Use este identificador para citar ou linkar para este item: http://repositorio.ufla.br/jspui/handle/1/59621
Título: A complete assessment of the moment-curvature relationship of compressed steel-concrete composite cross-sections
Autor: Lemes, Ígor J.M.
Lima, Pedro H.A.
Barros, Rafael C.
Silveira, Ricardo A.M.
Chiorean, Cosmin G.
Palavras-chave: Seções transversais estruturais
Relação momento-curvatura
Materiais de amolecimento por deformação
Método de compatibilidade de deformações
Estratégias de seguimento de caminho
Structural Cross-sections
Moment-Curvature Relationship
Strain-Softening Materials
Strain Compatibility Method (SCM)
Path-Following Strategies (PFS)
Data da publicação: 14-Set-2022
Referência: LEMES, Í. J. M.; LIMA, P. H. A.; BARROS, R. C.; SILVEIRA, R. A. M.; CHIOREAN, C. G. A Complete Assessment of the Moment-Curvature Relationship of Compressed Steel-concrete Composite Cross-sections. ce/papers, Berlim, v. 5, n. 4, 2022. Disponível em: https://doi.org/10.1002/cepa.1824. Acesso em: 1 out. 2024.
Abstract: In the non-linear evaluation of the behavior of steel, concrete and steel-concrete composite cross-sections, increment and iteration strategies are necessary for the complete construction of the moment-curvature relationship (M-Φ). For the correct simulation of sections composed of strain-softening materials, a numerical strategy based on constant force increments does not capture the downward branch of the M-Φ relationship. Therefore, the present study aims to couple the strain compatibility method to the path-following strategies to go beyond the critical bending moment points in the construction of the relations that describe the complete cross-section mechanical behavior. In this context, the generalized displacement technique, which depends on a generalized stiffness parameter, and the minimum residual displacement method, are adapted to the cross-sectional non-linear problem. To validate the proposed numerical formulation, the results obtained here are compared with the numerical data available in the literature. Additionally, the softening effect on the concrete was increased to induce descending stretches in the moment-curvature relationship, and this condition was correctly evaluated.
URI: https://onlinelibrary.wiley.com/doi/10.1002/cepa.1824
Idioma: pt_BR
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