Effect of particle size and particle size distribution on critical state loci of granular soils

Author:

Manmatharajan Mathan V.1,Gill Sartaj2,Liu Wei2,Ingabire Edouardine-Pascale2,Sy Alex3,Ghafghazi Mason2ORCID

Affiliation:

1. WSP Canada, Inc., Mississauga, Ontario

2. Department of Civil and Mineral Engineering, University of Toronto, Toronto, Canada

3. Klohn Crippen Berger, Vancouver, Canada

Abstract

The critical state soil mechanics captures a wide range of stress–strain behaviour in an understandable context. It provides a conceptual framework for predicting soil behaviour and that is why the critical state is a central part of most advanced constitutive models. This study aims at quantifying the effects of both particle size, and particle size distribution on the critical state loci. Two soils, a natural soil and a tailings, were selected and CSLs were identified for twelve uniform and well graded particle size distributions. Mineralogy and particle shapes were rigorously quantified to ensure other factors are not influencing the results. Particle size has a small influence on the CSL in the sand to gravel range, but silts can have a significantly different CSL. In both natural soil and tailings, particle size distribution appears to have a significant influence on the CSL in e − log p′space and little influence in q − p′ space. Well graded soils have lower CSLs compared to uniform ones, that are generally parallel to the CSLs of their dominant constituent, with the exception of convex distributions where progressively finer particles in larger proportions can form structures noticeably less compressible than any of their constituents.

Publisher

Canadian Science Publishing

Subject

Civil and Structural Engineering,Geotechnical Engineering and Engineering Geology

Reference63 articles.

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