Artigo De: scopus
A modified Mazars damage model with energy regularization
Engineering Fracture Mechanics
2022
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Autores:
Publicado em
01/01/2022
Resumo
This paper presents a modified Mazars damage model, based on a strain formulation, for the physically nonlinear analysis of concrete structures. The main objective is to propose a modified damage model, in which both tension and compression damage evolution laws are regularized using a classical fracture energy methodology. The original loading functions are maintained, including their thermodynamic consistencies. The most relevant modification of the model is introduced in the damage evolutions laws, which are updated in order to produce similar stress-strain relations to those presented in fib Model Code 2010. The softening branch under both compressive and tensile strains is regularized with fracture energy. The damage model is then benchmarked with classical experimental and numerical tests considering monotonic loadings. The new constitutive relation was implemented in the commercial software ABAQUS via user subroutine UMAT. Research needs towards a definition of a generalized damage model with energy regularization are discussed and presented.
Detalhes da publicação
Autores da comunidade :
Mário Rui Tiago Arruda
ist149978
Eduardo Nuno Brito Santos Júlio
ist25191
Versão da publicação
VoR - Versão publicada
Título do contentor da publicação
Engineering Fracture Mechanics
Volume
259
Domínio Científico (FOS)
civil-engineering - Engenharia Civil
Palavras-chave
- Mesh Dependency
- Fracture Energy
- Mazars Damage Model
- Finite Element Method
- Concrete Softening Behaviour
Idioma da publicação (código ISO)
eng - Inglês
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