Title :
Multiobjective Genetic Algorithm optimization of the composite laminates as a satellite structure material for coefficient of thermal expansion and elastic modulus
Author :
Aydin, Levent ; Artem, H. Secil
Author_Institution :
Mech. Eng., Izmir Inst. of Technol., Izmir, Turkey
Abstract :
This study considers multi-objective optimal design of the fiber reinforced symmetric-balanced laminated composites using genetic algorithms. MATLAB Genetic Algorithm and Direct Search Toolbox is used to obtain Pareto-optimal design for three different model problems. The objectives of the problems are to maximize the Young´s moduli and minimize the coefficient of thermal expansion (CTE) simultaneously for 8 and 16 layered carbon/epoxy composites. Simplified micromechanics equations and classical lamination theory are used in order to obtain the fitness functions of the problems. Stress and strain distributions are presented through the thickness of the laminates for the optimized problems under mechanical and thermal loadings.
Keywords :
Pareto optimisation; Young´s modulus; aerospace engineering; aerospace materials; artificial satellites; elastic moduli; genetic algorithms; laminates; micromechanics; structural engineering; thermal expansion; MATLAB genetic algorithm; Pareto-optimal design; Young´s moduli; aerospace engineering; composite laminates; elastic modulus; lamination theory; micromechanics equations; multiobjective genetic algorithm optimization; satellite structure material; strain distributions; stress distributions; thermal expansion coefficient; Algorithm design and analysis; Composite materials; Equations; Genetic algorithms; Laminates; MATLAB; Mathematical model; Satellites; Thermal expansion; Thermal stresses; genetic algortihms; laminated composites; multi-objective optimization; satellite structures; thermomechanical loading;
Conference_Titel :
Recent Advances in Space Technologies, 2009. RAST '09. 4th International Conference on
Conference_Location :
Istanbul
Print_ISBN :
978-1-4244-3627-9
Electronic_ISBN :
978-1-4244-3628-6
DOI :
10.1109/RAST.2009.5158179