Analytical benchmark solutions for steel frame structures subject to local buckling effects
Data(s) |
01/07/2000
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Resumo |
Application of "advanced analysis" methods suitable for non-linear analysis and design of steel frame structures permits direct and accurate determination of ultimate system strengths, without resort to simplified elastic methods of analysis and semi-empirical specification equations. However, the application of advanced analysis methods has previously been restricted to steel frames comprising only compact sections that are not influenced by the effects of local buckling. A research project has been conducted with the aim of developing concentrated plasticity methods suitable for practical advanced analysis of steel frame structures comprising non-compact sections. This paper contains a comprehensive set of analytical benchmark solutions for steel frames comprising non-compact sections, which can be used to verify the accuracy of simplified concentrated plasticity methods of advanced analysis. The analytical benchmark solutions were obtained using a distributed plasticity shell finite element model that explicitly accounts for the effects of gradual cross-sectional yielding, longitudinal spread of plasticity, initial geometric imperfections, residual stresses, and local buckling. A brief description and verification of the shell finite element model is provided in this paper. |
Formato |
application/pdf |
Identificador | |
Publicador |
Multi-Science Publishing Co. Ltd. |
Relação |
http://eprints.qut.edu.au/61752/1/Avery%20Analytical%20benchmarks%20Full%20paper.pdf DOI:10.1260/1369433001502157 Avery, Philip & Mahendran, Mahen (2000) Analytical benchmark solutions for steel frame structures subject to local buckling effects. Advances in Structural Engineering, 3(3), pp. 215-229. |
Direitos |
Copyright 2000 Multi-Science Publishing |
Fonte |
School of Civil Engineering & Built Environment; Science & Engineering Faculty |
Palavras-Chave | #090506 Structural Engineering #ANALYTICAL BENCHMARK SOLUTIONS, STEEL FRAME STRUCTURES, NON-COMPACT SECTIONS |
Tipo |
Journal Article |