EXACT SOLUTION FOR TEMPERATURE-DEPENDENT BUCKLING ANALYSIS OF FG-CNT-REINFORCED MINDLIN PLATES
This research deals with the buckling analysis of nanocomposite polymeric temperature-dependent plates reinforced by single-walled carbon nanotubes (SWCNTs). For the carbon-nanotube reinforced composite (CNTRC) plate, uniform distribution (UD) and three types of functionally graded (FG) distribution...
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Society of Polish Mechanical Engineers and Technicians
2016-03-01
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doaj-14c70f73da5d4178ba7dec1ea941cf502020-11-25T00:24:58ZengSociety of Polish Mechanical Engineers and TechniciansAdvances in Science and Technology Research Journal2080-40752299-86242016-03-01102915216010.12913/22998624/6194761947EXACT SOLUTION FOR TEMPERATURE-DEPENDENT BUCKLING ANALYSIS OF FG-CNT-REINFORCED MINDLIN PLATESSeyed Mohammad Mousavi0Reza Kolahchi1Department of Civil Engineering, Khomein Branch, Islamic Azad University, Khomein, IranDepartment of Civil Engineering, Khomein Branch, Islamic Azad University, Khomein, IranThis research deals with the buckling analysis of nanocomposite polymeric temperature-dependent plates reinforced by single-walled carbon nanotubes (SWCNTs). For the carbon-nanotube reinforced composite (CNTRC) plate, uniform distribution (UD) and three types of functionally graded (FG) distribution patterns of SWCNT reinforcements are assumed. The material properties of FG-CNTRC plate are graded in the thickness direction and estimated based on the rule of mixture. The CNTRC is located in a elastic medium which is simulated with temperature-dependent Pasternak medium. Based on orthotropic Mindlin plate theory, the governing equations are derived using Hamilton’s principle and solved by Navier method. The influences of the volume fractions of carbon nanotubes, elastic medium, temperature and distribution type of CNTs are considered on the buckling of the plate. Results indicate that CNT distribution close to top and bottom are more efficient than those distributed nearby the mid-plane for increasing the stiffness of plates.http://www.journalssystem.com/astrj/EXACT-SOLUTION-FOR-TEMPERATURE-DEPENDENT-BUCKLING-ANALYSIS-OF-FG-CNT-REINFORCED-MINDLIN-PLATES,61947,0,2.htmlbucklingtemperature-dependent mindling platestemperature-dependent elastic mediumFG materials |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Seyed Mohammad Mousavi Reza Kolahchi |
spellingShingle |
Seyed Mohammad Mousavi Reza Kolahchi EXACT SOLUTION FOR TEMPERATURE-DEPENDENT BUCKLING ANALYSIS OF FG-CNT-REINFORCED MINDLIN PLATES Advances in Science and Technology Research Journal buckling temperature-dependent mindling plates temperature-dependent elastic medium FG materials |
author_facet |
Seyed Mohammad Mousavi Reza Kolahchi |
author_sort |
Seyed Mohammad Mousavi |
title |
EXACT SOLUTION FOR TEMPERATURE-DEPENDENT BUCKLING ANALYSIS OF FG-CNT-REINFORCED MINDLIN PLATES |
title_short |
EXACT SOLUTION FOR TEMPERATURE-DEPENDENT BUCKLING ANALYSIS OF FG-CNT-REINFORCED MINDLIN PLATES |
title_full |
EXACT SOLUTION FOR TEMPERATURE-DEPENDENT BUCKLING ANALYSIS OF FG-CNT-REINFORCED MINDLIN PLATES |
title_fullStr |
EXACT SOLUTION FOR TEMPERATURE-DEPENDENT BUCKLING ANALYSIS OF FG-CNT-REINFORCED MINDLIN PLATES |
title_full_unstemmed |
EXACT SOLUTION FOR TEMPERATURE-DEPENDENT BUCKLING ANALYSIS OF FG-CNT-REINFORCED MINDLIN PLATES |
title_sort |
exact solution for temperature-dependent buckling analysis of fg-cnt-reinforced mindlin plates |
publisher |
Society of Polish Mechanical Engineers and Technicians |
series |
Advances in Science and Technology Research Journal |
issn |
2080-4075 2299-8624 |
publishDate |
2016-03-01 |
description |
This research deals with the buckling analysis of nanocomposite polymeric temperature-dependent plates reinforced by single-walled carbon nanotubes (SWCNTs). For the carbon-nanotube reinforced composite (CNTRC) plate, uniform distribution (UD) and three types of functionally graded (FG) distribution patterns of SWCNT reinforcements are assumed. The material properties of FG-CNTRC plate are graded in the thickness direction and estimated based on the rule of mixture. The CNTRC is located in a elastic medium which is simulated with temperature-dependent Pasternak medium. Based on orthotropic Mindlin plate theory, the governing equations are derived using Hamilton’s principle and solved by Navier method. The influences of the volume fractions of carbon nanotubes, elastic medium, temperature and distribution type of CNTs are considered on the buckling of the plate. Results indicate that CNT distribution close to top and bottom are more efficient than those distributed nearby the mid-plane for increasing the stiffness of plates. |
topic |
buckling temperature-dependent mindling plates temperature-dependent elastic medium FG materials |
url |
http://www.journalssystem.com/astrj/EXACT-SOLUTION-FOR-TEMPERATURE-DEPENDENT-BUCKLING-ANALYSIS-OF-FG-CNT-REINFORCED-MINDLIN-PLATES,61947,0,2.html |
work_keys_str_mv |
AT seyedmohammadmousavi exactsolutionfortemperaturedependentbucklinganalysisoffgcntreinforcedmindlinplates AT rezakolahchi exactsolutionfortemperaturedependentbucklinganalysisoffgcntreinforcedmindlinplates |
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1725350658147614720 |