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Détail de l'auteur
Auteur T. J. Lin
Documents disponibles écrits par cet auteur
Affiner la rechercheInelastic thermal analysis of preloaded steel trusses undergoing heating and cooling stages / T. J. Lin in Journal of engineering mechanics, Vol. 138 N° 5 (Mai 2012)
[article]
in Journal of engineering mechanics > Vol. 138 N° 5 (Mai 2012) . - pp.468-477
Titre : Inelastic thermal analysis of preloaded steel trusses undergoing heating and cooling stages Type de document : texte imprimé Auteurs : T. J. Lin, Auteur ; C. W. Huang, Auteur ; Y. B. Yang, Auteur Année de publication : 2012 Article en page(s) : pp.468-477 Note générale : Mécanique appliquée Langues : Anglais (eng) Mots-clés : Cooling Heating Inelastic thermal analysis Steel truss Updated lagrangian formulation Résumé : The inelastic nonlinear behaviors of preloaded steel trusses undergoing heating and cooling cycles, a problem not well treated previously, are studied in this paper. A bilinear elastoplastic model with a kinematic strain-hardening rule is adopted for steel at varying temperatures. The material softening effects at elevated temperatures are taken into account via the Eurocode 3 reduction factors. The plastic strain resulting from strain reversal upon unloading at a given temperature is considered in updating the stress-strain curve for the next temperature increment. Two simple trusses are adopted to illustrate the physical phenomena involved. All the equations are presented in incremental form, consistent with the updated Lagrangian formulation. The results for the trusses are believed to be new and can be adopted as the benchmarks for validating other numerical approaches used in treating problems involving the heating and cooling stages. ISSN : 0733-9399 En ligne : http://ascelibrary.org/doi/abs/10.1061/%28ASCE%29EM.1943-7889.0000343 [article] Inelastic thermal analysis of preloaded steel trusses undergoing heating and cooling stages [texte imprimé] / T. J. Lin, Auteur ; C. W. Huang, Auteur ; Y. B. Yang, Auteur . - 2012 . - pp.468-477.
Mécanique appliquée
Langues : Anglais (eng)
in Journal of engineering mechanics > Vol. 138 N° 5 (Mai 2012) . - pp.468-477
Mots-clés : Cooling Heating Inelastic thermal analysis Steel truss Updated lagrangian formulation Résumé : The inelastic nonlinear behaviors of preloaded steel trusses undergoing heating and cooling cycles, a problem not well treated previously, are studied in this paper. A bilinear elastoplastic model with a kinematic strain-hardening rule is adopted for steel at varying temperatures. The material softening effects at elevated temperatures are taken into account via the Eurocode 3 reduction factors. The plastic strain resulting from strain reversal upon unloading at a given temperature is considered in updating the stress-strain curve for the next temperature increment. Two simple trusses are adopted to illustrate the physical phenomena involved. All the equations are presented in incremental form, consistent with the updated Lagrangian formulation. The results for the trusses are believed to be new and can be adopted as the benchmarks for validating other numerical approaches used in treating problems involving the heating and cooling stages. ISSN : 0733-9399 En ligne : http://ascelibrary.org/doi/abs/10.1061/%28ASCE%29EM.1943-7889.0000343 Thermal effect on the postbuckling behavior of an elastic or elastoplastic truss / Y. B. Yang in Journal of engineering mechanics, Vol. 134 N°4 (Avril 2008)
[article]
in Journal of engineering mechanics > Vol. 134 N°4 (Avril 2008) . - pp.330–338.
Titre : Thermal effect on the postbuckling behavior of an elastic or elastoplastic truss Type de document : texte imprimé Auteurs : Y. B. Yang, Auteur ; T. J. Lin, Auteur ; Leu, J. M., Auteur Année de publication : 2008 Article en page(s) : pp.330–338. Note générale : Mécanique appliquée Langues : Anglais (eng) Mots-clés : Bifurcations Critical loads Temperature Postbuckling Trusses Thermal factors Elasticity Elastoplasticity Résumé : Temperature rise may lead to strength degradation and stiffness deterioration of structures under fire conditions. The purpose of this paper is to theoretically study the thermal effect on the postbuckling behavior of an elastic or elastoplastic two-member truss, based on large-deformation elasticity considerations. Two kinds of loadings are considered, i.e., trusses under constant temperature but increasing loads, and trusses under constant loads but rising temperature. For the case with constant temperature, the critical load of an elastic truss will be greatly reduced if the effect of yielding is taken into account. Moreover, yielding of material can cause the truss to bifurcate from the original elastic path. For the case with constant loads, a critical temperature that occurs as the limit point of the temperature–deflection curve can always be found. Besides, the presence of yielding can drastically reduce the critical temperature of an elastic truss, causing it to collapse in an abrupt manner. The solutions presented herein can be used as benchmarks for calibration of the accuracy of general finite-element procedures in analyzing structures under fire conditions. ISSN : 0733-9399 En ligne : http://ascelibrary.org/doi/abs/10.1061/%28ASCE%290733-9399%282008%29134%3A4%2833 [...] [article] Thermal effect on the postbuckling behavior of an elastic or elastoplastic truss [texte imprimé] / Y. B. Yang, Auteur ; T. J. Lin, Auteur ; Leu, J. M., Auteur . - 2008 . - pp.330–338.
Mécanique appliquée
Langues : Anglais (eng)
in Journal of engineering mechanics > Vol. 134 N°4 (Avril 2008) . - pp.330–338.
Mots-clés : Bifurcations Critical loads Temperature Postbuckling Trusses Thermal factors Elasticity Elastoplasticity Résumé : Temperature rise may lead to strength degradation and stiffness deterioration of structures under fire conditions. The purpose of this paper is to theoretically study the thermal effect on the postbuckling behavior of an elastic or elastoplastic two-member truss, based on large-deformation elasticity considerations. Two kinds of loadings are considered, i.e., trusses under constant temperature but increasing loads, and trusses under constant loads but rising temperature. For the case with constant temperature, the critical load of an elastic truss will be greatly reduced if the effect of yielding is taken into account. Moreover, yielding of material can cause the truss to bifurcate from the original elastic path. For the case with constant loads, a critical temperature that occurs as the limit point of the temperature–deflection curve can always be found. Besides, the presence of yielding can drastically reduce the critical temperature of an elastic truss, causing it to collapse in an abrupt manner. The solutions presented herein can be used as benchmarks for calibration of the accuracy of general finite-element procedures in analyzing structures under fire conditions. ISSN : 0733-9399 En ligne : http://ascelibrary.org/doi/abs/10.1061/%28ASCE%290733-9399%282008%29134%3A4%2833 [...]