Thermo-elastic behavior of a thick-walled composite cylinder reinforced with functionally graded SWCNTs

In this article, thermo-elastic-behavior of a thick-walled cylinder made from a polystyrene nanocomposite reinforced with functionally graded (FG) single-walled carbon nanotubes (SWCNTs) was carried out in radial direction while subjected to a steady state thermal field. The SWCNTs were assumed alig...

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Main Authors: A. Ghorbanpour-Arani, V. Sadooghi, M. R. Mozdianfard, M. Mohammadimehr
Format: Article
Language:English
Published: Nanoscience and Nanotechnology Research Center, University of Kashan 2011-01-01
Series:Journal of Nanostructures
Subjects:
Online Access:http://jns.kashanu.ac.ir/article_5242_e575ceb0915ecc509ff14e55f0cbc5a2.pdf
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spelling doaj-b096b0cec1a444c4a503503dbf0d44022020-11-24T22:28:20ZengNanoscience and Nanotechnology Research Center, University of KashanJournal of Nanostructures2251-78712251-788X2011-01-0111273810.7508/jns.2011.01.0055242Thermo-elastic behavior of a thick-walled composite cylinder reinforced with functionally graded SWCNTsA. Ghorbanpour-Arani0V. Sadooghi1M. R. Mozdianfard2M. Mohammadimehr3Department of Mechanical Engineering, Faculty of Engineering, University of Kashan, Kashan, I. R. Iran , Institute of Nanoscience & Nanotechnology, University of Kashan, Kashan, I.R.Iran.Department of Mechanical Engineering, Faculty of Engineering, University of Kashan, Kashan, I. R. IranDepartment of Chemical Engineering, Faculty of Engineering, University of Kashan, Kashan, I. R. Iran.Department of Mechanical Engineering, Faculty of Engineering, University of Kashan, Kashan, I. R. IranIn this article, thermo-elastic-behavior of a thick-walled cylinder made from a polystyrene nanocomposite reinforced with functionally graded (FG) single-walled carbon nanotubes (SWCNTs) was carried out in radial direction while subjected to a steady state thermal field. The SWCNTs were assumed aligned, straight with infinite length and a uniform layout. Two types of variations in the volume fraction of SWCNTs were considered in the structure of the FG cylinder along the radius from inner to outer surface, namely: incrementally increasing (Inc Inc) and incrementally decreasing (Inc Dec). These are compared with uniformly distributed (UD) structure. Mori-Tanaka method was used for stress-strain analysis. Using equations of motion, stress-strain and their corresponding constitutive correlations of a polystyrene vessel, a second order ordinary differential equation was proposed based on the radial displacement which was solved in order to obtain the distribution of displacement and radial, circumferential and axial stresses. For constant temperatures at the inner and outer surfaces of the FG cylinder considered here, results in this work indicate that radial and circumferential stresses and displacement are lower for the Inc Inc FG cylinder, and the axial stresses are higher irrespective of the structure of the FG material.http://jns.kashanu.ac.ir/article_5242_e575ceb0915ecc509ff14e55f0cbc5a2.pdfStress analysisReinforced FG SWCNTsCompositeThick‐walled cylinder
collection DOAJ
language English
format Article
sources DOAJ
author A. Ghorbanpour-Arani
V. Sadooghi
M. R. Mozdianfard
M. Mohammadimehr
spellingShingle A. Ghorbanpour-Arani
V. Sadooghi
M. R. Mozdianfard
M. Mohammadimehr
Thermo-elastic behavior of a thick-walled composite cylinder reinforced with functionally graded SWCNTs
Journal of Nanostructures
Stress analysis
Reinforced FG SWCNTs
Composite
Thick‐walled cylinder
author_facet A. Ghorbanpour-Arani
V. Sadooghi
M. R. Mozdianfard
M. Mohammadimehr
author_sort A. Ghorbanpour-Arani
title Thermo-elastic behavior of a thick-walled composite cylinder reinforced with functionally graded SWCNTs
title_short Thermo-elastic behavior of a thick-walled composite cylinder reinforced with functionally graded SWCNTs
title_full Thermo-elastic behavior of a thick-walled composite cylinder reinforced with functionally graded SWCNTs
title_fullStr Thermo-elastic behavior of a thick-walled composite cylinder reinforced with functionally graded SWCNTs
title_full_unstemmed Thermo-elastic behavior of a thick-walled composite cylinder reinforced with functionally graded SWCNTs
title_sort thermo-elastic behavior of a thick-walled composite cylinder reinforced with functionally graded swcnts
publisher Nanoscience and Nanotechnology Research Center, University of Kashan
series Journal of Nanostructures
issn 2251-7871
2251-788X
publishDate 2011-01-01
description In this article, thermo-elastic-behavior of a thick-walled cylinder made from a polystyrene nanocomposite reinforced with functionally graded (FG) single-walled carbon nanotubes (SWCNTs) was carried out in radial direction while subjected to a steady state thermal field. The SWCNTs were assumed aligned, straight with infinite length and a uniform layout. Two types of variations in the volume fraction of SWCNTs were considered in the structure of the FG cylinder along the radius from inner to outer surface, namely: incrementally increasing (Inc Inc) and incrementally decreasing (Inc Dec). These are compared with uniformly distributed (UD) structure. Mori-Tanaka method was used for stress-strain analysis. Using equations of motion, stress-strain and their corresponding constitutive correlations of a polystyrene vessel, a second order ordinary differential equation was proposed based on the radial displacement which was solved in order to obtain the distribution of displacement and radial, circumferential and axial stresses. For constant temperatures at the inner and outer surfaces of the FG cylinder considered here, results in this work indicate that radial and circumferential stresses and displacement are lower for the Inc Inc FG cylinder, and the axial stresses are higher irrespective of the structure of the FG material.
topic Stress analysis
Reinforced FG SWCNTs
Composite
Thick‐walled cylinder
url http://jns.kashanu.ac.ir/article_5242_e575ceb0915ecc509ff14e55f0cbc5a2.pdf
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AT mrmozdianfard thermoelasticbehaviorofathickwalledcompositecylinderreinforcedwithfunctionallygradedswcnts
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