Plastic analysis of steel arches and framed structures with various cross sections.
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2021
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This paper presents a displacement-based numerical methodology following the Euler-Bernoulli theory to simulate the 2 nonlinear behavior of steel structures. It is worth emphasizing the adoption of co-rotational finite element formulations considering large displacements and rotations and an inelastic material behavior. The numerical procedures proposed considers plasticity concentrated at the finite elements nodes, and the simulation of the steel nonlinear behavior is approached via the Strain Compatibility Method (SCM), where the material constitutive relation is used explicitly. The SCM is also applied in determining the sections bearing capacity. Moreover, the present numerical approach is not limited to a specific structural member cross-sectional typology, with the residual stress models introduced explicitly in subareas of steel cross-sections generated by a 2D discretization. Finally, results consistent with the literature and with low processing time are presented.
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Co-rotational approach, Concentrated plasticity, Strain compatibility method - SCM, Various steel sections
Citação
SILVA, J. L. e. et al. Plastic analysis of steel arches and framed structures with various cross sections. Steel and Composite Structures, v. 38, n. 3, p. 257-270, jan./abr. 2021. Disponível em: <https://www.koreascience.or.kr/article/JAKO202106960485385.page>. Acesso em: 12 set. 2021.