Conventional elastoplasticity is based on the idealisation that the interior of the yield surface is a purely elastic domain. This idealisation would not lead to unrealistic prediction of hardening behaviour, but would cause unrealistic prediction of softening behaviour, which is observed typically in overconsolidated soils, whereas metals and normally consolidated soils exhibit hardening behaviour. By contrast, unconventional elastoplasticity that does not use this idealisation makes it possible to describe the plastic deformation due to the change of stress inside the yield surface exhibiting a smooth elastic–plastic transition, and is thus expected to describe softening behaviour more accurately. In this paper the capabilities of conventional and unconventional elastoplasticity for describing softening behaviour are examined, comparing the Drucker–Prager model as the conventional one and the subloading surface model as the unconventional one for predicting the deformation behaviour of overconsolidated soils. It is concluded that unconventional elastoplasticity has to be adopted for predicting softening behaviour.
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October 2002
Research Article|
October 01 2002
Evaluation of typical conventional and unconventional plasticity models for prediction of softening behaviour of soils
K. Hashiguchi;
K. Hashiguchi
*
Department of Agricultural Engineering, Kyushu University
Japan
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K. Saitoh;
K. Saitoh
*
Department of Agricultural Engineering, Kyushu University
Japan
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T. Okayasu;
T. Okayasu
*
Department of Agricultural Engineering, Kyushu University
Japan
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S. Tsutsumi
S. Tsutsumi
†
Department of Civil Engineering, Tohoku University
Japan
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Publisher: Emerald Publishing
Received:
April 03 2001
Accepted:
June 11 2002
Online ISSN: 1751-7656
Print ISSN: 0016-8505
© 2002 Thomas Telford Ltd
2002
Geotechnique (2002) 52 (8): 561–578.
Article history
Received:
April 03 2001
Accepted:
June 11 2002
Citation
Hashiguchi K, Saitoh K, Okayasu T, Tsutsumi S (2002), "Evaluation of typical conventional and unconventional plasticity models for prediction of softening behaviour of soils". Geotechnique, Vol. 52 No. 8 pp. 561–578, doi: https://doi.org/10.1680/geot.2002.52.8.561
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