Finite element analysis of a 20 structural frame of a wing box test stano / Siti Syahioah Moho Rum

Test stands are designed and built to test the performance of the structures against the targets set in the design specification. This study reports on the finite element analysis of a 20 structural frame of a wing box test stand. In this study, two types of structural analyses of the test stand are...

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Main Author: Moho Rum, Siti Syahioah
Format: Thesis
Language:English
Published: 2009
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/30954/
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author Moho Rum, Siti Syahioah
author_facet Moho Rum, Siti Syahioah
author_sort Moho Rum, Siti Syahioah
building UiTM Institutional Repository
collection Online Access
description Test stands are designed and built to test the performance of the structures against the targets set in the design specification. This study reports on the finite element analysis of a 20 structural frame of a wing box test stand. In this study, two types of structural analyses of the test stand are conducted which are static analysis and buckling analysis. The static analysis is conducted to determine displacements, stresses; and deflection . under static loading, whereas the buckling analysis is done to determine buckling loads and the buckling mode shape. The finite element analysis is accomplished using ANSYS/ED and ANSYS 11.0. Results from the finite element analysis were then compared with the results obtained by formulation. The material used for this project is a hot rolled tube mild steel (A36). It is expected that this study can contribute to practical research for mechanical engineering student
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format Thesis
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institution Universiti Teknologi MARA
institution_category Local University
language English
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publishDate 2009
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spelling uitm-309542020-06-09T06:40:39Z https://ir.uitm.edu.my/id/eprint/30954/ Finite element analysis of a 20 structural frame of a wing box test stano / Siti Syahioah Moho Rum Moho Rum, Siti Syahioah Finite element method Test stands are designed and built to test the performance of the structures against the targets set in the design specification. This study reports on the finite element analysis of a 20 structural frame of a wing box test stand. In this study, two types of structural analyses of the test stand are conducted which are static analysis and buckling analysis. The static analysis is conducted to determine displacements, stresses; and deflection . under static loading, whereas the buckling analysis is done to determine buckling loads and the buckling mode shape. The finite element analysis is accomplished using ANSYS/ED and ANSYS 11.0. Results from the finite element analysis were then compared with the results obtained by formulation. The material used for this project is a hot rolled tube mild steel (A36). It is expected that this study can contribute to practical research for mechanical engineering student 2009 Thesis NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/30954/1/30954.pdf Moho Rum, Siti Syahioah (2009) Finite element analysis of a 20 structural frame of a wing box test stano / Siti Syahioah Moho Rum. (2009) Degree thesis, thesis, Universiti Teknologi MARA Shah Alam.
spellingShingle Finite element method
Moho Rum, Siti Syahioah
Finite element analysis of a 20 structural frame of a wing box test stano / Siti Syahioah Moho Rum
title Finite element analysis of a 20 structural frame of a wing box test stano / Siti Syahioah Moho Rum
title_full Finite element analysis of a 20 structural frame of a wing box test stano / Siti Syahioah Moho Rum
title_fullStr Finite element analysis of a 20 structural frame of a wing box test stano / Siti Syahioah Moho Rum
title_full_unstemmed Finite element analysis of a 20 structural frame of a wing box test stano / Siti Syahioah Moho Rum
title_short Finite element analysis of a 20 structural frame of a wing box test stano / Siti Syahioah Moho Rum
title_sort finite element analysis of a 20 structural frame of a wing box test stano / siti syahioah moho rum
topic Finite element method
url https://ir.uitm.edu.my/id/eprint/30954/