Optimization of composite structures in vibration view
Subject Areas :
Analytical and Numerical Methods in Mechanical Design
SM. azizisough
1
,
MH. Yas
2
,
MM. Najafi Zadeh
3
1 - Department of Mechanic, Islamic Azad University branch of Arak
2 - Department of Mechanic, Kermanshah Razi University
3 - Department of Mechanic, Kermanshah Razi University, Kermanshah, Iran.
Received: 2022-09-21
Accepted : 2022-09-21
Published : 2022-06-01
Keywords:
References:
Miki (1982) "Material Design of Composite Laminates with Required In-Plane ElasticProperties," Progress in Science and Engineering of Composites, Vol. 2, 1725-1731.
Hayashi,T. Kawata, K. and Umekawa, S. (eds.) ICCM-IV, Tokyo..K.J. Callahan and G.E. Weeks, "Optimum Design of Composite Laminates Using GeneticAlgorithms," Composite Engineering, 2(3), 149-160.
Le Riche and R.T. Haftka (1993) , "Optimization of Stacking Sequence Design forBuckling Load Maximization by Genetic Algorithms," AIAA Journal, 31(5), 951-956.
T. McMahon, L.T. Watson, G.A. Soremekun, Z. Gürdal, and R.T. Haftka (1998), "AFortran 90 Genetic Algorithm Module for Composite Laminate Structure Design" Engineeringwith Computers, 14, pp. 260-273.
Deb (2001), Multi-Objective Optimization Using Evolutionary Algorithms, UK Wiley,Chichester.
Gürdal, R. T. Haftka and P. Hajela (1998), “Design and Optimization of LaminatedComposite Materials”, Wiley Interscience, p. 300.
F. Ashby (2000), “Multi-objective optimization in material design and selection”, ActaMaterialia 48, pp. 359-369.
A. Coello (2000), A. D. Christiansen, “Multi-objective optimization of trusses using geneticalgorithms”, Computers and Structures 75, pp. 647-660.