Critical state modeling of lower-bound threshold stress for clay subgrade

Railway track foundation with fine-grained subgrade, under loading of cyclic nature, can build up excess pore pressure and results in progressive shear failure at a stress level less than its static undrained strength. It is widely accepted a threshold stress level exists, where loading above such l...

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Bibliographic Details
Main Authors: Loh, Richard, Nikraz, Hamid
Other Authors: Jotisankasa
Format: Conference Paper
Published: Kasetsart University, Thailand 2012
Subjects:
Online Access:http://hdl.handle.net/20.500.11937/3311
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author Loh, Richard
Nikraz, Hamid
author2 Jotisankasa
author_facet Jotisankasa
Loh, Richard
Nikraz, Hamid
author_sort Loh, Richard
building Curtin Institutional Repository
collection Online Access
description Railway track foundation with fine-grained subgrade, under loading of cyclic nature, can build up excess pore pressure and results in progressive shear failure at a stress level less than its static undrained strength. It is widely accepted a threshold stress level exists, where loading above such level causes large deformation; otherwise stability of vertical track profile will be assured. This paper described the theoretical model that predicts the threshold stress of clay soil. The threshold stress so determined represents the lower-bound solution for bearing strength capacity of clay subgrade which normally exists in an unsaturated state. Developed from the “original Cam-clay” model and validated by series of undrained cyclic triaxial test data on reconstituted kaolin clay, the proposed theoretical model enables the prediction of threshold stress to be made from the fundamental properties of the soil, based on current state of stress and stress history of the sub-grade soil. The model reserved its ability to further expand into predicting the threshold stress of soil in its un-saturated state.
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spelling curtin-20.500.11937-33112023-02-02T07:57:35Z Critical state modeling of lower-bound threshold stress for clay subgrade Loh, Richard Nikraz, Hamid Jotisankasa Sawangsuriya Soralump Mairaing clay cyclic loading constitutive modeling threshold stress Railway track foundation with fine-grained subgrade, under loading of cyclic nature, can build up excess pore pressure and results in progressive shear failure at a stress level less than its static undrained strength. It is widely accepted a threshold stress level exists, where loading above such level causes large deformation; otherwise stability of vertical track profile will be assured. This paper described the theoretical model that predicts the threshold stress of clay soil. The threshold stress so determined represents the lower-bound solution for bearing strength capacity of clay subgrade which normally exists in an unsaturated state. Developed from the “original Cam-clay” model and validated by series of undrained cyclic triaxial test data on reconstituted kaolin clay, the proposed theoretical model enables the prediction of threshold stress to be made from the fundamental properties of the soil, based on current state of stress and stress history of the sub-grade soil. The model reserved its ability to further expand into predicting the threshold stress of soil in its un-saturated state. 2012 Conference Paper http://hdl.handle.net/20.500.11937/3311 Kasetsart University, Thailand fulltext
spellingShingle clay
cyclic loading
constitutive modeling
threshold stress
Loh, Richard
Nikraz, Hamid
Critical state modeling of lower-bound threshold stress for clay subgrade
title Critical state modeling of lower-bound threshold stress for clay subgrade
title_full Critical state modeling of lower-bound threshold stress for clay subgrade
title_fullStr Critical state modeling of lower-bound threshold stress for clay subgrade
title_full_unstemmed Critical state modeling of lower-bound threshold stress for clay subgrade
title_short Critical state modeling of lower-bound threshold stress for clay subgrade
title_sort critical state modeling of lower-bound threshold stress for clay subgrade
topic clay
cyclic loading
constitutive modeling
threshold stress
url http://hdl.handle.net/20.500.11937/3311