Large strain creep analysis of composite thick-walled anisotropic cylinders

Creep analysis of a thick-walled composite anisotropic cylinder under internal pressure and considering large strains is presented. Using a threshold creep law for composite materials, expressions for stresses, strains, and strain rates are derived for several anisotropic cases. Numerical results, p...

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Main Author: Vinod Arya
Format: Article
Language:English
Published: Universiti Malaysia Pahang Publishing 2023-03-01
Series:Journal of Mechanical Engineering and Sciences
Subjects:
Online Access:https://journal.ump.edu.my/jmes/article/view/8823
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author Vinod Arya
author_facet Vinod Arya
author_sort Vinod Arya
collection DOAJ
description Creep analysis of a thick-walled composite anisotropic cylinder under internal pressure and considering large strains is presented. Using a threshold creep law for composite materials, expressions for stresses, strains, and strain rates are derived for several anisotropic cases. Numerical results, presented through several graphs and tables, depict the effect of anisotropy on the stress, strain, and strain rate distributions. Since for a specific type of material anisotropy described in the paper, these quantities are found to have the lowest values at the inner radius (the potential location of cylinder failure). It is concluded that by employing such an anisotropic material for the design of a thick-walled cylinder a longer service life for the cylinder may be achieved.
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spelling doaj.art-e0f57999597944f3af442ad15f0c021c2023-09-03T13:57:49ZengUniversiti Malaysia Pahang PublishingJournal of Mechanical Engineering and Sciences2289-46592231-83802023-03-011719395940910.15282/jmes.17.1.2023.9.0743Large strain creep analysis of composite thick-walled anisotropic cylinders Vinod Arya 0University of North Texas at Dallas, Dallas, Texas 75241, USACreep analysis of a thick-walled composite anisotropic cylinder under internal pressure and considering large strains is presented. Using a threshold creep law for composite materials, expressions for stresses, strains, and strain rates are derived for several anisotropic cases. Numerical results, presented through several graphs and tables, depict the effect of anisotropy on the stress, strain, and strain rate distributions. Since for a specific type of material anisotropy described in the paper, these quantities are found to have the lowest values at the inner radius (the potential location of cylinder failure). It is concluded that by employing such an anisotropic material for the design of a thick-walled cylinder a longer service life for the cylinder may be achieved.https://journal.ump.edu.my/jmes/article/view/8823compositeslarge strainscreepthick-walled cylindersanisotropy
spellingShingle Vinod Arya
Large strain creep analysis of composite thick-walled anisotropic cylinders
Journal of Mechanical Engineering and Sciences
composites
large strains
creep
thick-walled cylinders
anisotropy
title Large strain creep analysis of composite thick-walled anisotropic cylinders
title_full Large strain creep analysis of composite thick-walled anisotropic cylinders
title_fullStr Large strain creep analysis of composite thick-walled anisotropic cylinders
title_full_unstemmed Large strain creep analysis of composite thick-walled anisotropic cylinders
title_short Large strain creep analysis of composite thick-walled anisotropic cylinders
title_sort large strain creep analysis of composite thick walled anisotropic cylinders
topic composites
large strains
creep
thick-walled cylinders
anisotropy
url https://journal.ump.edu.my/jmes/article/view/8823
work_keys_str_mv AT vinodarya largestraincreepanalysisofcompositethickwalledanisotropiccylinders