›› 2014, Vol. 35 ›› Issue (1): 7-24.

• Fundamental Theroy and Experimental Research • Previous Articles     Next Articles

Progress and trend of experimental investigation on rate-dependent behavior of soft clays

ZHU Qi-yin1,YIN Zhen-yu1,ZHU Jun-gao2,WANG Jian-hua1,XIA Xiao-he1   

  1. 1. Department of Civil Engineering, Shanghai Jiaotong University, Shanghai 200240, China; 2. Geotechnical Research Institute, Hohai University, Nanjing 210098, China
  • Received:2013-01-11 Online:2014-01-10 Published:2014-01-14

Abstract: Extensive laboratory tests and field observations show that soft clay exhibits significant rate-dependent behavior. Based on published data from the view of the rate dependencies of preconsolidation pressure and undrained shear strength. The rate- dependencies of soft clays under both 1D and 3D conditions are first studied. The applicability of five rate-dependency equations (two equations in exponential form and three equations in logarithmic form) in correlating the preconsolidation pressure and the undrained shear strength with strain-rate is then discussed. Rate parameters under both 1D and 3D conditions for various clays are estimated by using five rate-dependency equations and correlated with Atterberg limits. Furthermore, the rate-dependencies of soft clays under complex stress conditions including shear vane tests and pressuremeter tests are also analyzed. Then, the uniqueness of rate-dependency between 1D and 3D, between triaxial compression and extension, between different OCR (over consolidation ration) conditions is discussed. Finally, the influence of applied strain-rate on the stress-dilatancy of Hong Kong marine clay for triaxial compression and tension tests under different OCR conditions is investigated with some typical stress-dilatancy equations. The results show that the existing typical stress-dilatancy relationships need further enhancement (e.g., amount, anisotropy) for better describing the stress-dilatancy of soft clays.

Key words: soft clay, preconsolidation pressure, shear strength, rate-dependency, stress-dilatancy, constant ratio of stain(CRS), Hong Kong marine deposits (HKMD)

CLC Number: 

  • TU 411
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