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Influence of Curing Time on the Resilient Modulus of Chemically Stabilized Soils

机译:养护时间对化学稳定土壤弹性模量的影响

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Research was conducted to investigate the influence of soil properties, additive type and curing time on the resilient modulus (M_R) of chemically stabilized soils. Interest in characterizing the rate of M_R improvement through curing time was the primary motivation for this study. Soils stabilized with cement kiln dust and Class C fly ash were collected at five construction sites in Oklahoma. Specimens were prepared at optimum compaction parameters and tested after various curing periods; a total of 58 M_R tests were performed. Properties of both soils and admixtures were evaluated in order to correlate those with the enhanced behavior of the mixed soils measured as improved M_R values. Regression equations were developed so that M_R evolution with time could be quantitatively described. After 28 days of curing, tested soils showed improved M_R values ranging from 7 to 46 times larger than those of untreated soil. Rates of improvement were characterized using a power type regression analysis. Although data are limited, correlations between improvement rate (Rt) and raw soil properties including fines fraction, pH, and to a lesser extent, specific surface area and cation exchange capacity, indicate these factors show promise as predictors of M_R improvement with time.
机译:进行了研究以调查土壤性质,添加剂类型和固化时间对化学稳定土壤的弹性模量(M_R)的影响。表征通过固化时间改善M_R的速率是本研究的主要动机。在俄克拉荷马州的五个建筑工地收集了用水泥窑粉尘和C级粉煤灰稳定的土壤。在最佳压实参数下制备样品,并在各种固化时间后进行测试;总共进行了58次M_R测试。评估了土壤和掺混物的特性,以便将其与作为改良M_R值测得的混合土壤的增强行为相关联。开发了回归方程,以便可以定量描述随时间变化的M_R。养护28天后,测试土壤的M_R值比未处理土壤提高了7到46倍。使用功效类型回归分析来表征改善率。尽管数据有限,但改良率(Rt)与原始土壤特性(包括细度,pH值以及较小程度的比表面积和阳离子交换容量)之间的相关性表明,这些因素显示出随着时间的推移M_R改善的前景。

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