Parametric study of low velocity impact analysis on composite tubes

As explicit finite element codes improve and advanced material models become available, such tools find more widespread application in many industries. This thesis reports the research study of the low velocity impact simulation on carbon reinforced polymer epoxy composite tube using nonlinear expli...

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Main Author: Chib, Amit
Other Authors: Soschinske, Kurt A.
Format: Others
Language:en_US
Published: 2006
Subjects:
Online Access:http://hdl.handle.net/10057/267
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spelling ndltd-WICHITA-oai-soar.wichita.edu-10057-2672013-04-19T20:59:45ZParametric study of low velocity impact analysis on composite tubesChib, AmitComposite materialsElectronic dissertationsAs explicit finite element codes improve and advanced material models become available, such tools find more widespread application in many industries. This thesis reports the research study of the low velocity impact simulation on carbon reinforced polymer epoxy composite tube using nonlinear explicit finite element software LS-Dyna. Validation of the experimental results is done with the proposed finite element model in LS-Dyna. A finite element model is implemented on quadratic stress based global failure progressive damage formulation to model the response and damage progression through carbon epoxy tube. Belytschko-Tsay shell quadrilateral shell element is used to model the eight layer unidirectional lamina’s composite cylinder with [30/-30/90/90/30/-30/90/90] lay up configuration. Also parametric studies were done to find their effects on the low velocity impact damage process. Comparisons of the finite element simulations to the experimental data include degradation, as well as the time history responses. Results indicate that the general shapes of the force versus time curve histories are correlate well with the experimental test data results. Parametric study results are also co related with the results in the published literature and papers and good agreement was found between the simulation results and the published data. Parameters such as impactor velocity, lay-up configurations, boundary conditions on composite tube, and different impactor velocity were considered which affect the impact damage process. Thus this study work demonstrates the accuracy and effectiveness of finite element simulation of low velocity impact test on composite cylinder with LS-Dyna and predicting good simulation results with published data for various parameters.Thesis (M.S.)--Wichita State University, Dept. of Mechanical Engineering."May 2006."Soschinske, Kurt A.2006-11-23T04:36:54Z2006-11-23T04:36:54Z20062006-05Thesis640747 bytesapplication/pdft06004http://hdl.handle.net/10057/26773722785en_USAccess restricted to WSU students, faculty and staffCopyright Amit Chib, 2006. All rights reserved.
collection NDLTD
language en_US
format Others
sources NDLTD
topic Composite materials
Electronic dissertations
spellingShingle Composite materials
Electronic dissertations
Chib, Amit
Parametric study of low velocity impact analysis on composite tubes
description As explicit finite element codes improve and advanced material models become available, such tools find more widespread application in many industries. This thesis reports the research study of the low velocity impact simulation on carbon reinforced polymer epoxy composite tube using nonlinear explicit finite element software LS-Dyna. Validation of the experimental results is done with the proposed finite element model in LS-Dyna. A finite element model is implemented on quadratic stress based global failure progressive damage formulation to model the response and damage progression through carbon epoxy tube. Belytschko-Tsay shell quadrilateral shell element is used to model the eight layer unidirectional lamina’s composite cylinder with [30/-30/90/90/30/-30/90/90] lay up configuration. Also parametric studies were done to find their effects on the low velocity impact damage process. Comparisons of the finite element simulations to the experimental data include degradation, as well as the time history responses. Results indicate that the general shapes of the force versus time curve histories are correlate well with the experimental test data results. Parametric study results are also co related with the results in the published literature and papers and good agreement was found between the simulation results and the published data. Parameters such as impactor velocity, lay-up configurations, boundary conditions on composite tube, and different impactor velocity were considered which affect the impact damage process. Thus this study work demonstrates the accuracy and effectiveness of finite element simulation of low velocity impact test on composite cylinder with LS-Dyna and predicting good simulation results with published data for various parameters. === Thesis (M.S.)--Wichita State University, Dept. of Mechanical Engineering. === "May 2006."
author2 Soschinske, Kurt A.
author_facet Soschinske, Kurt A.
Chib, Amit
author Chib, Amit
author_sort Chib, Amit
title Parametric study of low velocity impact analysis on composite tubes
title_short Parametric study of low velocity impact analysis on composite tubes
title_full Parametric study of low velocity impact analysis on composite tubes
title_fullStr Parametric study of low velocity impact analysis on composite tubes
title_full_unstemmed Parametric study of low velocity impact analysis on composite tubes
title_sort parametric study of low velocity impact analysis on composite tubes
publishDate 2006
url http://hdl.handle.net/10057/267
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