰/水泥)对土壤的岩土和工程特性的影响。研究结果表明,水泥或石灰的添加会影响最佳水分含量,最大干重和可塑性指数。水泥处理还显着增加了土壤的无侧限抗压强度(UCS),而测试结果表明,存在最佳的石灰含量,因此添加少量的石灰会导致无限抗压强度的增加。通常,由于水泥处理,土壤机械性能的改善明显高于石灰处理。试验结果还表明,样品的UCS随初始含水量和固化时间的变化是显着的,因此,降低初始含水量或增加固化时间会导致样品的USC升高。另外,当前的研究试图表征割线模量(E-50)与UCS,固化时间以及水泥或石灰含量之间的关系。

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