An experimental investigation of the expansion of composite tubes

Effective energy absorbers materials are vitally important in many industries especially when it comes to reducing fatalities rate like automotive industry. Introduction of expansion tube could be one of the competent methods of energy absorption system in vehicles. Since bare tube itself might not...

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Main Author: Koh, Khai Joe.
Other Authors: Chai Gin Boay
Format: Final Year Project
Language:English
Published: 2012
Subjects:
Online Access:http://hdl.handle.net/10356/49519
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-495192023-03-04T18:20:44Z An experimental investigation of the expansion of composite tubes Koh, Khai Joe. Chai Gin Boay Lu Guoxing School of Mechanical and Aerospace Engineering DRNTU::Engineering Effective energy absorbers materials are vitally important in many industries especially when it comes to reducing fatalities rate like automotive industry. Introduction of expansion tube could be one of the competent methods of energy absorption system in vehicles. Since bare tube itself might not be sufficient to achieve the requirement of high energy absorption, application of additional reinforcement wrapping layers as discussed in several past research paper can help in further enhancing the energy absorption. Yet, concern will be on increasing specific energy adsorption as additional mass introduced creates another disadvantage. In this report, woven prepreg (carbon fibre-reinforced polymer) is chosen to be the tube wrapping material for expansion testing to compute energy adsorption capacities. Woven prepreg is chosen for its relatively high ultimate tensile strength and lightweight property. There are three different set of tubes used, namely Aluminium 1100, Stainless Steel 304 and Mild Steel. Wrapping process is done manually before placing the specimen in oven for curing. The setup is done by changing different combination of tube material and wrapping layers. The results indicate better energy absorption capabilities with the increase in number of woven prepreg wrapping layers. All set of tubes show improvement in energy absorption as compared to respective bare tubes. In term of specific energy absorption, the combination which gives best results is by using Mild Steel tubes. It is found that ductility of tubes plays an imperative role in producing tubes with high specific energy absorption. Bachelor of Engineering (Mechanical Engineering) 2012-05-21T06:54:40Z 2012-05-21T06:54:40Z 2012 2012 Final Year Project (FYP) http://hdl.handle.net/10356/49519 en Nanyang Technological University 74 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
spellingShingle DRNTU::Engineering
Koh, Khai Joe.
An experimental investigation of the expansion of composite tubes
description Effective energy absorbers materials are vitally important in many industries especially when it comes to reducing fatalities rate like automotive industry. Introduction of expansion tube could be one of the competent methods of energy absorption system in vehicles. Since bare tube itself might not be sufficient to achieve the requirement of high energy absorption, application of additional reinforcement wrapping layers as discussed in several past research paper can help in further enhancing the energy absorption. Yet, concern will be on increasing specific energy adsorption as additional mass introduced creates another disadvantage. In this report, woven prepreg (carbon fibre-reinforced polymer) is chosen to be the tube wrapping material for expansion testing to compute energy adsorption capacities. Woven prepreg is chosen for its relatively high ultimate tensile strength and lightweight property. There are three different set of tubes used, namely Aluminium 1100, Stainless Steel 304 and Mild Steel. Wrapping process is done manually before placing the specimen in oven for curing. The setup is done by changing different combination of tube material and wrapping layers. The results indicate better energy absorption capabilities with the increase in number of woven prepreg wrapping layers. All set of tubes show improvement in energy absorption as compared to respective bare tubes. In term of specific energy absorption, the combination which gives best results is by using Mild Steel tubes. It is found that ductility of tubes plays an imperative role in producing tubes with high specific energy absorption.
author2 Chai Gin Boay
author_facet Chai Gin Boay
Koh, Khai Joe.
format Final Year Project
author Koh, Khai Joe.
author_sort Koh, Khai Joe.
title An experimental investigation of the expansion of composite tubes
title_short An experimental investigation of the expansion of composite tubes
title_full An experimental investigation of the expansion of composite tubes
title_fullStr An experimental investigation of the expansion of composite tubes
title_full_unstemmed An experimental investigation of the expansion of composite tubes
title_sort experimental investigation of the expansion of composite tubes
publishDate 2012
url http://hdl.handle.net/10356/49519
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