Title of article :
optimum design of nano-scaled beam using the social spider optimization (sso) algorithm
Author/Authors :
uzun, büşra uludağ university - faculty of engineering - department of civil engineering, bursa, turkey , civalek, omer china medical university - research center for interneural computing, taiwan , aydogdu, ibrahim akdeniz university - faculty of engineering - department of civil engineering, antalya, turkey
From page :
1348
To page :
1361
Abstract :
in this research study, the optimum cross-sectional dimensions of nanoscale beam elements are investigated under different load conditions. euler-bernoulli beam model based on nonlocal elasticity theory is utilized for the analysis of the beam. two types of nanoscaled beams are modeled; carbon nanotubes (cnts) and boron nitride nanotubes (bnnts). the novel metaheuristic based optimization algorithm called social spider optimization (sso) algorithm is employed to find the beam designs with the objective of minimizing the cross-sectional area. furthermore, the obtained optimum cross-sectional dimensions, critical stress and displacement values of the beams are compared according to the material type, beam length, and load conditions.
Keywords :
nano beams , deflection analysis , social spider optimization
Journal title :
Journal of Applied and Computational Mechanics
Journal title :
Journal of Applied and Computational Mechanics
Record number :
2652911
Link To Document :
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