Herein, methods for the multicriteria structural design optimization of composite structures are developed. The structural-mechanical analysis is elaborated upon a homogenization. Models capturing manufacturing effort are based on quantified expert knowledge. The design cases handled here, are of multiobjective nature and Pareto fronts are constructed efficiently via gradient-based optimization algorithms yielding equidistantly spaced Pareto efficient solutions. The resulting holistic method is first introduced on an academic problem and then on a large-scale engineering design problems. Simultaneous consideration of mechanics and manufacturing effort increase the technical significance of the designs.
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Herein, methods for the multicriteria structural design optimization of composite structures are developed. The structural-mechanical analysis is elaborated upon a homogenization. Models capturing manufacturing effort are based on quantified expert knowledge. The design cases handled here, are of multiobjective nature and Pareto fronts are constructed efficiently via gradient-based optimization algorithms yielding equidistantly spaced Pareto efficient solutions. The resulting holistic method is...
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