Bending analysis of thin FGM skew plate resting on Winkler elastic foundation using multi-term extended Kantorovich method

Multi-term extended Kantorovich method (MTEKM) is used to solve the bending problem of thin skew (parallelogram) functionally graded plate resting on the Winkler elastic foundation under uniformly distributed transverse load. Formulations are based on the classical plate theory (CPT) with the physic...

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Main Authors: Ahmed Hassan Ahmed Hassan, Naci Kurgan
Format: Article
Language:English
Published: Elsevier 2020-08-01
Series:Engineering Science and Technology, an International Journal
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2215098619327727
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spelling doaj-e462a47a615d47f7a8ab58b1bac72f1d2020-11-25T03:45:22ZengElsevierEngineering Science and Technology, an International Journal2215-09862020-08-01234788800Bending analysis of thin FGM skew plate resting on Winkler elastic foundation using multi-term extended Kantorovich methodAhmed Hassan Ahmed Hassan0Naci Kurgan1Mechanical Engineering Department, Engineering Faculty, Ondokuz Mayis University, 55139 Samsun, Turkey; Corresponding author.Mechanical Engineering Department, Engineering Faculty, Ondokuz Mayis University, 55139 Samsun, TurkeyMulti-term extended Kantorovich method (MTEKM) is used to solve the bending problem of thin skew (parallelogram) functionally graded plate resting on the Winkler elastic foundation under uniformly distributed transverse load. Formulations are based on the classical plate theory (CPT) with the physical neutral surface is considered as the reference plane. Various configurations of clamped, simply supported and free edges are considered. By implementing the concept of Galerkin’s weighted residual method, the fourth-order partial differential governing equation and boundary conditions are converted into two sets of ordinary differential equations (ODE), which are then solved numerically using “Chebfun” numerical computation package. Convergence and accuracy of MTEKM are investigated. Results obtained with MTEKM are compared to finite element method (FEM) solutions. FEM has been implemented using ANSYS software, in which the plate is modeled with shell elements, while the elastic foundation is modeled as a pair of contact/target elements. In addition, the effects of both the Winkler foundation stiffness and material power index have been investigated. Applying MTEKM in bending analysis of thin skew plates offered more accurate results than the single-term EKM but with the cost of more computation time but still provides simplicity and rapid convergence. It is found that MTEKM well suits the bending problem of skew FGM plates resting on elastic foundation.http://www.sciencedirect.com/science/article/pii/S2215098619327727Multi-term extended Kantorovich Method (MTEKM)BendingSkew PlateClassical plate theory (CPT)Galerkin’s weighted residual methodFunctionally graded material (FGM)
collection DOAJ
language English
format Article
sources DOAJ
author Ahmed Hassan Ahmed Hassan
Naci Kurgan
spellingShingle Ahmed Hassan Ahmed Hassan
Naci Kurgan
Bending analysis of thin FGM skew plate resting on Winkler elastic foundation using multi-term extended Kantorovich method
Engineering Science and Technology, an International Journal
Multi-term extended Kantorovich Method (MTEKM)
Bending
Skew Plate
Classical plate theory (CPT)
Galerkin’s weighted residual method
Functionally graded material (FGM)
author_facet Ahmed Hassan Ahmed Hassan
Naci Kurgan
author_sort Ahmed Hassan Ahmed Hassan
title Bending analysis of thin FGM skew plate resting on Winkler elastic foundation using multi-term extended Kantorovich method
title_short Bending analysis of thin FGM skew plate resting on Winkler elastic foundation using multi-term extended Kantorovich method
title_full Bending analysis of thin FGM skew plate resting on Winkler elastic foundation using multi-term extended Kantorovich method
title_fullStr Bending analysis of thin FGM skew plate resting on Winkler elastic foundation using multi-term extended Kantorovich method
title_full_unstemmed Bending analysis of thin FGM skew plate resting on Winkler elastic foundation using multi-term extended Kantorovich method
title_sort bending analysis of thin fgm skew plate resting on winkler elastic foundation using multi-term extended kantorovich method
publisher Elsevier
series Engineering Science and Technology, an International Journal
issn 2215-0986
publishDate 2020-08-01
description Multi-term extended Kantorovich method (MTEKM) is used to solve the bending problem of thin skew (parallelogram) functionally graded plate resting on the Winkler elastic foundation under uniformly distributed transverse load. Formulations are based on the classical plate theory (CPT) with the physical neutral surface is considered as the reference plane. Various configurations of clamped, simply supported and free edges are considered. By implementing the concept of Galerkin’s weighted residual method, the fourth-order partial differential governing equation and boundary conditions are converted into two sets of ordinary differential equations (ODE), which are then solved numerically using “Chebfun” numerical computation package. Convergence and accuracy of MTEKM are investigated. Results obtained with MTEKM are compared to finite element method (FEM) solutions. FEM has been implemented using ANSYS software, in which the plate is modeled with shell elements, while the elastic foundation is modeled as a pair of contact/target elements. In addition, the effects of both the Winkler foundation stiffness and material power index have been investigated. Applying MTEKM in bending analysis of thin skew plates offered more accurate results than the single-term EKM but with the cost of more computation time but still provides simplicity and rapid convergence. It is found that MTEKM well suits the bending problem of skew FGM plates resting on elastic foundation.
topic Multi-term extended Kantorovich Method (MTEKM)
Bending
Skew Plate
Classical plate theory (CPT)
Galerkin’s weighted residual method
Functionally graded material (FGM)
url http://www.sciencedirect.com/science/article/pii/S2215098619327727
work_keys_str_mv AT ahmedhassanahmedhassan bendinganalysisofthinfgmskewplaterestingonwinklerelasticfoundationusingmultitermextendedkantorovichmethod
AT nacikurgan bendinganalysisofthinfgmskewplaterestingonwinklerelasticfoundationusingmultitermextendedkantorovichmethod
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