The Effectiveness of Cement and Lime as Stabilizers for Subgrade Soils with High Plasticity and Swelling Potential

U. N. Okonkwo, C. Kennedy
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引用次数: 1

Abstract

This study investigated the effects of cement and lime on the mechanical properties of subgrade soils, which are challenging to stabilize due to high plasticity and swelling potential. The study found that both cement and lime are effective stabilizing agents that increase the OMC, with cement being more effective in reducing the OMC of black cotton soil. The engineering properties of stabilized Chokocho subgrade soil were also evaluated, and the use of cement and lime as stabilizers was found to be effective in improving soil characteristics for subgrade applications. This was indicated by increased maximum dry density values, reduced plasticity index values, and increased California bearing ratio and unconfined compressive strength values. The chemical composition test demonstrated that calcium plays a significant role in soil stabilization, while aluminum can potentially affect soil stability negatively. Other elements such as magnesium, iron, silicon, zinc, and nickel contribute positively to soil stability. The low amounts of lead, copper, manganese, potassium, sulfur, and titanium present in the soil indicate a minor contribution to soil stabilization, but their impact on soil properties and plant growth cannot be ignored. Overall, the study highlights the importance of considering specific soil types and conditions when undertaking soil stabilization projects. The findings provide valuable information for future research in this field, particularly in investigating the effectiveness of other stabilizers and their interactions with specific soil types. The use of cement and lime in soil stabilization is an effective method for enhancing the strength and durability of weak soils, as shown by the reduction in plastic limit values observed in the stabilized soil samples. The appropriate content of cement and lime to use in soil stabilization could inform standards and codes for soil stabilization.
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水泥和石灰作为高塑性、高膨胀势路基土稳定剂的效果
研究了水泥和石灰对路基土力学性能的影响。路基土具有较高的塑性和膨胀潜力,难以稳定。研究发现,水泥和石灰都是增加黑棉土OMC的有效稳定剂,其中水泥降低黑棉土OMC的效果更好。对稳定的Chokocho路基土的工程特性进行了评价,发现水泥和石灰作为稳定剂在改善路基土特性方面是有效的。这表现为最大干密度值增加,塑性指数值降低,加州承载比和无侧限抗压强度值增加。化学成分测试表明,钙对土壤稳定有显著作用,而铝对土壤稳定有潜在的负向影响。其他元素如镁、铁、硅、锌和镍对土壤稳定性有积极作用。土壤中微量的铅、铜、锰、钾、硫和钛对土壤稳定的贡献较小,但它们对土壤性质和植物生长的影响不容忽视。总的来说,该研究强调了在进行土壤稳定项目时考虑特定土壤类型和条件的重要性。这些发现为该领域的未来研究提供了有价值的信息,特别是在研究其他稳定剂的有效性及其与特定土壤类型的相互作用方面。在稳定土中使用水泥和石灰是提高软弱土强度和耐久性的有效方法,稳定土样品的塑性极限值降低表明了这一点。土壤稳定中水泥和石灰的适当含量可以为土壤稳定的标准和规范提供依据。
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