Bending analysis of laminated SWCNT Reinforced functionally graded plate Using FEM

In this paper presents bending characteristic of multi-layered carbon nanotube reinforced functionally graded composite plates. The finite element implementation of bending analysis of laminated composite plate via well-established higher order shear deformation theory(HSDT). A seven degree of freed...

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Main Authors: Chavan Shivaji G., Lal Achchhe
Format: Article
Language:English
Published: De Gruyter 2017-01-01
Series:Curved and Layered Structures
Subjects:
Online Access:https://doi.org/10.1515/cls-2017-0010
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author Chavan Shivaji G.
Lal Achchhe
author_facet Chavan Shivaji G.
Lal Achchhe
author_sort Chavan Shivaji G.
collection DOAJ
description In this paper presents bending characteristic of multi-layered carbon nanotube reinforced functionally graded composite plates. The finite element implementation of bending analysis of laminated composite plate via well-established higher order shear deformation theory(HSDT). A seven degree of freedom and C0 continuity finite element model using nine noded isoperimetric elements is developed for precise computation of ply-by-ply deflection and stresses of laminated Single Wall Carbon Nanotube Reinforced composite plate subjected to uniform transverse loading. The finite element implementation is carried out through a finite element code developed in MATLAB.The results obtained by present approach are compared with results available in the literatures. The effective material properties of the laminated SWCNTRC plate are used by Mori-Tanaka method.Numerical results have been obtained with different parameters, width-to-thickness ratio(a/h), stress distribution profile along thickness direction,different SWCNTRC-FG plate, boundary condition and various lamination schemes.
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spelling doaj.art-c8e698585f2a43dea5585b45a66769552022-12-21T21:30:27ZengDe GruyterCurved and Layered Structures2353-73962017-01-014113414510.1515/cls-2017-0010cls-2017-0010Bending analysis of laminated SWCNT Reinforced functionally graded plate Using FEMChavan Shivaji G.0Lal Achchhe1Research Scholar, Department of Mechanical Engineering, S.V. National Institute of Technology, Surat - 395007, IndiaAssistant Professor, Department of Mechanical Engineering, S.V. National Institute of Technology, Surat - 395007, IndiaIn this paper presents bending characteristic of multi-layered carbon nanotube reinforced functionally graded composite plates. The finite element implementation of bending analysis of laminated composite plate via well-established higher order shear deformation theory(HSDT). A seven degree of freedom and C0 continuity finite element model using nine noded isoperimetric elements is developed for precise computation of ply-by-ply deflection and stresses of laminated Single Wall Carbon Nanotube Reinforced composite plate subjected to uniform transverse loading. The finite element implementation is carried out through a finite element code developed in MATLAB.The results obtained by present approach are compared with results available in the literatures. The effective material properties of the laminated SWCNTRC plate are used by Mori-Tanaka method.Numerical results have been obtained with different parameters, width-to-thickness ratio(a/h), stress distribution profile along thickness direction,different SWCNTRC-FG plate, boundary condition and various lamination schemes.https://doi.org/10.1515/cls-2017-0010micromechanical analysishsdt formulation;finite element method for swcntr laminated platenumerical analysis
spellingShingle Chavan Shivaji G.
Lal Achchhe
Bending analysis of laminated SWCNT Reinforced functionally graded plate Using FEM
Curved and Layered Structures
micromechanical analysis
hsdt formulation;finite element method for swcntr laminated plate
numerical analysis
title Bending analysis of laminated SWCNT Reinforced functionally graded plate Using FEM
title_full Bending analysis of laminated SWCNT Reinforced functionally graded plate Using FEM
title_fullStr Bending analysis of laminated SWCNT Reinforced functionally graded plate Using FEM
title_full_unstemmed Bending analysis of laminated SWCNT Reinforced functionally graded plate Using FEM
title_short Bending analysis of laminated SWCNT Reinforced functionally graded plate Using FEM
title_sort bending analysis of laminated swcnt reinforced functionally graded plate using fem
topic micromechanical analysis
hsdt formulation;finite element method for swcntr laminated plate
numerical analysis
url https://doi.org/10.1515/cls-2017-0010
work_keys_str_mv AT chavanshivajig bendinganalysisoflaminatedswcntreinforcedfunctionallygradedplateusingfem
AT lalachchhe bendinganalysisoflaminatedswcntreinforcedfunctionallygradedplateusingfem