Multiobjective Geometric Analysis of Stiffened Plates under ‎Bending through Constructal Design Method

Constructal design, finite element method and exhaustive search are applied to analyze different arrangements of steel plates with rectangular or trapezoidal stiffeners. As performance parameters, the maximum deflection and maximum von Mises stress are considered. A non-stiffened plate adopted as re...

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Bibliographic Details
Main Authors: Vinícius Torres Pinto, Luiz Alberto Oliveira Rocha, Cristiano Fragassa, Elizaldo Domingues dos Santos, Liércio André Isoldi
Format: Article
Language:English
Published: Shahid Chamran University of Ahvaz 2020-12-01
Series:Journal of Applied and Computational Mechanics
Subjects:
Online Access:https://jacm.scu.ac.ir/article_16110_a9bda46e28815f999acfb017984e0765.pdf
Description
Summary:Constructal design, finite element method and exhaustive search are applied to analyze different arrangements of steel plates with rectangular or trapezoidal stiffeners. As performance parameters, the maximum deflection and maximum von Mises stress are considered. A non-stiffened plate adopted as reference is studied together with 25 plates with rectangular stiffeners and 25 plates with trapezoidal stiffeners. The results show that trapezoidal stiffeners are more effective in minimizing the maximum deflection in comparison with rectangular stiffeners. However, regarding the minimization of stress, the rectangular stiffeners normally present better performance. When both performance parameters are concomitantly considered, a slight advantage of 4.70% for rectangular geometry is identified.
ISSN:2383-4536
2383-4536