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Vibration and lateral buckling optimisation of thin-walled laminated composite channel-section beams (CROSBI ID 225419)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Nguyen, Hoang X. ; Lee, Jaehong ; Vo, Thuc, P. ; Lanc, Domagoj Vibration and lateral buckling optimisation of thin-walled laminated composite channel-section beams // Composite structures, 143 (2016), 84-92. doi: 10.1016/j.compstruct.2016.02.011

Podaci o odgovornosti

Nguyen, Hoang X. ; Lee, Jaehong ; Vo, Thuc, P. ; Lanc, Domagoj

engleski

Vibration and lateral buckling optimisation of thin-walled laminated composite channel-section beams

This study presents vibration and lateral buckling optimisation of thin-walled laminated composite beams with channel sections. While flanges’ width, web’s height, and fibre orientation are simultaneously treated as design variables, the objective function involves maximising the fundamental frequency and critical buckling moment. Based on the classical beam theory, the beam element with seven degrees of freedom at each node is developed to solve the problem. Micro Genetic Algorithm (micro-GA) is then employed as an optimisation tool to obtain optimal results. A number of composite channel-section beams with different types of boundary conditions, span- to-height ratios, and lay-up schemes are investigated for the optimum design. The outcomes reveal that geometric parameters severely govern the optimal solution rather than the fibre orientation and it is considerably effective to use micro-GA compared with regular GA in term of optimal solution and convergence rate.

Thin-walled composite beams ; Micro Genetic Algorithm ; Finite elemen

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Podaci o izdanju

143

2016.

84-92

objavljeno

0263-8223

10.1016/j.compstruct.2016.02.011

Povezanost rada

Građevinarstvo, Strojarstvo, Temeljne tehničke znanosti

Poveznice
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