Analysis of a Steel-Concrete Composite Plate resting on Axial Bars using the Finite Element Method

This study applied finite element analysis to a steel-concrete composite plate resting on the axial bar, using a four-node quadrilateral finite element for a steel-concrete composite plate combined with a truss element. Plate displacements and deformations were used to formulate the finite element m...

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Main Authors: Nguyen Ngoc Long, Nguyen Xuan Tung
Format: Article
Language:English
Published: D. G. Pylarinos 2023-08-01
Series:Engineering, Technology & Applied Science Research
Subjects:
Online Access:https://etasr.com/index.php/ETASR/article/view/6036
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author Nguyen Ngoc Long
Nguyen Xuan Tung
author_facet Nguyen Ngoc Long
Nguyen Xuan Tung
author_sort Nguyen Ngoc Long
collection DOAJ
description This study applied finite element analysis to a steel-concrete composite plate resting on the axial bar, using a four-node quadrilateral finite element for a steel-concrete composite plate combined with a truss element. Plate displacements and deformations were used to formulate the finite element method based on the first-order plate theory, also known as the Mindlin plate theory. The finite element analysis to combine steel-concrete composite plates and axial bars was implemented in MATLAB. Numerical examples were used in detail, showing a very small difference between the current study and the SAP2000 results.
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spelling doaj.art-5dc7a8bcc76f4bbba17c3e9834ee27432023-08-10T05:33:22ZengD. G. PylarinosEngineering, Technology & Applied Science Research2241-44871792-80362023-08-0113410.48084/etasr.6036Analysis of a Steel-Concrete Composite Plate resting on Axial Bars using the Finite Element MethodNguyen Ngoc Long0Nguyen Xuan Tung1University of Transport and Communications, VietnamUniversity of Transport and Communications, VietnamThis study applied finite element analysis to a steel-concrete composite plate resting on the axial bar, using a four-node quadrilateral finite element for a steel-concrete composite plate combined with a truss element. Plate displacements and deformations were used to formulate the finite element method based on the first-order plate theory, also known as the Mindlin plate theory. The finite element analysis to combine steel-concrete composite plates and axial bars was implemented in MATLAB. Numerical examples were used in detail, showing a very small difference between the current study and the SAP2000 results. https://etasr.com/index.php/ETASR/article/view/6036axial barfinite element methodbending platetruss
spellingShingle Nguyen Ngoc Long
Nguyen Xuan Tung
Analysis of a Steel-Concrete Composite Plate resting on Axial Bars using the Finite Element Method
Engineering, Technology & Applied Science Research
axial bar
finite element method
bending plate
truss
title Analysis of a Steel-Concrete Composite Plate resting on Axial Bars using the Finite Element Method
title_full Analysis of a Steel-Concrete Composite Plate resting on Axial Bars using the Finite Element Method
title_fullStr Analysis of a Steel-Concrete Composite Plate resting on Axial Bars using the Finite Element Method
title_full_unstemmed Analysis of a Steel-Concrete Composite Plate resting on Axial Bars using the Finite Element Method
title_short Analysis of a Steel-Concrete Composite Plate resting on Axial Bars using the Finite Element Method
title_sort analysis of a steel concrete composite plate resting on axial bars using the finite element method
topic axial bar
finite element method
bending plate
truss
url https://etasr.com/index.php/ETASR/article/view/6036
work_keys_str_mv AT nguyenngoclong analysisofasteelconcretecompositeplaterestingonaxialbarsusingthefiniteelementmethod
AT nguyenxuantung analysisofasteelconcretecompositeplaterestingonaxialbarsusingthefiniteelementmethod