Analytical and experimental investigation on slip-in gusset plate connection for double c-channel sections of cold-formed steel

Background: Beam-column connections are one of the most important parts of each building, which influence local/global behaviour of structures under vertical and lateral loads. From a practical point of view, a desirable connection is one that can be implemented conveniently in the construction site...

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Main Authors: Aminuddin, Kiagus, Saggaff, Anis, Md. Tahir, Mahmood, P. Ngian, Shek, Sulaiman, Arizu, Firdaus, Muhammad, Aghlara, Reza
Format: Article
Language:English
Published: Bentham Science Publishers 2020
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Online Access:http://eprints.utm.my/id/eprint/93671/1/MahmoodMdTahir2020_AnalyticalandExperimentalInvestigationonSlip.pdf
http://eprints.utm.my/id/eprint/93671/
http://dx.doi.org/10.2174/1874149501913010210
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spelling my.utm.936712021-12-31T08:46:10Z http://eprints.utm.my/id/eprint/93671/ Analytical and experimental investigation on slip-in gusset plate connection for double c-channel sections of cold-formed steel Aminuddin, Kiagus Saggaff, Anis Md. Tahir, Mahmood P. Ngian, Shek Sulaiman, Arizu Firdaus, Muhammad Aghlara, Reza TA Engineering (General). Civil engineering (General) Background: Beam-column connections are one of the most important parts of each building, which influence local/global behaviour of structures under vertical and lateral loads. From a practical point of view, a desirable connection is one that can be implemented conveniently in the construction site. For this reason, the connection with the gusset plate and bolts is one of the most commonly used connections to join structural members together. The application of this type of connection with cold-formed steels has not gotten enough attention in the literature and needs more investigation. Objective: The objective of this study is to evaluate the behaviour of the gusset plate connection with cold-formed steel sections based on its moment-rotation relation obtained experimentally when the beam depth is varied. Methods: Three specimens were built with three different depth of beams (i.e. 200, 250, and 300 mm) and constant depth of column (i.e. 300 mm). A same size gusset plate with a thickness of 10 mm was used for all the connections. A Full-Scale Isolated Joint test (FSIJ) was conducted as a testing method in this study to investigate the behaviour of the connection. Results: Three distinct modes of failure were distinguished based on observations in the experiments. Moreover, the obtained results implied that there is a meaningful difference between experimental and analytical results for moment capacity and rotational stiffness of the tested connections. Likewise, the results showed that the beam depth in this joint should be limited to have a ductile connection when the column depth is constant. Conclusion: The moment capacity of the tested connections was analytically underestimated by Eurocode 3 relative to the experimental results with an average amount of 75%, while the connection rotational stiffness overestimated by the analytical results with an average of 74%. Bentham Science Publishers 2020-01 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/93671/1/MahmoodMdTahir2020_AnalyticalandExperimentalInvestigationonSlip.pdf Aminuddin, Kiagus and Saggaff, Anis and Md. Tahir, Mahmood and P. Ngian, Shek and Sulaiman, Arizu and Firdaus, Muhammad and Aghlara, Reza (2020) Analytical and experimental investigation on slip-in gusset plate connection for double c-channel sections of cold-formed steel. Open Civil Engineering Journal, 13 (1). pp. 210-217. ISSN 1874-1495 http://dx.doi.org/10.2174/1874149501913010210 DOI:10.2174/1874149501913010210
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
Aminuddin, Kiagus
Saggaff, Anis
Md. Tahir, Mahmood
P. Ngian, Shek
Sulaiman, Arizu
Firdaus, Muhammad
Aghlara, Reza
Analytical and experimental investigation on slip-in gusset plate connection for double c-channel sections of cold-formed steel
description Background: Beam-column connections are one of the most important parts of each building, which influence local/global behaviour of structures under vertical and lateral loads. From a practical point of view, a desirable connection is one that can be implemented conveniently in the construction site. For this reason, the connection with the gusset plate and bolts is one of the most commonly used connections to join structural members together. The application of this type of connection with cold-formed steels has not gotten enough attention in the literature and needs more investigation. Objective: The objective of this study is to evaluate the behaviour of the gusset plate connection with cold-formed steel sections based on its moment-rotation relation obtained experimentally when the beam depth is varied. Methods: Three specimens were built with three different depth of beams (i.e. 200, 250, and 300 mm) and constant depth of column (i.e. 300 mm). A same size gusset plate with a thickness of 10 mm was used for all the connections. A Full-Scale Isolated Joint test (FSIJ) was conducted as a testing method in this study to investigate the behaviour of the connection. Results: Three distinct modes of failure were distinguished based on observations in the experiments. Moreover, the obtained results implied that there is a meaningful difference between experimental and analytical results for moment capacity and rotational stiffness of the tested connections. Likewise, the results showed that the beam depth in this joint should be limited to have a ductile connection when the column depth is constant. Conclusion: The moment capacity of the tested connections was analytically underestimated by Eurocode 3 relative to the experimental results with an average amount of 75%, while the connection rotational stiffness overestimated by the analytical results with an average of 74%.
format Article
author Aminuddin, Kiagus
Saggaff, Anis
Md. Tahir, Mahmood
P. Ngian, Shek
Sulaiman, Arizu
Firdaus, Muhammad
Aghlara, Reza
author_facet Aminuddin, Kiagus
Saggaff, Anis
Md. Tahir, Mahmood
P. Ngian, Shek
Sulaiman, Arizu
Firdaus, Muhammad
Aghlara, Reza
author_sort Aminuddin, Kiagus
title Analytical and experimental investigation on slip-in gusset plate connection for double c-channel sections of cold-formed steel
title_short Analytical and experimental investigation on slip-in gusset plate connection for double c-channel sections of cold-formed steel
title_full Analytical and experimental investigation on slip-in gusset plate connection for double c-channel sections of cold-formed steel
title_fullStr Analytical and experimental investigation on slip-in gusset plate connection for double c-channel sections of cold-formed steel
title_full_unstemmed Analytical and experimental investigation on slip-in gusset plate connection for double c-channel sections of cold-formed steel
title_sort analytical and experimental investigation on slip-in gusset plate connection for double c-channel sections of cold-formed steel
publisher Bentham Science Publishers
publishDate 2020
url http://eprints.utm.my/id/eprint/93671/1/MahmoodMdTahir2020_AnalyticalandExperimentalInvestigationonSlip.pdf
http://eprints.utm.my/id/eprint/93671/
http://dx.doi.org/10.2174/1874149501913010210
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score 13.160551