Intrinsic compression characteristics of an expansive clay from Western Australia

Intrinsic compression behaviour of an expansive clay from Western Australia is investigated using the intrinsic framework in this study. Oedometer results conform with the intrinsic concept at post-yield phase. However, there is a great impact of initial water content on the compression curves at pr...

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Main Authors: Habibbeygi, Farzad, Nikraz, Hamid, Chegenizadeh, Amin
Format: Journal Article
Published: The Geomate International Society 2017
Online Access:http://hdl.handle.net/20.500.11937/50306
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author Habibbeygi, Farzad
Nikraz, Hamid
Chegenizadeh, Amin
author_facet Habibbeygi, Farzad
Nikraz, Hamid
Chegenizadeh, Amin
author_sort Habibbeygi, Farzad
building Curtin Institutional Repository
collection Online Access
description Intrinsic compression behaviour of an expansive clay from Western Australia is investigated using the intrinsic framework in this study. Oedometer results conform with the intrinsic concept at post-yield phase. However, there is a great impact of initial water content on the compression curves at pre-yield stage. It specifies that there is an initial structure similar to a natural clay structure which resists applied forces at this phase and it is related to the amount of initial water content at the preparation stage. Nonetheless, this interparticle bonding is demolished when vertical stress becomes greater than remoulded yield stress. The findings also show that the remoulded yield stress of a reconstituted clay decreases non-linearly with the increase of initial water content, and is remarkably affected by its clay mineralogy. The remoulded yield stress of a soil with the predominant clay of smectite is far greater than those of other clay minerals despite having the same normalised initial void ratio value (e0/eL). Moreover, remoulded yield stress of an expansive soil with main clay mineral of smectite decreases more abruptly than for other clay minerals reported in the literature. Reconstituted compression indexes (C*c,e100*) for clays with a considerable amount of smectite are also greater than respective values for other clay minerals.
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spelling curtin-20.500.11937-503062017-09-13T15:37:03Z Intrinsic compression characteristics of an expansive clay from Western Australia Habibbeygi, Farzad Nikraz, Hamid Chegenizadeh, Amin Intrinsic compression behaviour of an expansive clay from Western Australia is investigated using the intrinsic framework in this study. Oedometer results conform with the intrinsic concept at post-yield phase. However, there is a great impact of initial water content on the compression curves at pre-yield stage. It specifies that there is an initial structure similar to a natural clay structure which resists applied forces at this phase and it is related to the amount of initial water content at the preparation stage. Nonetheless, this interparticle bonding is demolished when vertical stress becomes greater than remoulded yield stress. The findings also show that the remoulded yield stress of a reconstituted clay decreases non-linearly with the increase of initial water content, and is remarkably affected by its clay mineralogy. The remoulded yield stress of a soil with the predominant clay of smectite is far greater than those of other clay minerals despite having the same normalised initial void ratio value (e0/eL). Moreover, remoulded yield stress of an expansive soil with main clay mineral of smectite decreases more abruptly than for other clay minerals reported in the literature. Reconstituted compression indexes (C*c,e100*) for clays with a considerable amount of smectite are also greater than respective values for other clay minerals. 2017 Journal Article http://hdl.handle.net/20.500.11937/50306 10.21660/2017.29.20455 The Geomate International Society unknown
spellingShingle Habibbeygi, Farzad
Nikraz, Hamid
Chegenizadeh, Amin
Intrinsic compression characteristics of an expansive clay from Western Australia
title Intrinsic compression characteristics of an expansive clay from Western Australia
title_full Intrinsic compression characteristics of an expansive clay from Western Australia
title_fullStr Intrinsic compression characteristics of an expansive clay from Western Australia
title_full_unstemmed Intrinsic compression characteristics of an expansive clay from Western Australia
title_short Intrinsic compression characteristics of an expansive clay from Western Australia
title_sort intrinsic compression characteristics of an expansive clay from western australia
url http://hdl.handle.net/20.500.11937/50306