OPTIMAL DESIGN OF MODERATE THICK LAMINATED COMPOSITE PLATES UNDER STATIC CONSTRAINTS USING REAL CODING GENETIC ALGORITHM

The objective of the current research is to find an optimum design of hybrid laminated moderate thick composite plates with static constraint. The stacking sequence and ply angle is required for optimization to achieve minimum deflection for hybrid laminated composite plates consist of glass and ca...

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Main Authors: Majid H. Faidh-Allah, Musaddiq A. M. Kadem
Format: Article
Language:English
Published: University of Baghdad 2011-12-01
Series:Journal of Engineering
Subjects:
Online Access:https://joe.uobaghdad.edu.iq/index.php/main/article/view/3023
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author Majid H. Faidh-Allah
Musaddiq A. M. Kadem
author_facet Majid H. Faidh-Allah
Musaddiq A. M. Kadem
author_sort Majid H. Faidh-Allah
collection DOAJ
description The objective of the current research is to find an optimum design of hybrid laminated moderate thick composite plates with static constraint. The stacking sequence and ply angle is required for optimization to achieve minimum deflection for hybrid laminated composite plates consist of glass and carbon long fibers reinforcements that impeded in epoxy matrix with known plates dimension and loading. The analysis of plate is by adopting the first-order shear deformation theory and using Navier's solution with Genetic Algorithm to approach the current objective. A program written with MATLAB to find best stacking sequence and ply angles that give minimum deflection, and the results comparing with ANSYS.
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spelling doaj.art-b23256d83d8243f29ff3ad0ef096b3632024-01-19T19:43:21ZengUniversity of BaghdadJournal of Engineering1726-40732520-33392011-12-01170610.31026/j.eng.2011.06.24OPTIMAL DESIGN OF MODERATE THICK LAMINATED COMPOSITE PLATES UNDER STATIC CONSTRAINTS USING REAL CODING GENETIC ALGORITHMMajid H. Faidh-AllahMusaddiq A. M. Kadem The objective of the current research is to find an optimum design of hybrid laminated moderate thick composite plates with static constraint. The stacking sequence and ply angle is required for optimization to achieve minimum deflection for hybrid laminated composite plates consist of glass and carbon long fibers reinforcements that impeded in epoxy matrix with known plates dimension and loading. The analysis of plate is by adopting the first-order shear deformation theory and using Navier's solution with Genetic Algorithm to approach the current objective. A program written with MATLAB to find best stacking sequence and ply angles that give minimum deflection, and the results comparing with ANSYS. https://joe.uobaghdad.edu.iq/index.php/main/article/view/3023optimization, moderate thick plates, genetic algorithms, Navier's solution
spellingShingle Majid H. Faidh-Allah
Musaddiq A. M. Kadem
OPTIMAL DESIGN OF MODERATE THICK LAMINATED COMPOSITE PLATES UNDER STATIC CONSTRAINTS USING REAL CODING GENETIC ALGORITHM
Journal of Engineering
optimization, moderate thick plates, genetic algorithms, Navier's solution
title OPTIMAL DESIGN OF MODERATE THICK LAMINATED COMPOSITE PLATES UNDER STATIC CONSTRAINTS USING REAL CODING GENETIC ALGORITHM
title_full OPTIMAL DESIGN OF MODERATE THICK LAMINATED COMPOSITE PLATES UNDER STATIC CONSTRAINTS USING REAL CODING GENETIC ALGORITHM
title_fullStr OPTIMAL DESIGN OF MODERATE THICK LAMINATED COMPOSITE PLATES UNDER STATIC CONSTRAINTS USING REAL CODING GENETIC ALGORITHM
title_full_unstemmed OPTIMAL DESIGN OF MODERATE THICK LAMINATED COMPOSITE PLATES UNDER STATIC CONSTRAINTS USING REAL CODING GENETIC ALGORITHM
title_short OPTIMAL DESIGN OF MODERATE THICK LAMINATED COMPOSITE PLATES UNDER STATIC CONSTRAINTS USING REAL CODING GENETIC ALGORITHM
title_sort optimal design of moderate thick laminated composite plates under static constraints using real coding genetic algorithm
topic optimization, moderate thick plates, genetic algorithms, Navier's solution
url https://joe.uobaghdad.edu.iq/index.php/main/article/view/3023
work_keys_str_mv AT majidhfaidhallah optimaldesignofmoderatethicklaminatedcompositeplatesunderstaticconstraintsusingrealcodinggeneticalgorithm
AT musaddiqamkadem optimaldesignofmoderatethicklaminatedcompositeplatesunderstaticconstraintsusingrealcodinggeneticalgorithm