Sand–tyre chips mixtures in undrained and drained cyclic triaxial tests

Author:

Banzibaganye Gerard1ORCID,Vrettos Christos2ORCID

Affiliation:

1. Doctoral candidate, Division of Soil Mechanics and Foundation Engineering, Technical University of Kaiserslautern, Kaiserslautern, Germany

2. Professor and Director, Division of Soil Mechanics and Foundation Engineering, Technical University of Kaiserslautern, Kaiserslautern, Germany (corresponding author: )

Abstract

This paper deals with the stress-controlled cyclic triaxial response of saturated sand rubber chips (RC) mixtures at different gravimetric contents. Three types of sand were utilised, namely, uniform medium and coarse sands, as well as a combination of the two at two relative densities. A series of consolidated undrained and drained single-stage cyclic triaxial tests was performed using standard equipment to evaluate the development of the accumulated excess pore-water pressures, permanent axial and volumetric strains. Samples were anisotropically consolidated prior to cyclic loading. The results showed that for all sands adding 10% RC increases the liquefaction potential. Compared to pure sand, increasing the chips content beyond 20–30% generally yields an improvement as long as the sand is not too coarse. Expressions have been derived for the evolution of accumulated pore-water pressure and the relation between excess pore-water pressure from the undrained test and cumulative volumetric strain from drained tests. Although the findings were derived for a single set of loads, they reveal the basic characteristics of the cyclic composite material behaviour.

Publisher

Thomas Telford Ltd.

Subject

Mechanics of Materials,Soil Science,Geotechnical Engineering and Engineering Geology,Building and Construction

Reference37 articles.

1. ASTM (2004) D 5311-92: Standard test method for load controlled cyclic triaxial strength of soil. ASTM International, West Conshohocken, PA, USA.

2. Dynamic Properties of Saturated Sands Mixed with Tyre Powders and Tyre Shreds

3. Effect of tyre chips on dynamic properties of saturated sands

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