Stress and deformation of re-usable intermediate bulk containers

Current understanding, in order to test the strength and reliability of an Intermediate Bulk Container is by building a real size container and test its physical condition by utilizing compression test system, random vibration test system and rotational edge drop test system. By using the commercial...

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Main Author: Chang, Jaw Shyong.
Other Authors: Chai Gin Boay
Format: Final Year Project
Language:English
Published: 2009
Subjects:
Online Access:http://hdl.handle.net/10356/15652
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-156522023-03-04T18:35:51Z Stress and deformation of re-usable intermediate bulk containers Chang, Jaw Shyong. Chai Gin Boay School of Mechanical and Aerospace Engineering DRNTU::Engineering::Mechanical engineering::Mechanics and dynamics Current understanding, in order to test the strength and reliability of an Intermediate Bulk Container is by building a real size container and test its physical condition by utilizing compression test system, random vibration test system and rotational edge drop test system. By using the commercial finite element software, ANSYS, the testing could be simplified, as instead of building a true scale structure which requires money and time, a model can be simulated and tested in the software. In this report, the author modeled the re-usable intermediate bulk container and simulated different situations in the ANSYS software. The basic structure of a re-usable intermediate bulk container was designed and subjected to gravitational field to eliminate any possible errors and warnings. Next, a complete static analysis of where stress and deformation in the container was performed under different variables such as water level, plate thickness and stiffener dimensions. The static analysis would then provide a suggested optimum model. After static analysis, the random vibration PSD analysis was carried out on a single container, while in the last phase; the analysis was done on stacked intermediate bulk containers of up to four. The position of failure, deformation and stress distribution of the structure is analyzed and studied to gain a better understanding of the software. From this project, the author has concluded that the commercial software ANSYS is reliable to a large extend and is economically viable. Bachelor of Engineering 2009-05-13T09:25:08Z 2009-05-13T09:25:08Z 2009 2009 Final Year Project (FYP) http://hdl.handle.net/10356/15652 en Nanyang Technological University 81 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Mechanical engineering::Mechanics and dynamics
spellingShingle DRNTU::Engineering::Mechanical engineering::Mechanics and dynamics
Chang, Jaw Shyong.
Stress and deformation of re-usable intermediate bulk containers
description Current understanding, in order to test the strength and reliability of an Intermediate Bulk Container is by building a real size container and test its physical condition by utilizing compression test system, random vibration test system and rotational edge drop test system. By using the commercial finite element software, ANSYS, the testing could be simplified, as instead of building a true scale structure which requires money and time, a model can be simulated and tested in the software. In this report, the author modeled the re-usable intermediate bulk container and simulated different situations in the ANSYS software. The basic structure of a re-usable intermediate bulk container was designed and subjected to gravitational field to eliminate any possible errors and warnings. Next, a complete static analysis of where stress and deformation in the container was performed under different variables such as water level, plate thickness and stiffener dimensions. The static analysis would then provide a suggested optimum model. After static analysis, the random vibration PSD analysis was carried out on a single container, while in the last phase; the analysis was done on stacked intermediate bulk containers of up to four. The position of failure, deformation and stress distribution of the structure is analyzed and studied to gain a better understanding of the software. From this project, the author has concluded that the commercial software ANSYS is reliable to a large extend and is economically viable.
author2 Chai Gin Boay
author_facet Chai Gin Boay
Chang, Jaw Shyong.
format Final Year Project
author Chang, Jaw Shyong.
author_sort Chang, Jaw Shyong.
title Stress and deformation of re-usable intermediate bulk containers
title_short Stress and deformation of re-usable intermediate bulk containers
title_full Stress and deformation of re-usable intermediate bulk containers
title_fullStr Stress and deformation of re-usable intermediate bulk containers
title_full_unstemmed Stress and deformation of re-usable intermediate bulk containers
title_sort stress and deformation of re-usable intermediate bulk containers
publishDate 2009
url http://hdl.handle.net/10356/15652
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