Inelastic second-order analysis of steel columns under minor-axis bending.

Detalhes bibliográficos
Autor(a) principal: Gonçalves, Gilney Afonso
Data de Publicação: 2019
Outros Autores: Silveira, Ricardo Azoubel da Mota, Silva, Andréa Regina Dias da, Silva, Jéssica Lorrany e
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional da UFOP
Texto Completo: http://www.repositorio.ufop.br/handle/123456789/12387
https://doi.org/10.1590/0370-44672018720046
Resumo: The inelastic second-order behavior of steel structural columns under minor-axis bending is presented in this article. To study this behavior, a nonlinear frame element formulation is adopted in which the steel's plasticity process is accompanied at the nodal points of each finite element through the refined plastic-hinge method (RPHM). A tangent modulus approach is employed in order to consider the stiffness degradation in function of the internal forces' variation, and the second-order effects, residual stresses and geometric imperfections are considered in the modeling of column behavior. As a criterium for defining the ultimate limit state of the column cross-section, strength surfaces are adopted. These surfaces describe the interaction between the axial force and bending moment (N-M interaction diagrams). To solve the nonlinear equilibrium equation for the structural system, the Newton-Raphson method is used, coupled with continuation strategies. Columns with different slenderness, boundary and loading conditions are analyzed, and the results obtained are comparable to those found by other researchers. The results lead to the conclusion that the numerical approach adopted in this study can be used for a better behavioral understanding of the steel column under weak-axis bending.
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spelling Gonçalves, Gilney AfonsoSilveira, Ricardo Azoubel da MotaSilva, Andréa Regina Dias daSilva, Jéssica Lorrany e2020-06-25T15:40:56Z2020-06-25T15:40:56Z2019GONÇALVES, G. A. et al. Inelastic second-order analysis of steel columns under minor-axis bending. REM - International Engineering Journal, Ouro Preto, v. 72, n. 3, p. 405-414, jul./set. 2019. Disponível em: <http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2448-167X2019000400405>. Acesso em: 10 mar. 2020.1807-0353http://www.repositorio.ufop.br/handle/123456789/12387https://doi.org/10.1590/0370-44672018720046The inelastic second-order behavior of steel structural columns under minor-axis bending is presented in this article. To study this behavior, a nonlinear frame element formulation is adopted in which the steel's plasticity process is accompanied at the nodal points of each finite element through the refined plastic-hinge method (RPHM). A tangent modulus approach is employed in order to consider the stiffness degradation in function of the internal forces' variation, and the second-order effects, residual stresses and geometric imperfections are considered in the modeling of column behavior. As a criterium for defining the ultimate limit state of the column cross-section, strength surfaces are adopted. These surfaces describe the interaction between the axial force and bending moment (N-M interaction diagrams). To solve the nonlinear equilibrium equation for the structural system, the Newton-Raphson method is used, coupled with continuation strategies. Columns with different slenderness, boundary and loading conditions are analyzed, and the results obtained are comparable to those found by other researchers. The results lead to the conclusion that the numerical approach adopted in this study can be used for a better behavioral understanding of the steel column under weak-axis bending.A REM - International Engineering Journal - autoriza o depósito de cópia de artigos dos professores e alunos da UFOP no Repositório Institucional da UFOP. Licença concedida mediante preenchimento de formulário online em 12 set. 2013.info:eu-repo/semantics/openAccessFinite element methodRefined plastic-hinge methodInelastic second-order analysis of steel columns under minor-axis bending.info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleengreponame:Repositório Institucional da UFOPinstname:Universidade Federal de Ouro Preto (UFOP)instacron:UFOPLICENSElicense.txtlicense.txttext/plain; charset=utf-8924http://www.repositorio.ufop.br/bitstream/123456789/12387/2/license.txt62604f8d955274beb56c80ce1ee5dcaeMD52ORIGINALARTIGO_InelasticSecondOrder.pdfARTIGO_InelasticSecondOrder.pdfapplication/pdf1571848http://www.repositorio.ufop.br/bitstream/123456789/12387/1/ARTIGO_InelasticSecondOrder.pdf0ac7769fbd9b27f2d23a1a9180666c85MD51123456789/123872020-06-25 11:40:56.652oai:localhost: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ório InstitucionalPUBhttp://www.repositorio.ufop.br/oai/requestrepositorio@ufop.edu.bropendoar:32332020-06-25T15:40:56Repositório Institucional da UFOP - Universidade Federal de Ouro Preto (UFOP)false
dc.title.pt_BR.fl_str_mv Inelastic second-order analysis of steel columns under minor-axis bending.
