Ultimate load of built-up cold formed steel column

Cold formed steel (CFS) has been used as the primary structure for flexural and compression member due to varieties of advantages such as high strength to weight ratio, high corrosion resistance, and ease of fabrication. The criteria need to be considered in improving the structural strength is the...

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Main Authors: Muftah, Fadhluhartini, Mohd. Sani, Mohd. Syahrul Hisyam, Mohammad, Shahrin, Md. Tahir, Mahmood
Format: Article
Published: Asian Research Publishing Network 2014
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Online Access:http://eprints.utm.my/id/eprint/63149/
https://www.researchgate.net/publication/287016336
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spelling my.utm.631492017-06-15T02:05:20Z http://eprints.utm.my/id/eprint/63149/ Ultimate load of built-up cold formed steel column Muftah, Fadhluhartini Mohd. Sani, Mohd. Syahrul Hisyam Mohammad, Shahrin Md. Tahir, Mahmood TA Engineering (General). Civil engineering (General) Cold formed steel (CFS) has been used as the primary structure for flexural and compression member due to varieties of advantages such as high strength to weight ratio, high corrosion resistance, and ease of fabrication. The criteria need to be considered in improving the structural strength is the fabrication method. Fast and easy fabrication can produce an efficient structure. Built-up of normal CFS into new member with higher strength can be produced efficiently by attaching the normal steel using self-drilling screw. CFS channel with constant size has been used to produce built-up, back to back (BTB), and box-up (BU) with varieties of length. The constant spacing were used at 400 mm centre to centre along its length and supported by using an angle plate that screw through its web. 18 nos of columns were tested for compression until the column cannot resist any increment of load. The ultimate loads were compared to the predicted buckling load using EC3-1-3. The prediction of column capacity is based on flexural buckling and torsional buckling failure. BTB column results in higher load except for 2.5 m length, while the differences of experimental load are up to 24 % to the experimental. Meanwhile, BU results in higher load for all columns with differences up to 80 % compared to the code and the code is considered too conservative for this column type. Asian Research Publishing Network 2014 Article PeerReviewed Muftah, Fadhluhartini and Mohd. Sani, Mohd. Syahrul Hisyam and Mohammad, Shahrin and Md. Tahir, Mahmood (2014) Ultimate load of built-up cold formed steel column. ARPN Journal of Engineering and Applied Sciences, 9 (11). pp. 2095-2101. ISSN 1819-6608 https://www.researchgate.net/publication/287016336
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)
Muftah, Fadhluhartini
Mohd. Sani, Mohd. Syahrul Hisyam
Mohammad, Shahrin
Md. Tahir, Mahmood
Ultimate load of built-up cold formed steel column
description Cold formed steel (CFS) has been used as the primary structure for flexural and compression member due to varieties of advantages such as high strength to weight ratio, high corrosion resistance, and ease of fabrication. The criteria need to be considered in improving the structural strength is the fabrication method. Fast and easy fabrication can produce an efficient structure. Built-up of normal CFS into new member with higher strength can be produced efficiently by attaching the normal steel using self-drilling screw. CFS channel with constant size has been used to produce built-up, back to back (BTB), and box-up (BU) with varieties of length. The constant spacing were used at 400 mm centre to centre along its length and supported by using an angle plate that screw through its web. 18 nos of columns were tested for compression until the column cannot resist any increment of load. The ultimate loads were compared to the predicted buckling load using EC3-1-3. The prediction of column capacity is based on flexural buckling and torsional buckling failure. BTB column results in higher load except for 2.5 m length, while the differences of experimental load are up to 24 % to the experimental. Meanwhile, BU results in higher load for all columns with differences up to 80 % compared to the code and the code is considered too conservative for this column type.
format Article
author Muftah, Fadhluhartini
Mohd. Sani, Mohd. Syahrul Hisyam
Mohammad, Shahrin
Md. Tahir, Mahmood
author_facet Muftah, Fadhluhartini
Mohd. Sani, Mohd. Syahrul Hisyam
Mohammad, Shahrin
Md. Tahir, Mahmood
author_sort Muftah, Fadhluhartini
title Ultimate load of built-up cold formed steel column
title_short Ultimate load of built-up cold formed steel column
title_full Ultimate load of built-up cold formed steel column
title_fullStr Ultimate load of built-up cold formed steel column
title_full_unstemmed Ultimate load of built-up cold formed steel column
title_sort ultimate load of built-up cold formed steel column
publisher Asian Research Publishing Network
publishDate 2014
url http://eprints.utm.my/id/eprint/63149/
https://www.researchgate.net/publication/287016336
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score 13.214268