Undrained Cyclic and Monotonic Strength of Sand-Silt Mixtures

被引:17
作者
Dash H.K. [1 ]
Sitharam T.G. [2 ]
机构
[1] Department of Civil Engineering, College of Engineering and Technology (CET), Biju Patnaik University of Technology (BPUT), Bhubaneswar
[2] Department of Civil Engineering, Indian Institute of Science
关键词
Cyclic strength; Gross void ratio; Interfine void ratio; Limiting silt content; Monotonic peak strength; Sand skeleton void ratio;
D O I
10.1007/s10706-011-9403-3
中图分类号
学科分类号
摘要
In an attempt to correlate the monotonic peak strength and the cyclic strength of sand-silt mixtures over a wide range of parameters and to clarify some of the existing confusing conclusions in the literature regarding the undrained strength response of sand-silt mixtures, a series of stress controlled cyclic and strain controlled monotonic triaxial tests was carried out on sand-silt mixture specimens of 50 mm diameter and 100 mm height with varying silt content. In these experiments, various measures of sample density was adopted through different approaches such as constant gross void ratio approach, constant relative density approach, constant sand skeleton void ratio approach, and constant interfine void ratio approach. Also the effect of relative density and confining pressure on these strengths was studied. It is observed that the limiting fines content and the relative density of a specimen play the key role in deciding the cyclic and monotonic resistance of sand-silt mixtures when studied through any approach. For any silt content with relative density more than 70%, cyclic and monotonic resistances are observed to be independent of silt content. When the undrained cyclic strengths of these specimens are plotted against their respective undrained monotonic peak strengths, it is observed that there exists a definite exponential relationship between the two with an excellent correlation coefficient. An expression is proposed in this regard to help engineers assess the cyclic strength of sand-silt mixtures from monotonic test results. © 2011 Springer Science+Business Media B.V.
引用
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页码:555 / 570
页数:15
相关论文
共 31 条
[1]  
Standard test method for load controlled cyclic triaxial strength of soil, (1996)
[2]  
Amini F., Qi G.Z., Liquefaction testing of stratified silty sands, J Geotech Geoenviron Eng ASCE, 126, 3, pp. 208-217, (2000)
[3]  
Brandon T.L., Rose A.T., Duncan J.M., Drained and undrained strength interpretation of low-plasticity silts, J Geotech Geoenv Eng ASCE, 132, 2, pp. 250-257, (2006)
[4]  
Chang N.Y., Yeh S.T., Kaufman L.P., Liquefaction potential of clean and silty sands, Proceedings of 3rd international conference on Earthquake Microzonation, 2, pp. 1017-1032, (1982)
[5]  
Chien L.K., Oh Y.N., Influence of fines content and initial shear stress on dynamic properties of hydraulic reclaimed soil, Can Geotech J, 39, pp. 242-253, (2002)
[6]  
Dash H.K., Undrained cyclic and monotonic response of sand-silt mixtures, (2008)
[7]  
Dash H.K., Sitharam T.G., Undrained cyclic pore pressure response of sand-silt mixtures: effect of nonplastic fines and other parameters, J Geotech Geolog Eng, 27, 4, (2009)
[8]  
Finn W.D.L., Ledbetter R.H., Wu G., Liquefaction in silty soils: design and analysis, Ground failures under seismic conditions, 44, pp. 51-74, (1994)
[9]  
Haeri S.M., Hamidi A., Steady state and liquefaction characteristics of gravelly sands, J Geotech Geolog Eng, 23, pp. 141-156, (2005)
[10]  
Hazirbaba K., Pore pressure generation characteristics of sands and silty sands: A strain approach, (2005)