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Benchmark case studies in optimization of geometrically nonlinear structures
Authors:A Suleman  R Sedaghati
Affiliation:(1) IDMEC-IST, 1049-001 Lisbon, Portugal;(2) University of Victoria, Victoria, Canada;(3) Department of Mechanical and Industrial Engineering, Concordia University, Montreal, Quebec, Canada
Abstract:A structural optimization algorithm is developed for truss and beam structures undergoing large deflections against instability. The method combines the nonlinear buckling analysis using the displacement control technique, with the optimality criteria approaches. Several benchmark case studies illustrate the procedure and the results are compared with examples reported in the literature. It is shown that a design based on the generalized eigenvalue problem (linear buckling) highly underestimates the optimum mass or overestimates the buckling load for these types of structures, so a design based on the linear buckling analysis may result in catastrophic failure. The effect of geometrical nonlinearities and element imperfections has also been studied.
Keywords:Structural optimization  Nonlinear structures  Optimality criteria  Benchmark case studies
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