Transient Thermal Stresses Analysis in a FPGM Cylinder

The present study aims to investigate the analysis of stress, strain, displacement, and electrical potential of a thick hollow cylinder made of FGPM under mechanical and thermal loads. Distribution of mechanical property of material is considered along the shell stick through the power distribution...

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Main Authors: Nabard Habibi, Sadi Samawati, Omid Ahmadi
Format: Article
Language:English
Published: Semnan University 2019-11-01
Series:Mechanics of Advanced Composite Structures
Subjects:
Online Access:https://macs.semnan.ac.ir/article_3774_4f3de4f6fe7e0b089241c41b3a32d6a1.pdf
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author Nabard Habibi
Sadi Samawati
Omid Ahmadi
author_facet Nabard Habibi
Sadi Samawati
Omid Ahmadi
author_sort Nabard Habibi
collection DOAJ
description The present study aims to investigate the analysis of stress, strain, displacement, and electrical potential of a thick hollow cylinder made of FGPM under mechanical and thermal loads. Distribution of mechanical property of material is considered along the shell stick through the power distribution function. Thermal loads have been taken to signify the difference of temperature between outer and inner surfaces for each type of mechanical property. After extracting and solving the differential equations in transient state and the observation of mechanical and thermal boundary conditions, governing functions are obtained through the following parameters: thermal conduction non-homogeneous parameters, thermal linear distribution coefficient, elastic stiffness constant, piezo-electric coefficient, and dielectric constants.
format Article
id doaj-art-0f7757c372e04b1bb5d28b4d010d5b5c
institution OA Journals
issn 2423-4826
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publishDate 2019-11-01
publisher Semnan University
record_format Article
series Mechanics of Advanced Composite Structures
spelling doaj-art-0f7757c372e04b1bb5d28b4d010d5b5c2025-08-20T01:56:56ZengSemnan UniversityMechanics of Advanced Composite Structures2423-48262423-70432019-11-0162819410.22075/macs.2019.14988.11473774Transient Thermal Stresses Analysis in a FPGM CylinderNabard Habibi0Sadi Samawati1Omid Ahmadi2Mechanical Engineering Department, Faculty of Engineering, University of Kurdistan, Sanandaj, IranMechanical Engineering Department, Khajeh Nasir Toosi University of Technology, Tehran, IranMechanical Engineering Department, Urmia University, Urmia, IranThe present study aims to investigate the analysis of stress, strain, displacement, and electrical potential of a thick hollow cylinder made of FGPM under mechanical and thermal loads. Distribution of mechanical property of material is considered along the shell stick through the power distribution function. Thermal loads have been taken to signify the difference of temperature between outer and inner surfaces for each type of mechanical property. After extracting and solving the differential equations in transient state and the observation of mechanical and thermal boundary conditions, governing functions are obtained through the following parameters: thermal conduction non-homogeneous parameters, thermal linear distribution coefficient, elastic stiffness constant, piezo-electric coefficient, and dielectric constants.https://macs.semnan.ac.ir/article_3774_4f3de4f6fe7e0b089241c41b3a32d6a1.pdfpiezo-electricfgpmhollow cylindertransientthermal stress
spellingShingle Nabard Habibi
Sadi Samawati
Omid Ahmadi
Transient Thermal Stresses Analysis in a FPGM Cylinder
Mechanics of Advanced Composite Structures
piezo-electric
fgpm
hollow cylinder
transient
thermal stress
title Transient Thermal Stresses Analysis in a FPGM Cylinder
title_full Transient Thermal Stresses Analysis in a FPGM Cylinder
title_fullStr Transient Thermal Stresses Analysis in a FPGM Cylinder
title_full_unstemmed Transient Thermal Stresses Analysis in a FPGM Cylinder
title_short Transient Thermal Stresses Analysis in a FPGM Cylinder
title_sort transient thermal stresses analysis in a fpgm cylinder
topic piezo-electric
fgpm
hollow cylinder
transient
thermal stress
url https://macs.semnan.ac.ir/article_3774_4f3de4f6fe7e0b089241c41b3a32d6a1.pdf
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AT omidahmadi transientthermalstressesanalysisinafpgmcylinder