Optimization of geometrical parameters in a specific composite lattice structure using neural networks and ABC algorithm
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials
Link
http://link.springer.com/content/pdf/10.1007/s12206-016-0332-1.pdf
Reference24 articles.
1. N. Jaunky, N. F. Knight and D. R. Ambur, Optimal design of general stiffened composite circular cylinders for global buckling with strength constraints, Composite Structures, 41 (3-4) (1998) 243–252.
2. V. V. Vasiliev, V. A. Barynin and A. F. Rasin, Anisogrid lattice structures -survey of development and application, Composite Structures, 54 (2-3) (2001) 361–371.
3. V. V. Vasiliev and A. F. Razin, Anisogrid composite lattice structures for spacecraft and aircraft applications, Composite Structures, 76 (1-2) (2006) 182–189.
4. D. Slinchenko and V. E. Verijenko, Structural analysis of composite lattice shells of revolution on the basis of smearing stiffness, Composite Structures, 54 (2-3) (2001) 341–348.
5. E. Wodesenbent, S. Kidane and S. S. Pang, Optimization for buckling load of grid stiffened composite panels, Composite Structure, 60 2 (2003) 159–169.
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