Free Vibration Analysis of FG Porous Sandwich Plates under Various Boundary Conditions
In the present work, free vibration analysis of the square sandwich plate with functionally graded (FG) porous face sheets and isotropic homogenous core is performed under various boundary conditions. For this purpose, the material properties of the sandwich plate are supposed to vary continuously t...
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Shahid Chamran University of Ahvaz
2021-04-01
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doaj-efdcd00a96a7461eb1ae99dfe48b119d2021-02-04T16:51:02ZengShahid Chamran University of AhvazJournal of Applied and Computational Mechanics2383-45362383-45362021-04-017250551910.22055/jacm.2020.35328.262816055Free Vibration Analysis of FG Porous Sandwich Plates under Various Boundary ConditionsLazreg Hadji0Mehmet Avcar1University of Tiaret, Department of Mechanical Engineering, BP 78 Zaaroura, Tiaret,14000, AlgeriaSuleyman Demirel University, Department of Civil Engineering, Isparta, 32260, TurkeyIn the present work, free vibration analysis of the square sandwich plate with functionally graded (FG) porous face sheets and isotropic homogenous core is performed under various boundary conditions. For this purpose, the material properties of the sandwich plate are supposed to vary continuously through the thickness direction according to the volume fraction of constituents defined with the modified rule of the mixture including porosity volume fraction with four different types of porosity distribution over the cross-section. Furthermore, a hyperbolic shear displacement theory is used in the kinematic relation of the FG porous sandwich plate, and the equations of motion are derived utilizing Hamilton’s principle. Analytical solutions are achieved for free vibration analysis of square sandwich plates with FG porous face sheets under various boundary conditions, i.e. combinations of clamped (C), simply supported (SS), and free (F) edges are presented. Several parametrical studies are conducted to examine the effects of porosity volume fraction, type of porosity distribution model, lay-up scheme, side to thickness ratio, and boundary conditions on the free vibration of the FG sandwich plates. Finally, it is concluded that the investigated parameters have significant effects on the free vibration of the FG sandwich plates and the negative effects of porosity may be reduced by adopting suitable values for said parameters, considerably.https://jacm.scu.ac.ir/article_16055_37a403565b15edb2690dca5a737c7958.pdffunctionally graded materialssandwich platesporosityfree vibrationboundary conditions |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Lazreg Hadji Mehmet Avcar |
spellingShingle |
Lazreg Hadji Mehmet Avcar Free Vibration Analysis of FG Porous Sandwich Plates under Various Boundary Conditions Journal of Applied and Computational Mechanics functionally graded materials sandwich plates porosity free vibration boundary conditions |
author_facet |
Lazreg Hadji Mehmet Avcar |
author_sort |
Lazreg Hadji |
title |
Free Vibration Analysis of FG Porous Sandwich Plates under Various Boundary Conditions |
title_short |
Free Vibration Analysis of FG Porous Sandwich Plates under Various Boundary Conditions |
title_full |
Free Vibration Analysis of FG Porous Sandwich Plates under Various Boundary Conditions |
title_fullStr |
Free Vibration Analysis of FG Porous Sandwich Plates under Various Boundary Conditions |
title_full_unstemmed |
Free Vibration Analysis of FG Porous Sandwich Plates under Various Boundary Conditions |
title_sort |
free vibration analysis of fg porous sandwich plates under various boundary conditions |
publisher |
Shahid Chamran University of Ahvaz |
series |
Journal of Applied and Computational Mechanics |
issn |
2383-4536 2383-4536 |
publishDate |
2021-04-01 |
description |
In the present work, free vibration analysis of the square sandwich plate with functionally graded (FG) porous face sheets and isotropic homogenous core is performed under various boundary conditions. For this purpose, the material properties of the sandwich plate are supposed to vary continuously through the thickness direction according to the volume fraction of constituents defined with the modified rule of the mixture including porosity volume fraction with four different types of porosity distribution over the cross-section. Furthermore, a hyperbolic shear displacement theory is used in the kinematic relation of the FG porous sandwich plate, and the equations of motion are derived utilizing Hamilton’s principle. Analytical solutions are achieved for free vibration analysis of square sandwich plates with FG porous face sheets under various boundary conditions, i.e. combinations of clamped (C), simply supported (SS), and free (F) edges are presented. Several parametrical studies are conducted to examine the effects of porosity volume fraction, type of porosity distribution model, lay-up scheme, side to thickness ratio, and boundary conditions on the free vibration of the FG sandwich plates. Finally, it is concluded that the investigated parameters have significant effects on the free vibration of the FG sandwich plates and the negative effects of porosity may be reduced by adopting suitable values for said parameters, considerably. |
topic |
functionally graded materials sandwich plates porosity free vibration boundary conditions |
url |
https://jacm.scu.ac.ir/article_16055_37a403565b15edb2690dca5a737c7958.pdf |
work_keys_str_mv |
AT lazreghadji freevibrationanalysisoffgporoussandwichplatesundervariousboundaryconditions AT mehmetavcar freevibrationanalysisoffgporoussandwichplatesundervariousboundaryconditions |
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1724285191814381568 |