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Effect of Lime, Cement, and Lime-Cement Stabilisation on Low to Medium Plasticity Clayey Soil

机译:石灰,水泥和石灰水泥稳定对中低塑性黏土的影响

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The volumetric changes of clayey subgrade soils can be very significant due to their sensitivity to moisture variation and for some, strength is also affected. The latter may cause instability of the pavement and early deterioration or failure. Chemical stabilisation of such soils with lime or cement has proven to be more economically and environmentally sustainable than other methods. They are cheaper than removal and replacement in addition to avoiding dumping useful natural resources in landfills. Combined two-stage lime and cement (lime-cement) stabilisation of clayey soils, with all plasticity levels, have been used successfully for many years, however, there are no existing guidelines or specifications for the optimum design mixtures and construction process. To address this, a comprehensive laboratory testing program has been developed to establish the optimum lime-cement combinations for different soils. Reported herein are the experimental program and testing results for a medium plasticity clayey soil stabilised with lime, cement and lime-cement. For the soil tested herein, the results have shown that lime stabilisation using minimum lime demand helps to increase compressive strength, bearing capacity and hydraulic conductivity of the soil, while decreasing its plasticity. Additionally, it has been found that low cement contents produce enough strength for the subgrade soil. Further, modifying soil’s workability with lime before stabilising it with cement has proved very effective in producing favourable improvements in physical and mechanical properties of the testing soil.
机译:黏土路基土壤的体积变化可能非常重要,这是因为它们对水分变化敏感,而且强度也会受到影响。后者可能导致人行道不稳和过早恶化或损坏。事实证明,用石灰或水泥对此类土壤进行化学稳定处理比其他方法在经济和环境方面更具可持续性。除了避免将有用的自然资源倾倒在垃圾填埋场之外,它们比拆除和替换便宜。具有所有可塑性水平的两阶段石灰和水泥(石灰-水泥)联合稳定化技术已经成功使用了很多年,但是,目前尚无关于最佳设计混合物和施工过程的指南或规格。为了解决这个问题,已经制定了一项全面的实验室测试计划,以针对不同土壤建立最佳的石灰-水泥组合。本文报道的是用石灰,水泥和石灰水泥稳定的中等可塑性黏性土壤的实验程序和测试结果。对于本文中测试的土壤,结果表明使用最少的石灰需求稳定石灰有助于增加土壤的抗压强度,承载力和水力传导率,同时降低其可塑性。另外,已经发现低水泥含量为路基土壤产生足够的强度。此外,事实证明,在用水泥稳定之前,先用石灰改变土壤的可加工性,对改善试验土壤的物理和机械性能产生了非常有效的改善。

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