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Optimum stacking sequence of composite laminates for maximum strength SCIE SCOPUS

Title
Optimum stacking sequence of composite laminates for maximum strength
Authors
Song, SRHwang, WPark, HCHan, KS
Date Issued
1995-05
Publisher
PLENUM PUBL CORP
Abstract
A method is presented for maximum strength optimum design of symmetric composite laminates subjected to in-plane and transverse loadings. The finite element method based on shear deformation theory is used for the analysis of composite laminates. Ply orientation angles are chosen as design variables. The quadratic failure criterion which is meant to predict fracture, is used as an object function for optimum stacking sequence design of a laminated plate. The Broydon-Fletcher-Goldfarb-Shanno optimization technique is employed to solve the optimization problem effectively. Numerical results are given for various loading conditions, boundary conditions, and aspect ratios. The results show that the quadratic failure criterion such as Tsai-Hill theory is effective for the optimum structural design of composite laminates.
Keywords
LAYER THICKNESS; OPTIMAL-DESIGN; PLATES; OPTIMIZATION; CRITERION; ANGLE
URI
https://oasis.postech.ac.kr/handle/2014.oak/33008
DOI
10.1007/BF00615644
ISSN
0191-5665
Article Type
Article
Citation
MECHANICS OF COMPOSITE MATERIALS, vol. 31, no. 3, page. 290 - 300, 1995-05
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박현철PARK, HYUN CHUL
엔지니어링 대학원
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