Triaxial shear behavior of a cement-treated sand–gravel mixture
A number of parameters, e.g. cement content, cement type, relative density, and grain size distribution, can influence the mechanical behaviors of cemented soils. In the present study, a series of conventional triaxial compression tests were conducted on a cemented poorly graded sand–gravel mixture...
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doaj-29b344cae89b485d8d2adf17a463de3d2020-11-24T22:35:24ZengElsevierJournal of Rock Mechanics and Geotechnical Engineering1674-77552014-10-016545546510.1016/j.jrmge.2014.07.006Triaxial shear behavior of a cement-treated sand–gravel mixtureYounes AminiAmir HamidiA number of parameters, e.g. cement content, cement type, relative density, and grain size distribution, can influence the mechanical behaviors of cemented soils. In the present study, a series of conventional triaxial compression tests were conducted on a cemented poorly graded sand–gravel mixture containing 30% gravel and 70% sand in both consolidated drained and undrained conditions. Portland cement used as the cementing agent was added to the soil at 0%, 1%, 2%, and 3% (dry weight) of sand–gravel mixture. Samples were prepared at 70% relative density and tested at confining pressures of 50 kPa, 100 kPa, and 150 kPa. Comparison of the results with other studies on well graded gravely sands indicated more dilation or negative pore pressure in poorly graded samples. Undrained failure envelopes determined using zero Skempton's pore pressure coefficient (A¯=0) criterion were consistent with the drained ones. Energy absorption potential was higher in drained condition than undrained condition, suggesting that more energy was required to induce deformation in cemented soil under drained state. Energy absorption increased with increase in cement content under both drained and undrained conditions.http://www.sciencedirect.com/science/article/pii/S1674775514000729CementationPoorly graded soilSand–gravel mixtureDilationAbsorbed energyFailure criterion |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Younes Amini Amir Hamidi |
spellingShingle |
Younes Amini Amir Hamidi Triaxial shear behavior of a cement-treated sand–gravel mixture Journal of Rock Mechanics and Geotechnical Engineering Cementation Poorly graded soil Sand–gravel mixture Dilation Absorbed energy Failure criterion |
author_facet |
Younes Amini Amir Hamidi |
author_sort |
Younes Amini |
title |
Triaxial shear behavior of a cement-treated sand–gravel mixture |
title_short |
Triaxial shear behavior of a cement-treated sand–gravel mixture |
title_full |
Triaxial shear behavior of a cement-treated sand–gravel mixture |
title_fullStr |
Triaxial shear behavior of a cement-treated sand–gravel mixture |
title_full_unstemmed |
Triaxial shear behavior of a cement-treated sand–gravel mixture |
title_sort |
triaxial shear behavior of a cement-treated sand–gravel mixture |
publisher |
Elsevier |
series |
Journal of Rock Mechanics and Geotechnical Engineering |
issn |
1674-7755 |
publishDate |
2014-10-01 |
description |
A number of parameters, e.g. cement content, cement type, relative density, and grain size distribution, can influence the mechanical behaviors of cemented soils. In the present study, a series of conventional triaxial compression tests were conducted on a cemented poorly graded sand–gravel mixture containing 30% gravel and 70% sand in both consolidated drained and undrained conditions. Portland cement used as the cementing agent was added to the soil at 0%, 1%, 2%, and 3% (dry weight) of sand–gravel mixture. Samples were prepared at 70% relative density and tested at confining pressures of 50 kPa, 100 kPa, and 150 kPa. Comparison of the results with other studies on well graded gravely sands indicated more dilation or negative pore pressure in poorly graded samples. Undrained failure envelopes determined using zero Skempton's pore pressure coefficient (A¯=0) criterion were consistent with the drained ones. Energy absorption potential was higher in drained condition than undrained condition, suggesting that more energy was required to induce deformation in cemented soil under drained state. Energy absorption increased with increase in cement content under both drained and undrained conditions. |
topic |
Cementation Poorly graded soil Sand–gravel mixture Dilation Absorbed energy Failure criterion |
url |
http://www.sciencedirect.com/science/article/pii/S1674775514000729 |
work_keys_str_mv |
AT younesamini triaxialshearbehaviorofacementtreatedsandgravelmixture AT amirhamidi triaxialshearbehaviorofacementtreatedsandgravelmixture |
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1725723406818607104 |