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Détail de l'auteur
Auteur C. D. Moen
Documents disponibles écrits par cet auteur
Affiner la rechercheDirect strength method for design of cold-formed steel columns with holes / C. D. Moen in Journal of structural engineering, Vol. 137 N° 5 (Mai 2011)
[article]
in Journal of structural engineering > Vol. 137 N° 5 (Mai 2011) . - pp. 559-570
Titre : Direct strength method for design of cold-formed steel columns with holes Type de document : texte imprimé Auteurs : C. D. Moen, Auteur ; B. W. Schafer, Auteur Année de publication : 2011 Article en page(s) : pp. 559-570 Note générale : Génie Civil Langues : Anglais (eng) Mots-clés : Thin-walled Column Cold-formed steel Direct strength method Perforations Holes Index. décimale : 624 Constructions du génie civil et du bâtiment. Infrastructures. Ouvrages en terres. Fondations. Tunnels. Ponts et charpentes Résumé : In this paper, design expressions are derived that extend the American Iron and Steel Institute (AISI) direct strength method (DSM) to cold-formed steel columns with holes. For elastic buckling-controlled failures, column capacity is accurately predicted by using existing DSM design equations and the cross-section and global elastic buckling properties calculated including the influence of holes. For column failures in the inelastic regime, in which strength approaches the squash load, limits are imposed to restrict column capacity to that of the net cross section at a hole. The proposed design expressions are validated with a database of existing experiments on cold-formed steel columns with holes, and more than 200 nonlinear finite-element simulations that evaluate the strength prediction equations across a wide range of hole sizes, hole spacings, hole shapes, and column dimensions. The recommended DSM approach is demonstrated to provide a broad improvement in prediction accuracy and generality when compared to the AISI main specification, and, with the recent introduction of simplified methods for calculating elastic buckling properties including the influence of holes, it is ready for implementation in practice.
DEWEY : 624.17 ISSN : 0733-9445 En ligne : http://ascelibrary.org/sto/resource/1/jsendh/v137/i5/p559_s1?isAuthorized=no [article] Direct strength method for design of cold-formed steel columns with holes [texte imprimé] / C. D. Moen, Auteur ; B. W. Schafer, Auteur . - 2011 . - pp. 559-570.
Génie Civil
Langues : Anglais (eng)
in Journal of structural engineering > Vol. 137 N° 5 (Mai 2011) . - pp. 559-570
Mots-clés : Thin-walled Column Cold-formed steel Direct strength method Perforations Holes Index. décimale : 624 Constructions du génie civil et du bâtiment. Infrastructures. Ouvrages en terres. Fondations. Tunnels. Ponts et charpentes Résumé : In this paper, design expressions are derived that extend the American Iron and Steel Institute (AISI) direct strength method (DSM) to cold-formed steel columns with holes. For elastic buckling-controlled failures, column capacity is accurately predicted by using existing DSM design equations and the cross-section and global elastic buckling properties calculated including the influence of holes. For column failures in the inelastic regime, in which strength approaches the squash load, limits are imposed to restrict column capacity to that of the net cross section at a hole. The proposed design expressions are validated with a database of existing experiments on cold-formed steel columns with holes, and more than 200 nonlinear finite-element simulations that evaluate the strength prediction equations across a wide range of hole sizes, hole spacings, hole shapes, and column dimensions. The recommended DSM approach is demonstrated to provide a broad improvement in prediction accuracy and generality when compared to the AISI main specification, and, with the recent introduction of simplified methods for calculating elastic buckling properties including the influence of holes, it is ready for implementation in practice.
DEWEY : 624.17 ISSN : 0733-9445 En ligne : http://ascelibrary.org/sto/resource/1/jsendh/v137/i5/p559_s1?isAuthorized=no