The design of short sstt-confined circular HSC columns

Steel-straps tensioning technique (SSTT) has been proven to be an effective mean to confined High-strength concrete (HSC). The pretensioned force offers by this confining method can significantly restraint the small lateral dilation of HSC. However, most of the design guidelines only concerned with...

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Main Authors: Awang, Abdullah Zawawi, Omar, Wahid, Ma, Chau Khun, Liang, Maybelle
Format: Article
Published: 2013
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Online Access:http://eprints.utm.my/id/eprint/40813/
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Institution: Universiti Teknologi Malaysia
id my.utm.40813
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spelling my.utm.408132017-08-13T04:07:46Z http://eprints.utm.my/id/eprint/40813/ The design of short sstt-confined circular HSC columns Awang, Abdullah Zawawi Omar, Wahid Ma, Chau Khun Liang, Maybelle TA Engineering (General). Civil engineering (General) Steel-straps tensioning technique (SSTT) has been proven to be an effective mean to confined High-strength concrete (HSC). The pretensioned force offers by this confining method can significantly restraint the small lateral dilation of HSC. However, most of the design guidelines only concerned with FRP-confined columns subjected to concentric compression. The direct application of these design guidelines on the SSTT-confined HSC column is being questioned due to different material and confining method adopted. Hence, a numerical study was carried out in the view of developing a simple design equation for HSC column confined with SSTT. The parameters such as SSTT-confinement ratio, load eccentricities and slenderness ratio were tested. Based on the numerical results, design equations based on regression analysis were proposed to determine the ultimate load and bending moment of SSTT-confined HSC columns. 2013 Article PeerReviewed Awang, Abdullah Zawawi and Omar, Wahid and Ma, Chau Khun and Liang, Maybelle (2013) The design of short sstt-confined circular HSC columns. International Journal of Research in Engineering and Technology, 2 (8). pp. 331-336. ISSN 2319-1163
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)
Awang, Abdullah Zawawi
Omar, Wahid
Ma, Chau Khun
Liang, Maybelle
The design of short sstt-confined circular HSC columns
description Steel-straps tensioning technique (SSTT) has been proven to be an effective mean to confined High-strength concrete (HSC). The pretensioned force offers by this confining method can significantly restraint the small lateral dilation of HSC. However, most of the design guidelines only concerned with FRP-confined columns subjected to concentric compression. The direct application of these design guidelines on the SSTT-confined HSC column is being questioned due to different material and confining method adopted. Hence, a numerical study was carried out in the view of developing a simple design equation for HSC column confined with SSTT. The parameters such as SSTT-confinement ratio, load eccentricities and slenderness ratio were tested. Based on the numerical results, design equations based on regression analysis were proposed to determine the ultimate load and bending moment of SSTT-confined HSC columns.
format Article
author Awang, Abdullah Zawawi
Omar, Wahid
Ma, Chau Khun
Liang, Maybelle
author_facet Awang, Abdullah Zawawi
Omar, Wahid
Ma, Chau Khun
Liang, Maybelle
author_sort Awang, Abdullah Zawawi
title The design of short sstt-confined circular HSC columns
title_short The design of short sstt-confined circular HSC columns
title_full The design of short sstt-confined circular HSC columns
title_fullStr The design of short sstt-confined circular HSC columns
title_full_unstemmed The design of short sstt-confined circular HSC columns
title_sort design of short sstt-confined circular hsc columns
publishDate 2013
url http://eprints.utm.my/id/eprint/40813/
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