On a generalized laminate theory with application to bending, vibration, and delamination buckling in composite laminates

In this study, a computational model for accurate analysis of composite laminates and laminates with including delaminated interfaces is developed. An accurate prediction of stress distributions, including interlaminar stresses, is obtained by using the Generalized Laminate Plate Theory of Reddy in...

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Bibliographic Details
Main Author: Barbero, Ever J.
Other Authors: Engineering Mechanics
Format: Others
Language:en_US
Published: Virginia Polytechnic Institute and State University 2015
Subjects:
Online Access:http://hdl.handle.net/10919/54484
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spelling ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-544842020-12-23T05:32:28Z On a generalized laminate theory with application to bending, vibration, and delamination buckling in composite laminates Barbero, Ever J. Engineering Mechanics LD5655.V856 1989.B363 Laminated materials -- Research Composite materials -- Research In this study, a computational model for accurate analysis of composite laminates and laminates with including delaminated interfaces is developed. An accurate prediction of stress distributions, including interlaminar stresses, is obtained by using the Generalized Laminate Plate Theory of Reddy in which layer-wise linear approximation of the displacements through the thickness is used. Analytical, as well as finite-element solutions of the theory, are developed for bending and vibrations of laminated composite plates for the linear theory. Geometrical nonlinearity, including buckling and post-buckling are included and used to perform stress analysis of laminated plates. A general two-dimensional theory of laminated cylindrical shells is also developed in this study. Geometrical nonlinearity and transverse compressibility are included. Delaminations between layers of composite plates are modeled by jump discontinuity conditions at the interfaces. The theory includes multiple delaminations through the thickness. Geometric nonlinearity is included to capture layer buckling. The strain energy release rate distribution along the boundary of delaminations is computed by a novel algorithm. The computational models presented herein are accurate for global behavior and particularly appropriate for the study of local effects. Ph. D. 2015-07-10T20:00:13Z 2015-07-10T20:00:13Z 1989 Dissertation Text http://hdl.handle.net/10919/54484 en_US OCLC# 21052710 In Copyright http://rightsstatements.org/vocab/InC/1.0/ xvi, 291 leaves application/pdf application/pdf Virginia Polytechnic Institute and State University
collection NDLTD
language en_US
format Others
sources NDLTD
topic LD5655.V856 1989.B363
Laminated materials -- Research
Composite materials -- Research
spellingShingle LD5655.V856 1989.B363
Laminated materials -- Research
Composite materials -- Research
Barbero, Ever J.
On a generalized laminate theory with application to bending, vibration, and delamination buckling in composite laminates
description In this study, a computational model for accurate analysis of composite laminates and laminates with including delaminated interfaces is developed. An accurate prediction of stress distributions, including interlaminar stresses, is obtained by using the Generalized Laminate Plate Theory of Reddy in which layer-wise linear approximation of the displacements through the thickness is used. Analytical, as well as finite-element solutions of the theory, are developed for bending and vibrations of laminated composite plates for the linear theory. Geometrical nonlinearity, including buckling and post-buckling are included and used to perform stress analysis of laminated plates. A general two-dimensional theory of laminated cylindrical shells is also developed in this study. Geometrical nonlinearity and transverse compressibility are included. Delaminations between layers of composite plates are modeled by jump discontinuity conditions at the interfaces. The theory includes multiple delaminations through the thickness. Geometric nonlinearity is included to capture layer buckling. The strain energy release rate distribution along the boundary of delaminations is computed by a novel algorithm. The computational models presented herein are accurate for global behavior and particularly appropriate for the study of local effects. === Ph. D.
author2 Engineering Mechanics
author_facet Engineering Mechanics
Barbero, Ever J.
author Barbero, Ever J.
author_sort Barbero, Ever J.
title On a generalized laminate theory with application to bending, vibration, and delamination buckling in composite laminates
title_short On a generalized laminate theory with application to bending, vibration, and delamination buckling in composite laminates
title_full On a generalized laminate theory with application to bending, vibration, and delamination buckling in composite laminates
title_fullStr On a generalized laminate theory with application to bending, vibration, and delamination buckling in composite laminates
title_full_unstemmed On a generalized laminate theory with application to bending, vibration, and delamination buckling in composite laminates
title_sort on a generalized laminate theory with application to bending, vibration, and delamination buckling in composite laminates
publisher Virginia Polytechnic Institute and State University
publishDate 2015
url http://hdl.handle.net/10919/54484
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