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Manufacturing Fiber-Reinforced Polymer Composite Using RTM Process: An Analytical Approach | Scientific.Net
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Barbosa de Lima" /> <meta name="citation_reference" content="L.H. Woodhead: Handbook of polymer composites for engineers (Publishing Limited, Cambridge 1994)." /> <meta name="citation_reference" content="I.M. Daniel and O. Ishai: Engineering Mechanics of Composite Materials (Oxford University Press, USA 1994)." /> <meta name="citation_reference" content="F. Levy Neto and L.C. Pardini: Structural Composites: Science and Technology (Edgard Blücher, São Paulo 2006). (In Portuguese)." /> <meta name="citation_reference" content="citation_title=Introduction to liquid composite moulding; citation_author=C D Rudd; citation_author=A C Long; citation_author=K N Kendall; citation_author=C G E Mangin; citation_publisher=Elsevier; citation_publication_date=1997; citation_pages=1-37" /> <meta name="citation_reference" content="citation_title=Resin Transfer Molding Process: Fundamentals, Numerical Computation and Experiments; citation_author=Felipe Ferreira Luz; citation_author=Sandro Campos Amico; citation_author=Jeferson Ávila Souza; citation_author=Enivaldo Santos Barbosa; citation_author=Antonio Gilson Barbosa de Lima; citation_publisher=Springer Berlin Heidelberg; citation_publication_date=2012/6/26; citation_pages=121-151" /> <meta name="citation_reference" content="I. R. Oliveira, S. C. Amico, F. F. Luz, J. A. Souza, R. Barcella and A. G. B. Lima: Def. Diff. 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Aires; citation_author=Aluízio Freire da Silva Junior; citation_author=Wilton Pereira da Silva; citation_author=Josivanda Palmeira Gomes; citation_author=Post-Graduation Program in Process Engineering, PPGEP, Federal University of Campina Grande, UFCG - Campina Grande, State of Paraiba, Brazil; citation_author=Post-Graduation Program in Process Engineering, PPGEP, Federal University of Campina Grande, UFCG - Campina Grande, State of Paraiba, Brazil; citation_author=Post-Graduation Program in Process Engineering, PPGEP, Federal University of Campina Grande, UFCG - Campina Grande, State of Paraiba, Brazil; citation_author=Department of Physics, Federal University of Campina Grande – UFCG - Campina Grande, Paraiba, Brazil; citation_author=Department of Agricultural Engineering, Federal University of Campina Grande - UFCG - Campina Grande, State of Paraiba, Brazil; citation_volume=10; citation_issue=10; citation_publication_date=2016/10/20; citation_pages=1449-1454; citation_doi=10.21475/ajcs.2016.10.10.p7455" /> <meta name="person" content="M.J. do Nascimento Santos, A.G. Barbosa de Lima" /> <meta name="description" content="The Resin Transfer Molding process (RTM) has been widely used for manufacturing of high performance components in aerospace and automotive industries. It is an economical and faster method when compared to open molding process because it allows the molding of complex parts with constant thickness, dimensional precision, good surface finishing and an excellent control of mechanical properties. In this sense, this work aims to study theoretically the manufacture process of polymeric composites reinforced with fibers via resin transfer molding. The governing equations of conservation of mass and momentum, and Darcy's law are presented, and the exact solution of the problems is obtained via method of separation of variables. Predicted results of the flow front and the pressure fields of the resin inside the model during the injection process are presented, compared with experimental data and analyzed. It was verified a good agreement between the results." /> <meta name="keywords" content="Experiment, Polymer Composite, Rectilinear Infiltration, RTM, Simulation" /> <meta name="copyright" content="2017 Trans Tech Publications Ltd. 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class="page-name-block-text">Manufacturing Fiber-Reinforced Polymer Composite Using RTM Process: An Analytical Approach</h1> </div> <div class="paper-statistics"> <div class="loading"> <i class="inline-icon download-and-visitor-statistics-icon"></i> <span class="normal-text" id="paperDownloadsAndVisitorsCount"></span> </div> </div> <div class="clearfix"></div> <div class="page-paper-title"> <div class="preview-block"> <img alt="Article Preview" width="128" height="180" src="/DDF.380.60/thumbnail.gif"> <div id="preview-button" data-url-preview-log="/Paper/PreviewImageLog?paperId=530993"> <i class="inline-icon preview-icon"></i> </div> <!--Modal window for article preview--> <div id="paper-preview-modal" class="modal fade"> <div class="modal-dialog" role="document"> <div class="popup-page-name underline-begin"> <div class="page-name-block-text">Article Preview</div> </div> <img alt="Article Preview" class="preview-image lazyload" data-src="/DDF.380.60/preview.gif"> <a data-dismiss="modal" title="Close" class="inline-icon close-icon"></a> </div> </div> <!--End modal--> </div> <div class="abstract-block-description"> <h3 class="page-paper-first-header">Abstract:</h3> <p class="normal-text"> The Resin Transfer Molding process (RTM) has been widely used for manufacturing of high performance components in aerospace and automotive industries. It is an economical and faster method when compared to open molding process because it allows the molding of complex parts with constant thickness, dimensional precision, good surface finishing and an excellent control of mechanical properties. In this sense, this work aims to study theoretically the manufacture process of polymeric composites reinforced with fibers via resin transfer molding. The governing equations of conservation of mass and momentum, and Darcy's law are presented, and the exact solution of the problems is obtained via method of separation of variables. Predicted results of the flow front and the pressure fields of the resin inside the model during the injection process are presented, compared with experimental data and analyzed. 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Woodhead: Handbook of polymer composites for engineers (Publishing Limited, Cambridge 1994). </p> <p><a href="https://scholar.google.com/scholar?q=L.H.%20Woodhead%3A%20Handbook%20of%20polymer%20composites%20for%20engineers%20%28Publishing%20Limited%2C%20Cambridge%201994%29.">Google Scholar</a></p> </div> <div class="reference-text volume-info-text"> <p> <span>[2]</span> I.M. Daniel and O. Ishai: Engineering Mechanics of Composite Materials (Oxford University Press, USA 1994). </p> <p><a href="https://scholar.google.com/scholar?q=I.M.%20Daniel%20and%20O.%20Ishai%3A%20Engineering%20Mechanics%20of%20Composite%20Materials%20%28Oxford%20University%20Press%2C%20USA%201994%29.">Google Scholar</a></p> </div> <div class="reference-text volume-info-text"> <p> <span>[3]</span> F. Levy Neto and L.C. Pardini: Structural Composites: Science and Technology (Edgard Blücher, São Paulo 2006). 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