Optimization of Multispan Ribbed Plywood Plate Macrostructure for Multiple Load Cases
Journal of Civil Engineering and Management 2013
Jānis Šliseris, Kārlis Rocēns

This paper discusses an optimized structural plate of plywood composite that consists of top and bottom plywood flanges and a core of plywood ribs. The objective function is structure’s weight. Typical constrains are used - maximal stress criteria and maximal deformation criteria - are used. The optimization is done by Genetic Algorithm and optimization results are used to train Feed- Forward Artificial Neural Network. The numerical simulation of plywood structure is done by using classical-linear Kirchoff-Love theory of multilayer plate and Finite Element Method. As a result there is proposed an effective optimization methodology for plywood composite material. The most rational (according to strength-stiffness criteria) plywood composite macro-structure are obtained for some typical cases.


Atslēgas vārdi
plywood composite, structural optimization, Genetic Algorithm, Artificial Neural Network
DOI
10.3846/13923730.2013.799091
Hipersaite
http://www.tandfonline.com/doi/abs/10.3846/13923730.2013.799091

Šliseris, J., Rocēns, K. Optimization of Multispan Ribbed Plywood Plate Macrostructure for Multiple Load Cases. Journal of Civil Engineering and Management, 2013, Vol.19, Iss.5, 696.-704.lpp. ISSN 1392-3730. e-ISSN 1822-3605. Pieejams: doi:10.3846/13923730.2013.799091

Publikācijas valoda
English (en)
RTU Zinātniskā bibliotēka.
E-pasts: uzzinas@rtu.lv; Tālr: +371 28399196