期刊论文详细信息
International Journal of Mathematical, Engineering and Management Sciences
Optimal Mass Design of 25 Bars Truss with Loading Conditions on Five Node Elements
Okpwe Mbarga Richard1  Lezin Seba Minsili1  Etoua Remy Magloire2  Koumbe Mbock2 
[1] Department of Civil Engineering, National Advanced School of Engineering, Yaounde, P.O. Box 8390, Cameroon;Department of Mathematics and Physics, National Advanced School of Engineering, Yaounde, P.O. Box 8390, Cameroon;
关键词: Linear elastic model;    Variational problem;    Structural optimization;    Interior point method;    Trusses;   
DOI  :  10.33889/IJMEMS.2019.4.1-001
来源: DOAJ
【 摘 要 】

The optimal design of a twenty-five bar space truss commonly involves multiple loading conditions acting on 4 node elements in the linear elastic model. In this paper, we describe the behavior of the truss system with our experimental loading conditions on five node elements subject to minimum displacement and stresses that are used to formulate the constrained nonlinear optimization problem. Numerical computations are developed with the objective of mass minimization and the best structural design is selected by applying the interior point method with the guidance of Matlab Optimization Toolbox. Our numerical results show the optimal values of cross-sectional areas, material densities, and internal forces which satisfy the minimum weight design. These results provide the appropriate mass to the experimental data and allow substantial changes in size, shape, and topology.

【 授权许可】

Unknown   

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