Numerical study of joint behaviour for top-seat flange cleat connection in cold-formed steel structures

The use of cold-formed steel for primary load bearing members in low and medium rise buildings has become an increasingly popular form of construction. The design of connections between these members is crucial to the overall structural integrity of such buildings. However, for beam-to-column joint...

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Main Authors: Lee, Y. H., Tan, C. S., Mohammad, S., Lim, J. B. P., Johnston, R.
Format: Article
Published: Sharif University of Technology 2015
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Online Access:http://eprints.utm.my/id/eprint/58676/
http://scientiairanica.sharif.edu/article_3733.html.
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.586762021-08-25T09:11:26Z http://eprints.utm.my/id/eprint/58676/ Numerical study of joint behaviour for top-seat flange cleat connection in cold-formed steel structures Lee, Y. H. Tan, C. S. Mohammad, S. Lim, J. B. P. Johnston, R. TA Engineering (General). Civil engineering (General) The use of cold-formed steel for primary load bearing members in low and medium rise buildings has become an increasingly popular form of construction. The design of connections between these members is crucial to the overall structural integrity of such buildings. However, for beam-to-column joint design, recent codes of practice show ambiguity in the mechanical behaviour. Further research is required to investigate the strength, stiffness and ductility prediction of such connections. This paper addresses these concerns by proposing simplified formulas for the moment-rotation behaviour of light steel frames with bolted top-seat flange cleat joints. A finite element study is presented which is validated against laboratory experimental tests on cold-formed steel arrangements. The validated model is used within a parametrical study to investigate several additional geometrical parameters that are not included in the experimental works. An exponential equation has been proposed for large deformation of top-seat flange cleat joint under monotonic vertical load. The predictions using the equations are compared to the design codes (BS EN1993-1-8) and experimental data. From the comparison, the proposed equation can improve the BS EN1993-1-8 prediction from 168.08% difference, compared to experimental results, to 7.09% difference. The new proposed model gives a safe design for top-seat flange cleat joint in cold-formed steel light frame construction. Sharif University of Technology 2015 Article PeerReviewed Lee, Y. H. and Tan, C. S. and Mohammad, S. and Lim, J. B. P. and Johnston, R. (2015) Numerical study of joint behaviour for top-seat flange cleat connection in cold-formed steel structures. Scientia Iranica, 22 (4). pp. 1554-1566. ISSN 1026-3098 http://scientiairanica.sharif.edu/article_3733.html.
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/
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
Lee, Y. H.
Tan, C. S.
Mohammad, S.
Lim, J. B. P.
Johnston, R.
Numerical study of joint behaviour for top-seat flange cleat connection in cold-formed steel structures
description The use of cold-formed steel for primary load bearing members in low and medium rise buildings has become an increasingly popular form of construction. The design of connections between these members is crucial to the overall structural integrity of such buildings. However, for beam-to-column joint design, recent codes of practice show ambiguity in the mechanical behaviour. Further research is required to investigate the strength, stiffness and ductility prediction of such connections. This paper addresses these concerns by proposing simplified formulas for the moment-rotation behaviour of light steel frames with bolted top-seat flange cleat joints. A finite element study is presented which is validated against laboratory experimental tests on cold-formed steel arrangements. The validated model is used within a parametrical study to investigate several additional geometrical parameters that are not included in the experimental works. An exponential equation has been proposed for large deformation of top-seat flange cleat joint under monotonic vertical load. The predictions using the equations are compared to the design codes (BS EN1993-1-8) and experimental data. From the comparison, the proposed equation can improve the BS EN1993-1-8 prediction from 168.08% difference, compared to experimental results, to 7.09% difference. The new proposed model gives a safe design for top-seat flange cleat joint in cold-formed steel light frame construction.
format Article
author Lee, Y. H.
Tan, C. S.
Mohammad, S.
Lim, J. B. P.
Johnston, R.
author_facet Lee, Y. H.
Tan, C. S.
Mohammad, S.
Lim, J. B. P.
Johnston, R.
author_sort Lee, Y. H.
title Numerical study of joint behaviour for top-seat flange cleat connection in cold-formed steel structures
title_short Numerical study of joint behaviour for top-seat flange cleat connection in cold-formed steel structures
title_full Numerical study of joint behaviour for top-seat flange cleat connection in cold-formed steel structures
title_fullStr Numerical study of joint behaviour for top-seat flange cleat connection in cold-formed steel structures
title_full_unstemmed Numerical study of joint behaviour for top-seat flange cleat connection in cold-formed steel structures
title_sort numerical study of joint behaviour for top-seat flange cleat connection in cold-formed steel structures
publisher Sharif University of Technology
publishDate 2015
url http://eprints.utm.my/id/eprint/58676/
http://scientiairanica.sharif.edu/article_3733.html.
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