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Relationship between resilient modulus and suction for compacted subgrade soils

机译:夯实路基土的弹性模量与吸力的关系

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The resilient modulus (M-R) of pavement materials is a key parameter required in the mechanistic pavement design methods. Seasonal moisture regime and suction (s) fluctuations exert remarkable influence on the M-R which should be measured or predicted to assist in the analysis of pavement distress and service life. This paper presents extensive experimental investigations to determine the M-R-s relationship for three Canadian subgrade soils (a silty clay from Toronto, a marine clay from Ottawa and a glacial till from Indian Head) using two different experimental methods. Following the first method, glacial till specimens were consolidated to known stress and suction levels using the axis-translation technique before subjecting to cyclic loading tests to determine the M-R. In the second method, equilibrium conditions were achieved with respect to different moisture contents for specimens of the silty clay and marine clay before cyclic loading tests. Suction was measured after the completion of cyclic loading tests using the filter paper method. Experimental results suggest varying degrees of non-linear relationships between the M-R and the suction, gravimetric water content and external stress for different soils. A simple model, which is based on the soil-water characteristic curve and M-R values at saturated and optimum moisture content conditions for prediction, is used to predict the measured M-R-s relationship for the three soils. Same measurements were also predicted using two rigorous models from the literature that were proposed based on different approaches. It is shown that the simple model, compared with other two models, provides equally good predictions but requires remarkably less experimental data. The simple model therefore can be used in practice as a reliable tool for predicting the influence of suction and moisture content on the resilient modulus of subgrade soils. (C) 2016 Elsevier B.V. All rights reserved.
机译:路面材料的弹性模量(M-R)是机械路面设计方法所需的关键参数。季节性的水分状况和吸力波动会对M-R产生显着影响,应对其进行测量或预测,以帮助分析路面状况和使用寿命。本文使用两种不同的实验方法,进行了广泛的实验研究,以确定三种加拿大路基土壤(多伦多的粉质粘土,渥太华的海洋粘土和印第安角的冰川土)的M-R-s关系。按照第一种方法,在进行循环载荷测试以确定M-R之前,使用轴平移技术将冰柱标本固结到已知的应力和吸力水平。在第二种方法中,在循环荷载试验之前,粉质粘土和海生粘土样品的不同水分含量达到了平衡条件。在循环加载试验完成后,使用滤纸法测量吸力。实验结果表明,不同土壤的M-R与吸力,重量水含量和外应力之间存在不同程度的非线性关系。基于土壤-水特征曲线和饱和和最佳水分含量条件下的M-R值进行预测的简单模型可用于预测三种土壤的测得M-R-s关系。使用基于不同方法提出的文献中的两个严格模型也可以预测相同的测量结果。结果表明,与其他两个模型相比,简单模型提供了同样好的预测,但所需的实验数据却少得多。因此,该简单模型可以在实践中用作预测吸力和水分含量对路基土壤弹性模量的可靠工具。 (C)2016 Elsevier B.V.保留所有权利。

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