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Unified formulation for a triaxial elastoplastic constitutive law for concrete

Rabah Hammoud, Rachid Boukhili et Ammar Yahia

Article de revue (2013)

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Abstract

A constitutive model to describe the triaxial load-response spectrum of plain concrete in both tension and shear was developed. The inelastic phenomena are described using the plastic flow with direction determined by the gradient of the plastic potential. A new plastic potential is introduced and experimentally fitted to ensure better estimate of the load direction. This approach allows to control the inelastic dilatancy in terms of the inelastic deformation of the material. By overlaying the plastic potential on modified Etse and Willam's yield surface (both defined on the Haigh-Westergaard coordinates), the results showed that the two curves do not undergo similar stress states for a given strength level. It is, therefore, necessary that each surface goes through the current stress state to ensure adequate evaluation of normal vectors. A closed-form solution to accurately predict the triaxial stress state in concrete has been proposed. The predictive capabilities of the proposed model are evaluated by comparing predicted and measured stresses. The proposed model is shown to be accurate in predicting stress state of concrete.

Mots clés

constitutive law; elasto-plastic material; failure criterion; finite element method; triaxial strength

Sujet(s): 2100 Génie mécanique > 2100 Génie mécanique
Département: Département de génie mécanique
Organismes subventionnaires: Fond de Recherche du Québec-Nature et Technologies (FRQNT)
URL de PolyPublie: https://publications.polymtl.ca/4926/
Titre de la revue: Materials (vol. 6, no 9)
Maison d'édition: MDPI
DOI: 10.3390/ma6094226
URL officielle: https://doi.org/10.3390/ma6094226
Date du dépôt: 30 sept. 2021 15:50
Dernière modification: 11 avr. 2024 01:28
Citer en APA 7: Hammoud, R., Boukhili, R., & Yahia, A. (2013). Unified formulation for a triaxial elastoplastic constitutive law for concrete. Materials, 6(9), 4226-4248. https://doi.org/10.3390/ma6094226

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