Exact Analysis for Composite Laminates under Extension and Bending

博士 === 國立成功大學 === 土木工程學系 === 105 === This work used the Hamiltonian state space approach for the exact analysis of displacement and stress fields in the multilayered laminated composite plates of elastic materials under extension and bending. Without grouping the field variables in an ad hoc process...

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Main Authors: Wen-YuLiang, 梁文宇
Other Authors: Jiann-Quo Tarn
Format: Others
Language:en_US
Published: 2016
Online Access:http://ndltd.ncl.edu.tw/handle/tj6uwt
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spelling ndltd-TW-105NCKU50150032019-05-15T23:10:11Z http://ndltd.ncl.edu.tw/handle/tj6uwt Exact Analysis for Composite Laminates under Extension and Bending 複合層板拉伸與彎曲之精確解析 Wen-YuLiang 梁文宇 博士 國立成功大學 土木工程學系 105 This work used the Hamiltonian state space approach for the exact analysis of displacement and stress fields in the multilayered laminated composite plates of elastic materials under extension and bending. Without grouping the field variables in an ad hoc process, the basic equations of elasticity in the Cartesian coordinates are formulated into a state equation and an output equation which are composed of the primary variables in terms of the generalized displacements and the conjugate generalized tractions by means of Legendre’s transformation from the Lagrangian system. The present approach is effective and systematic. The solution process involves an eigenfunction expansion technique, transfer matrix method, and symplectic orthogonality between the eigenvectors of a Hamiltonian matrix, and all the basic equations of anisotropic elasticity, the traction-free conditions on the bounding planes of the rectangular section, the boundary conditions at the end sections where the external loadings are applied, and the interfacial continuity conditions in the multilayered laminated systems, are satisfied exactly, regardless of the number of layers. Comparisons of the stress fields between the proposed analytical and finite element solutions show good agreement. The present approach is important with regard to studying the free-edge effects, in addition to obtaining solutions which serve as useful benchmarks for numerical modeling and material characterization of composite laminates. Jiann-Quo Tarn Shen-Haw Ju 譚建國 朱聖浩 2016 學位論文 ; thesis 100 en_US
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description 博士 === 國立成功大學 === 土木工程學系 === 105 === This work used the Hamiltonian state space approach for the exact analysis of displacement and stress fields in the multilayered laminated composite plates of elastic materials under extension and bending. Without grouping the field variables in an ad hoc process, the basic equations of elasticity in the Cartesian coordinates are formulated into a state equation and an output equation which are composed of the primary variables in terms of the generalized displacements and the conjugate generalized tractions by means of Legendre’s transformation from the Lagrangian system. The present approach is effective and systematic. The solution process involves an eigenfunction expansion technique, transfer matrix method, and symplectic orthogonality between the eigenvectors of a Hamiltonian matrix, and all the basic equations of anisotropic elasticity, the traction-free conditions on the bounding planes of the rectangular section, the boundary conditions at the end sections where the external loadings are applied, and the interfacial continuity conditions in the multilayered laminated systems, are satisfied exactly, regardless of the number of layers. Comparisons of the stress fields between the proposed analytical and finite element solutions show good agreement. The present approach is important with regard to studying the free-edge effects, in addition to obtaining solutions which serve as useful benchmarks for numerical modeling and material characterization of composite laminates.
author2 Jiann-Quo Tarn
author_facet Jiann-Quo Tarn
Wen-YuLiang
梁文宇
author Wen-YuLiang
梁文宇
spellingShingle Wen-YuLiang
梁文宇
Exact Analysis for Composite Laminates under Extension and Bending
author_sort Wen-YuLiang
title Exact Analysis for Composite Laminates under Extension and Bending
title_short Exact Analysis for Composite Laminates under Extension and Bending
title_full Exact Analysis for Composite Laminates under Extension and Bending
title_fullStr Exact Analysis for Composite Laminates under Extension and Bending
title_full_unstemmed Exact Analysis for Composite Laminates under Extension and Bending
title_sort exact analysis for composite laminates under extension and bending
publishDate 2016
url http://ndltd.ncl.edu.tw/handle/tj6uwt
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