Time-dependent behaviour of sand with different fine contents under oedometric loading

Author:

Levin Friedrich11,Vogt Stefan11,Cudmani Roberto11

Affiliation:

1. Department of Civil, Geo and Environmental Engineering, Technical University of Munich, Baumbachstraße 7, 81245 Munich, Germany.

Abstract

To characterize the effects of creep, strain rate, and relaxation in granular soils, different sands have been studied under oedometric loading. The tests were analysed in the framework of the isotache concept. The results show increasing creep rates with increasing vertical stresses and a strong reduction of the creep rate upon unloading. A lower void ratio leads to less creep. Evaluation of the ratio Cα/Cc, where Cα is the creep coefficient and Cc is the compression index, demonstrates considerable deviation from a constant soil-specific value for the sands. With increasing fine content, however, a constant soil-specific ratio has been found for a silty sand. In strain rate–controlled tests, a sand with low and a sand with significant content of nonplastic fines were compared. Constant rate of strain tests displayed practically no strain rate dependency for the sand with little fines and a well visible strain rate dependency for the very silty sand. Tests with stepwise change of strain rate showed non-isotache behaviour for the sand with little fines and isotache behaviour for the other. Stress-relaxation tests displayed an isochronous behaviour. The analysis of the three viscous effects in sands showed they cannot altogether be mathematically described in the framework of the isotache concept. A new compression model for the creep behaviour of sands is presented.

Publisher

Canadian Science Publishing

Subject

Civil and Structural Engineering,Geotechnical Engineering and Engineering Geology

Reference48 articles.

1. Bauer, E. 1992. Zum mechanischen Verhalten granularer Stoffe unter vorwiegend oedometrischer Beanspruchung. Ph.D. thesis, Department of Civil Engineering, Geo and Environmental Sciences, Karlsruhe Institute of Technology.

2. Calibration of a Comprehensive Hypoplastic Model for Granular Materials

3. Creep, Ageing and Microstructural Change in Dense Granular Materials

4. Colliat-Dangus, J.L., Desrues, J., and Foray, P. 1988. Triaxial testing of granular soil under elevated cell pressure. In Advanced triaxial testing of soil and rock, ASTM STP 977, Edited by R.T. Donaghe, R.C. Chaney, and M.L. Silvers. American Society for Testing and Materials, Philadelphia. pp. 290–310.

5. Time-Dependent Shear Deformation Characteristics of Sand and their Constitutive Modelling

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