title Inelastic second-order analysis of steel columns under minor-axis bending.
spellingShingle Inelastic second-order analysis of steel columns under minor-axis bending.
Gonçalves, Gilney Afonso
Finite element method
Refined plastic-hinge method
title_short Inelastic second-order analysis of steel columns under minor-axis bending.
title_full Inelastic second-order analysis of steel columns under minor-axis bending.
title_fullStr Inelastic second-order analysis of steel columns under minor-axis bending.
title_full_unstemmed Inelastic second-order analysis of steel columns under minor-axis bending.
title_sort Inelastic second-order analysis of steel columns under minor-axis bending.
author Gonçalves, Gilney Afonso
author_facet Gonçalves, Gilney Afonso
Silveira, Ricardo Azoubel da Mota
Silva, Andréa Regina Dias da
Silva, Jéssica Lorrany e
author_role author
author2 Silveira, Ricardo Azoubel da Mota
Silva, Andréa Regina Dias da
Silva, Jéssica Lorrany e
author2_role author
author
author
dc.contributor.author.fl_str_mv Gonçalves, Gilney Afonso
Silveira, Ricardo Azoubel da Mota
Silva, Andréa Regina Dias da
Silva, Jéssica Lorrany e
dc.subject.por.fl_str_mv Finite element method
Refined plastic-hinge method
topic Finite element method
Refined plastic-hinge method
description The inelastic second-order behavior of steel structural columns under minor-axis bending is presented in this article. To study this behavior, a nonlinear frame element formulation is adopted in which the steel's plasticity process is accompanied at the nodal points of each finite element through the refined plastic-hinge method (RPHM). A tangent modulus approach is employed in order to consider the stiffness degradation in function of the internal forces' variation, and the second-order effects, residual stresses and geometric imperfections are considered in the modeling of column behavior. As a criterium for defining the ultimate limit state of the column cross-section, strength surfaces are adopted. These surfaces describe the interaction between the axial force and bending moment (N-M interaction diagrams). To solve the nonlinear equilibrium equation for the structural system, the Newton-Raphson method is used, coupled with continuation strategies. Columns with different slenderness, boundary and loading conditions are analyzed, and the results obtained are comparable to those found by other researchers. The results lead to the conclusion that the numerical approach adopted in this study can be used for a better behavioral understanding of the steel column under weak-axis bending.
publishDate 2019
dc.date.issued.fl_str_mv 2019
dc.date.accessioned.fl_str_mv 2020-06-25T15:40:56Z
dc.date.available.fl_str_mv 2020-06-25T15:40:56Z
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dc.identifier.citation.fl_str_mv GONÇALVES, G. A. et al. Inelastic second-order analysis of steel columns under minor-axis bending. REM - International Engineering Journal, Ouro Preto, v. 72, n. 3, p. 405-414, jul./set. 2019. Disponível em: <http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2448-167X2019000400405>. Acesso em: 10 mar. 2020.
dc.identifier.uri.fl_str_mv http://www.repositorio.ufop.br/handle/123456789/12387
dc.identifier.issn.none.fl_str_mv 1807-0353
dc.identifier.doi.pt_BR.fl_str_mv https://doi.org/10.1590/0370-44672018720046
identifier_str_mv GONÇALVES, G. A. et al. Inelastic second-order analysis of steel columns under minor-axis bending. REM - International Engineering Journal, Ouro Preto, v. 72, n. 3, p. 405-414, jul./set. 2019. Disponível em: <http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2448-167X2019000400405>. Acesso em: 10 mar. 2020.
1807-0353
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https://doi.org/10.1590/0370-44672018720046
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