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Decomposition method for solving optimal material orientation problems
Authors:Jüri Majak  Meelis Pohlak
Affiliation:Institute of Machinery, Tallinn University of Technology, Tallinn, Estonia
Abstract:The strain energy density is considered as a measure of the stiffness/flexibility of the composite structure. A methodology for determining the stationary points of the strain energy density in anisotropic solids is developed. The methodology proposed is based on new problem formulation, derivation and analysis of optimality conditions, and decomposition method. The optimal material orientation problem is formulated in terms of strains. The optimality conditions derived cover different material symmetries, linear and also some non-linear material models. The complexity analysis of the optimality conditions has been performed. The proposed approach allows to divide the solution of the optimal material orientation problem into less complicated subtasks.
Keywords:Optimal material orientation  Optimality conditions in terms of strains  Decomposition method  Global extremes
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