Performance evaluation of steel fibres reinforced concrete precast tunnel segment joint specimens

In recent years, there is a trend of using steel fibre reinforced concrete (SFRC) as tunnel lining segment in replacement of conventional reinforced concrete lining due to the advantages of crack minimisation, corrosion control and cost efficiency that SFRC tunnel segment lining brings along. Be...

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Main Author: Lim, Judy Shi Min.
Other Authors: Teng Susanto
Format: Final Year Project
Language:English
Published: 2010
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Online Access:http://hdl.handle.net/10356/39614
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-396142023-03-03T17:01:52Z Performance evaluation of steel fibres reinforced concrete precast tunnel segment joint specimens Lim, Judy Shi Min. Teng Susanto School of Civil and Environmental Engineering Land Transport Authority DRNTU::Engineering In recent years, there is a trend of using steel fibre reinforced concrete (SFRC) as tunnel lining segment in replacement of conventional reinforced concrete lining due to the advantages of crack minimisation, corrosion control and cost efficiency that SFRC tunnel segment lining brings along. Being a new and innovative construction material, detailed studies and information on the analysis of SFRC tunnel lining segment joint connection is limited. The aim of this project is to review the loading capacity and failure mode of SFRC tunnel lining segment joint connection. Post-tensioning end block design methods with appropriate assumptions are also adopted in the analysis of the structural performance of SFRC joint specimens. The project is divided into four major phases. The first phase involves reviewing the development, design methods and associated theories of post-tensioning end block design for application to SFRC joint specimens. In the second phase, experimental works are carried out on cubes, cylinders and eight joint specimens for data collection. The third phase consists of data analysis and evaluation of experimental results against theoretical results. The last phase draws up conclusion on the feasibility of post-tensioning end block design for SFRC joint specimen analysis. The results attained from experiment affirm the feasibility of post-tensioning end block design concept to the loading capacity and failure mode of SFRC tunnel lining segment joint connection. British Standard (BS) provision is proven to be the most suitable for applying to SFRC analysis. Appropriate modification to the existing BS equation is carried out to account for the factor of safety in applying to the analysis of SFRC tunnel lining segment joint connection loading capacity. Bachelor of Engineering 2010-06-01T07:53:25Z 2010-06-01T07:53:25Z 2010 2010 Final Year Project (FYP) http://hdl.handle.net/10356/39614 en Nanyang Technological University 90 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
Lim, Judy Shi Min.
Performance evaluation of steel fibres reinforced concrete precast tunnel segment joint specimens
description In recent years, there is a trend of using steel fibre reinforced concrete (SFRC) as tunnel lining segment in replacement of conventional reinforced concrete lining due to the advantages of crack minimisation, corrosion control and cost efficiency that SFRC tunnel segment lining brings along. Being a new and innovative construction material, detailed studies and information on the analysis of SFRC tunnel lining segment joint connection is limited. The aim of this project is to review the loading capacity and failure mode of SFRC tunnel lining segment joint connection. Post-tensioning end block design methods with appropriate assumptions are also adopted in the analysis of the structural performance of SFRC joint specimens. The project is divided into four major phases. The first phase involves reviewing the development, design methods and associated theories of post-tensioning end block design for application to SFRC joint specimens. In the second phase, experimental works are carried out on cubes, cylinders and eight joint specimens for data collection. The third phase consists of data analysis and evaluation of experimental results against theoretical results. The last phase draws up conclusion on the feasibility of post-tensioning end block design for SFRC joint specimen analysis. The results attained from experiment affirm the feasibility of post-tensioning end block design concept to the loading capacity and failure mode of SFRC tunnel lining segment joint connection. British Standard (BS) provision is proven to be the most suitable for applying to SFRC analysis. Appropriate modification to the existing BS equation is carried out to account for the factor of safety in applying to the analysis of SFRC tunnel lining segment joint connection loading capacity.
author2 Teng Susanto
author_facet Teng Susanto
Lim, Judy Shi Min.
format Final Year Project
author Lim, Judy Shi Min.
author_sort Lim, Judy Shi Min.
title Performance evaluation of steel fibres reinforced concrete precast tunnel segment joint specimens
title_short Performance evaluation of steel fibres reinforced concrete precast tunnel segment joint specimens
title_full Performance evaluation of steel fibres reinforced concrete precast tunnel segment joint specimens
title_fullStr Performance evaluation of steel fibres reinforced concrete precast tunnel segment joint specimens
title_full_unstemmed Performance evaluation of steel fibres reinforced concrete precast tunnel segment joint specimens
title_sort performance evaluation of steel fibres reinforced concrete precast tunnel segment joint specimens
publishDate 2010
url http://hdl.handle.net/10356/39614
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