Closed-form elasticity solution for three-dimensional deformation of functionally graded micro/nano plates on elastic foundation

This paper addresses the static deformation of simply supported rectangular micro/nano plates made of functionally graded (FG) materials based on the three-dimensional nonlocal elasticity theory of Eringen. The plates are assumed to be simply supported and rested on a Winkler-Pasternak elastic found...

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Main Authors: H. Salehipour, H. Nahvi, A.R. Shahidi
Format: Article
Language:English
Published: Marcílio Alves
Series:Latin American Journal of Solids and Structures
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252015000400747&lng=en&tlng=en
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spelling doaj-79aa3685d7904c1e838b8b008fc87f7d2020-11-25T01:32:29ZengMarcílio AlvesLatin American Journal of Solids and Structures1679-782512474776210.1590/1679-78251398S1679-78252015000400747Closed-form elasticity solution for three-dimensional deformation of functionally graded micro/nano plates on elastic foundationH. SalehipourH. NahviA.R. ShahidiThis paper addresses the static deformation of simply supported rectangular micro/nano plates made of functionally graded (FG) materials based on the three-dimensional nonlocal elasticity theory of Eringen. The plates are assumed to be simply supported and rested on a Winkler-Pasternak elastic foundation. Elasticity modulus is assumed to obey an exponential law along the thickness direction of the micro/nano plate. Using the Fourier series, a displacement field is defined that satisfies simply supported boundary condition and reduces three elasticity equations to two independent equations. The closed-form bending response is achieved by exerting boundary conditions of the lateral surfaces. Numerical results are presented to investigate the influences of the gradient index of the material properties, nonlocal parameter and stiffness of elastic foundation on the mechanical behavior of the plates.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252015000400747&lng=en&tlng=enFunctionally graded materialmicro/nano platesstatic deformationexact solutionthree-dimensional nonlocal elasticity
collection DOAJ
language English
format Article
sources DOAJ
author H. Salehipour
H. Nahvi
A.R. Shahidi
spellingShingle H. Salehipour
H. Nahvi
A.R. Shahidi
Closed-form elasticity solution for three-dimensional deformation of functionally graded micro/nano plates on elastic foundation
Latin American Journal of Solids and Structures
Functionally graded material
micro/nano plates
static deformation
exact solution
three-dimensional nonlocal elasticity
author_facet H. Salehipour
H. Nahvi
A.R. Shahidi
author_sort H. Salehipour
title Closed-form elasticity solution for three-dimensional deformation of functionally graded micro/nano plates on elastic foundation
title_short Closed-form elasticity solution for three-dimensional deformation of functionally graded micro/nano plates on elastic foundation
title_full Closed-form elasticity solution for three-dimensional deformation of functionally graded micro/nano plates on elastic foundation
title_fullStr Closed-form elasticity solution for three-dimensional deformation of functionally graded micro/nano plates on elastic foundation
title_full_unstemmed Closed-form elasticity solution for three-dimensional deformation of functionally graded micro/nano plates on elastic foundation
title_sort closed-form elasticity solution for three-dimensional deformation of functionally graded micro/nano plates on elastic foundation
publisher Marcílio Alves
series Latin American Journal of Solids and Structures
issn 1679-7825
description This paper addresses the static deformation of simply supported rectangular micro/nano plates made of functionally graded (FG) materials based on the three-dimensional nonlocal elasticity theory of Eringen. The plates are assumed to be simply supported and rested on a Winkler-Pasternak elastic foundation. Elasticity modulus is assumed to obey an exponential law along the thickness direction of the micro/nano plate. Using the Fourier series, a displacement field is defined that satisfies simply supported boundary condition and reduces three elasticity equations to two independent equations. The closed-form bending response is achieved by exerting boundary conditions of the lateral surfaces. Numerical results are presented to investigate the influences of the gradient index of the material properties, nonlocal parameter and stiffness of elastic foundation on the mechanical behavior of the plates.
topic Functionally graded material
micro/nano plates
static deformation
exact solution
three-dimensional nonlocal elasticity
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252015000400747&lng=en&tlng=en
work_keys_str_mv AT hsalehipour closedformelasticitysolutionforthreedimensionaldeformationoffunctionallygradedmicronanoplatesonelasticfoundation
AT hnahvi closedformelasticitysolutionforthreedimensionaldeformationoffunctionallygradedmicronanoplatesonelasticfoundation
AT arshahidi closedformelasticitysolutionforthreedimensionaldeformationoffunctionallygradedmicronanoplatesonelasticfoundation
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