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Optimization of laminated composites subject to uncertain buckling loads
Authors:S. Adali   F. Lene   G. Duvaut  V. Chiaruttini
Affiliation:

a School of Mechanical Engineering, University of Natal, Center for Composite Materials and Structures, Durban 4041, South Africa

b Université P. et M. Curie, LM2S, 8 rue du Capitaine Scott, 75015, Paris, France

c Ecole Normale Supérieure de Cachan, 61 ave du Pdt Wilson, 94235, Cachan, France

Abstract:Optimal design of composite laminates under buckling load uncertainty is presented. The laminates are subjected to biaxial compressive loads and the buckling load is maximized under worst case in-plane loading which is computed using an anti-optimization approach. The magnitudes of the in-plane loads are not known a priori resulting in load uncertainty subject to the only constraint that the loads belong to a given uncertainty domain. Results are given for continuous and discrete fibre orientations which constitute the optimization problem coupled to load anti-optimization problem leading to a nested solution method. It is observed that the stacking sequence of a laminate designed for a deterministic load case only differs considerably from that of a robust laminate designed taking load uncertainties into account. Consequently the buckling load carried by a deterministic design is considerably less than the one carried by a robust design when both are subjected to uncertain loads.
Keywords:Anti-optimization   Uncertain loading   Optimal design   Composite laminates   Buckling
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