Fiber-matrix Contact Stress Analysis for Elastic 2D Composite Solids

AbstractThis paper presents a finite element formulation for the analysis of two dimensional reinforced elastic solids developing both small and large deformations without increasing the number of degrees of freedom. Fibers are spread inside the domain without the necessity of node coincidence. Cont...

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Main Authors: Rodrigo Ribeiro Paccola, Maria do Socorro Martins Sampaio, Humberto Breves Coda
Format: Article
Language:English
Published: Marcílio Alves
Series:Latin American Journal of Solids and Structures
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252015000300583&lng=en&tlng=en
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author Rodrigo Ribeiro Paccola
Maria do Socorro Martins Sampaio
Humberto Breves Coda
author_facet Rodrigo Ribeiro Paccola
Maria do Socorro Martins Sampaio
Humberto Breves Coda
author_sort Rodrigo Ribeiro Paccola
collection DOAJ
description AbstractThis paper presents a finite element formulation for the analysis of two dimensional reinforced elastic solids developing both small and large deformations without increasing the number of degrees of freedom. Fibers are spread inside the domain without the necessity of node coincidence. Contact stress analysis is carried out for both straight and curved elements via two different strategies. The first employs consistent differential relations and the second adopts a simple average calculation. The development of all equations is described along the paper. Numerical examples are employed to demonstrate the behavior of the proposed methodology and to compare the contact stress results for both calculations.
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spelling doaj.art-3ff40b15c89a4880b962ff446c4b71b42022-12-21T17:58:34ZengMarcílio AlvesLatin American Journal of Solids and Structures1679-782512358361110.1590/1679-78251282S1679-78252015000300583Fiber-matrix Contact Stress Analysis for Elastic 2D Composite SolidsRodrigo Ribeiro PaccolaMaria do Socorro Martins SampaioHumberto Breves CodaAbstractThis paper presents a finite element formulation for the analysis of two dimensional reinforced elastic solids developing both small and large deformations without increasing the number of degrees of freedom. Fibers are spread inside the domain without the necessity of node coincidence. Contact stress analysis is carried out for both straight and curved elements via two different strategies. The first employs consistent differential relations and the second adopts a simple average calculation. The development of all equations is described along the paper. Numerical examples are employed to demonstrate the behavior of the proposed methodology and to compare the contact stress results for both calculations.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252015000300583&lng=en&tlng=enFinite element methodgeometrical nonlinearityfiber-reinforced solidscontact stress analysis
spellingShingle Rodrigo Ribeiro Paccola
Maria do Socorro Martins Sampaio
Humberto Breves Coda
Fiber-matrix Contact Stress Analysis for Elastic 2D Composite Solids
Latin American Journal of Solids and Structures
Finite element method
geometrical nonlinearity
fiber-reinforced solids
contact stress analysis
title Fiber-matrix Contact Stress Analysis for Elastic 2D Composite Solids
title_full Fiber-matrix Contact Stress Analysis for Elastic 2D Composite Solids
title_fullStr Fiber-matrix Contact Stress Analysis for Elastic 2D Composite Solids
title_full_unstemmed Fiber-matrix Contact Stress Analysis for Elastic 2D Composite Solids
title_short Fiber-matrix Contact Stress Analysis for Elastic 2D Composite Solids
title_sort fiber matrix contact stress analysis for elastic 2d composite solids
topic Finite element method
geometrical nonlinearity
fiber-reinforced solids
contact stress analysis
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252015000300583&lng=en&tlng=en
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AT mariadosocorromartinssampaio fibermatrixcontactstressanalysisforelastic2dcompositesolids
AT humbertobrevescoda fibermatrixcontactstressanalysisforelastic2dcompositesolids