Behaviour of reinforced concrete beam-column joint subjected to in-plane loading
Strut-and-tie modeling is one of the common models used in the analysis of reinforced concrete structure behaviours. Over the years, many researchers have modified and made the simple model, initially proposed by Marti and Schlaich, more specific for each type of structure. This paper covers an an...
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sg-ntu-dr.10356-159392023-03-03T16:52:48Z Behaviour of reinforced concrete beam-column joint subjected to in-plane loading Azzalina Zainuddin Tan Kang Hai School of Civil and Environmental Engineering DRNTU::Engineering::Civil engineering::Structures and design Strut-and-tie modeling is one of the common models used in the analysis of reinforced concrete structure behaviours. Over the years, many researchers have modified and made the simple model, initially proposed by Marti and Schlaich, more specific for each type of structure. This paper covers an analysis of one such model proposed by Hwang and Lee (2000). Based on a previous softened strut-and –tie model developed by them to determine the shear strengths of exterior beam-column joints, this model has been modified to predict that of an interior beam-column joint. Apart from an analysis of how the model was derived, the author wrote an algorithm using Excel program in order to run the model based on parameters from a design of an interior beam-column joint. Apart from the program coding using Excel spreadsheet, the author also assisted the post graduate student, Mr Yu Jun, in his experiment on an interior beam-column joint. The section on experiment on beam-column joint specimen would describe this experience. The report concludes with a short comparison of the results obtained from the Hwang and Lee model developed by the author, and the Park and Paulay model analyzed by the authors’ partner. Bachelor of Engineering (Civil) 2009-05-19T06:34:41Z 2009-05-19T06:34:41Z 2009 2009 Final Year Project (FYP) http://hdl.handle.net/10356/15939 en Nanyang Technological University 55 p. application/pdf |
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DRNTU::Engineering::Civil engineering::Structures and design Azzalina Zainuddin Behaviour of reinforced concrete beam-column joint subjected to in-plane loading |
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Strut-and-tie modeling is one of the common models used in the analysis of reinforced concrete structure behaviours. Over the years, many researchers have modified and made the simple model, initially proposed by Marti and Schlaich, more specific for each type of structure.
This paper covers an analysis of one such model proposed by Hwang and Lee (2000). Based on a previous softened strut-and –tie model developed by them to determine the shear strengths of exterior beam-column joints, this model has been modified to predict that of an interior beam-column joint.
Apart from an analysis of how the model was derived, the author wrote an algorithm using Excel program in order to run the model based on parameters from a design of an interior beam-column joint.
Apart from the program coding using Excel spreadsheet, the author also assisted the post graduate student, Mr Yu Jun, in his experiment on an interior beam-column joint. The section on experiment on beam-column joint specimen would describe this experience.
The report concludes with a short comparison of the results obtained from the Hwang and Lee model developed by the author, and the Park and Paulay model analyzed by the authors’ partner. |
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Tan Kang Hai |
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Tan Kang Hai Azzalina Zainuddin |
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Final Year Project |
author |
Azzalina Zainuddin |
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Azzalina Zainuddin |
title |
Behaviour of reinforced concrete beam-column joint subjected to in-plane loading |
title_short |
Behaviour of reinforced concrete beam-column joint subjected to in-plane loading |
title_full |
Behaviour of reinforced concrete beam-column joint subjected to in-plane loading |
title_fullStr |
Behaviour of reinforced concrete beam-column joint subjected to in-plane loading |
title_full_unstemmed |
Behaviour of reinforced concrete beam-column joint subjected to in-plane loading |
title_sort |
behaviour of reinforced concrete beam-column joint subjected to in-plane loading |
publishDate |
2009 |
url |
http://hdl.handle.net/10356/15939 |
_version_ |
1759858156877381632 |