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Discrete material optimization of general composite shell structures

International Journal for Numerical Methods in Engineering · 2005 · Vol. 62(14) · pp. 2009–2027
Jan StegmannErik Lund

Abstract

Abstract A novel method for doing material optimization of general composite laminate shell structures is presented and its capabilities are illustrated with three examples. The method is labelled Discrete Material Optimization (DMO) but uses gradient information combined with mathematical programming to solve a discrete optimization problem. The method can be used to solve the orientation problem of orthotropic materials and the material selection problem as well as problems involving both. The method relies on ideas from multiphase topology optimization to achieve a parametrization which is very general and reduces the risk of obtaining a local optimum solution for the tested configurations. The applicability of the DMO method is demonstrated for fibre angle optimization of a cantilever beam and combined fibre angle and material selection optimization of a four‐point beam bending problem and a doubly curved laminated shell. Copyright © 2005 John Wiley & Sons, Ltd.

Topology Optimization in EngineeringComposite Structure Analysis and OptimizationAdvanced Multi-Objective Optimization AlgorithmsTopology optimizationOrthotropic materialOptimization problemCantileverMathematical optimizationShell (structure)BendingShape optimizationDiscrete optimizationBeam (structure)
Citations
720
FWCI
24.26
field-weighted impact
References
21
Percentile
100%
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Citations per year
References
The method of moving asymptotes—a new method for structural optimization
International Journal for Numerical Methods in Engineering · 1987 · 5,277 citations
Design of materials with extreme thermal expansion using a three-phase topology optimization method
Journal of the Mechanics and Physics of Solids · 1997 · 1,022 citations
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