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Optimal design of hybrid laminates with discrete ply angles for maximum buckling load and minimum cost
Authors:S. Adali   A. Richter   V. E. Verijenko  E. B. Summers
Affiliation:

Department of Mechanical Engineering, University of Natal, Durban 4001, South Africa

Abstract:The design of hybrid symmetric laminated plates consisting of high-stiffness surface and low-stiffness core layers is presented. In the first problem the maximization of buckling load is carried out over a discrete set of ply angles. In the second problem the minimum number of high-stiffness plies is determined for a given buckling load to minimize the material cost. Boolean variables are introduced to specify stacking sequence. Solution of the linear optimization problem yields an optimal stacking sequence. The effect of hybridization is investigated for various problem parameters such as the aspect ratio of the laminate and the number of plies. The optimal designs are obtained with upper bound constraints on the effect of bending-twisting coupling stiffnesses. Results are given for hybrid graphite-epoxy/glass-epoxy laminates under both uniaxial and biaxial loadings.
Keywords:
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