Thermoelastic analysis of FGM hollow cylinder for variable parameters and temperature distributions using FEM

This paper presents, numerical study of stress field in functionally graded material (FGM) hollow cylinder by using finite element method (FEM). The FGM cylinder is subjected to internal pressure and uniform heat generation. Thermoelastic material properties of FGM cylinder are assumed to vary along...

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Main Authors: Sharma Dinkar, Kaur Ramandeep
Format: Article
Language:English
Published: De Gruyter 2020-05-01
Series:Nonlinear Engineering
Subjects:
Online Access:https://doi.org/10.1515/nleng-2020-0013
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author Sharma Dinkar
Kaur Ramandeep
author_facet Sharma Dinkar
Kaur Ramandeep
author_sort Sharma Dinkar
collection DOAJ
description This paper presents, numerical study of stress field in functionally graded material (FGM) hollow cylinder by using finite element method (FEM). The FGM cylinder is subjected to internal pressure and uniform heat generation. Thermoelastic material properties of FGM cylinder are assumed to vary along radius of cylinder as an exponential function of radius. The governing differential equation is solved numerically by FEM for isotropic and anistropic hollow cylinder. Additionally, the effect of material gradient index (β) on normalized radial stresses, normalized circumferential stress and normalized axial stress are evaluated and shown graphically. The behaviour of stress versus normalized radius of cylinder is plotted for different values of Poisson’s ratio and temperature. The graphical results shown that stress field in FGM cylinder is influenced by some of above mentioned parameters.
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spelling doaj.art-4fda65ce6df94118aa1b66efef429aab2022-12-21T21:30:57ZengDe GruyterNonlinear Engineering2192-80102192-80292020-05-019125626410.1515/nleng-2020-0013nleng-2020-0013Thermoelastic analysis of FGM hollow cylinder for variable parameters and temperature distributions using FEMSharma Dinkar0Kaur Ramandeep1Department of Mathematics, Lyallpur Khalsa College, Jalandhar-144001, Punjab, IndiaDepartment of Mathematics, I.K.G. Punjab Technical University, Jalandhar-144603, Punjab, IndiaThis paper presents, numerical study of stress field in functionally graded material (FGM) hollow cylinder by using finite element method (FEM). The FGM cylinder is subjected to internal pressure and uniform heat generation. Thermoelastic material properties of FGM cylinder are assumed to vary along radius of cylinder as an exponential function of radius. The governing differential equation is solved numerically by FEM for isotropic and anistropic hollow cylinder. Additionally, the effect of material gradient index (β) on normalized radial stresses, normalized circumferential stress and normalized axial stress are evaluated and shown graphically. The behaviour of stress versus normalized radius of cylinder is plotted for different values of Poisson’s ratio and temperature. The graphical results shown that stress field in FGM cylinder is influenced by some of above mentioned parameters.https://doi.org/10.1515/nleng-2020-0013fgmcylinderfemthermo-mechanical parameters
spellingShingle Sharma Dinkar
Kaur Ramandeep
Thermoelastic analysis of FGM hollow cylinder for variable parameters and temperature distributions using FEM
Nonlinear Engineering
fgm
cylinder
fem
thermo-mechanical parameters
title Thermoelastic analysis of FGM hollow cylinder for variable parameters and temperature distributions using FEM
title_full Thermoelastic analysis of FGM hollow cylinder for variable parameters and temperature distributions using FEM
title_fullStr Thermoelastic analysis of FGM hollow cylinder for variable parameters and temperature distributions using FEM
title_full_unstemmed Thermoelastic analysis of FGM hollow cylinder for variable parameters and temperature distributions using FEM
title_short Thermoelastic analysis of FGM hollow cylinder for variable parameters and temperature distributions using FEM
title_sort thermoelastic analysis of fgm hollow cylinder for variable parameters and temperature distributions using fem
topic fgm
cylinder
fem
thermo-mechanical parameters
url https://doi.org/10.1515/nleng-2020-0013
work_keys_str_mv AT sharmadinkar thermoelasticanalysisoffgmhollowcylinderforvariableparametersandtemperaturedistributionsusingfem
AT kaurramandeep thermoelasticanalysisoffgmhollowcylinderforvariableparametersandtemperaturedistributionsusingfem