Stacking sequence optimization for maximum fundamental frequency of simply supported antisymmetric laminated composite plates using Teaching–learning-based Optimization
Author:
Publisher
Springer Science and Business Media LLC
Subject
Civil and Structural Engineering
Link
http://link.springer.com/article/10.1007/s12205-017-0076-1/fulltext.html
Reference19 articles.
1. Abachizadeh, M. and Tahani, M. (2009). “An ant colony optimization approach to multi-objective optimal design of symmetric hybrid laminates for maximum fundamental frequency and minimum cost.” Structural and Multidisciplinary Optimization, Vol. 37, No. 4, pp. 367–376, DOI: 10.1007/s00158-008-0235-6.
2. Anh, L. L., Thoi, T. N., Huu, V. H., Trung, H. D., and Xuan, T. B. (2015). “Static and frequency optimization of folded laminated composite plates using an adjusted differential evolution algorithm and a smoothed triangular plate element.” Composite Structures, Vol. 127, No. 1, pp. 382–394, DOI: 10.1016/(J.COMPSTRUCT).2015.02.069.
3. Apalak, M. K., Yildirim, M., and Ekici, R. (2008). “Layer optimisation for maximum fundamental frequency of laminated composite plates for different edge conditions.” Composite Science and Technology, Vol. 68, No. 2, pp. 537–550, DOI: 10.1016/(J.COMPSCITECH).2007.06.031.
4. Apalak, M. K., Karaboga, D., and Akay, B. (2014). “The artificial bee colony algorithm in layer optimization for the maximum fundamental frequency of symmetrical laminated composite plates.” Engineering Optimization, Vol. 46, No. 3, pp. 420–437, DOI: 10.1080/0305215X. 2013.776551.
5. Bargh, H. G. and Sadr, M. H. (2011). “Stacking sequence optimization of composite plates for maximum fundamental frequency using particle swarm optimization algorithm.” Meccanica, Vol. 47, No. 3, pp. 719–730, DOI: 10.1007/s11012-011-9482-5.
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