Plate Buckling in Bridges and Other StructuresTaylor & Francis, 16 févr. 2007 - 164 pages Covers theory and background of local buckling, presenting simple design calculations which address this intriguing phenomenon. Attempts to master the process of buckling are described, citing both successes and failures. A number of failure case studies are presented as well. The final section of the book presents easy-to-follow design examples which conform to the latest Eurocode. Intended to introduce senior students in Bridge and Structural Engineering to the phenomenon of buckling, with special focus on thin-walled plated bridge girders. Suitable as a course instruction guide for its highly visual and descriptive style. Moreovere a good reference on buckling for practising and consulting engineers. |
Table des matières
Introduction | 1 |
Plate buckling theory | 11 |
Boxgirder bridges | 23 |
Droits d'auteur | |
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Expressions et termes fréquents
Actual slenderness Aeff axially loaded beff bending moment resistance box-girder bridge Britannia Bridge buckling coefficient buckling length cantilever Cleddau Bridge collapse compression flange concentrated load critical buckling load critical buckling stress Cross-section class cylinder Danube Danube Bridge deflection deformations design bending diagonal edge effective width Eurocode example Figure flange plate girder global buckling I-girder increase initial imperfections inner supports l-girder longitudinal direction longitudinal stiffener lower flange maximum load-carrying capacity meter mid-span mm² moment distribution nodal lines normal force normal stress buckling out-of-plane panel aspect ratio plastic post-critical reserve effects profiles reduced residual stresses respect shear buckling resistance shear force shell simply supported slenderness ratio splice statically indeterminate strut tension field thickness thin-walled transverse direction transverse stiffeners truss truss bridge tubes upper flange Vbw,Rd vertical stiffeners West Gate Bridge yield strength Zeulenroda