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Optimum fly ash for mechanical stabilization of expansive soils using 22 factorial experimental design

机译:使用2 2 析因实验设计的最佳粉煤灰用于膨胀土的机械稳定

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Numerous studies demonstrated the possibility of utilizing fly ash in the construction of embankments, road subgrades and stabilization of a wide range of soils. The present investigation aims at determining the optimum fly ash (OFA) for mechanical stabilization of expansive soils. Four different soils were tested for compaction characteristics and unconfined compressive strength with and without the addition of fly ash to determine the OFA. The liquid limit (LL) and the fraction coarser than 425 μ (CF) of these soils range from 50 to 120 and 25 to 70%, respectively. An experimental strategy called two-factor factorial design was adopted in the conducting experiments. LL and CF present in the soil are the two factors considered to influence the OFA content. Factorial experimentation enables relative quantification of the effect of each factor as well as their interaction with the OFA. The OFA was found to range from 5 to 40% depending upon the two factors. The LL and the CF were found to have dominating influence on OFA content in that order, whereas the interaction effect of these two factors was marginal to fair. A statistical regression model was developed for determination of the OFA in terms of the influencing factors. The validity of the model developed was verified by conducting laboratory tests on two more soils that were not used in the development of the model. Swell potential and swelling pressure of expansive soils were reduced to non-critical levels when treated with OFA.
机译:大量研究表明,在路堤的建设,路基和各种土壤的稳定化中都可能利用粉煤灰。本研究旨在确定膨胀土机械稳定的最佳粉煤灰(OFA)。在添加和不添加粉煤灰的情况下,对四种不同的土壤进行了压实特性和无侧限抗压强度测试,以确定OFA。这些土壤的液体极限(LL)和大于425μ(CF)的分数分别为50%至120%和25%至70%。在进行实验时,采用了一种称为二因素析因设计的实验策略。土壤中存在的LL和CF是影响OFA含量的两个因素。阶乘实验可以对每个因素的作用及其与OFA的相互作用进行相对定量。根据两个因素,发现OFA的范围为5%至40%。发现LL和CF对该顺序中的OFA含量具有主要影响,而这两个因素的相互作用影响很小。开发了统计回归模型以根据影响因素确定OFA。通过对另外两个在模型开发中未使用的土壤进行实验室测试,验证了所开发模型的有效性。用OFA处理后,膨胀土的膨胀势和膨胀压力降低到非临界水平。

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