Elastic design of slender high-strength RC circular columns confined with external tensioned steel straps
This article proposes a design approach to calculate the capacity of slender high-strength concrete (HSC) columns confined with a cost-effective Steel Strapping Tensioning Technique (SSTT). The approach is based on results from segmental analyses of slender SSTT-confined circular columns subjected t...
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my.utm.549492017-02-15T07:00:08Z http://eprints.utm.my/id/eprint/54949/ Elastic design of slender high-strength RC circular columns confined with external tensioned steel straps Ma, Chau Khun Awang, Abdullah Zawawi Omar, Wahid Pilakoutas, Kypros Mohd. Tahir, Mahmood Garcia, Reyes TA Engineering (General). Civil engineering (General) This article proposes a design approach to calculate the capacity of slender high-strength concrete (HSC) columns confined with a cost-effective Steel Strapping Tensioning Technique (SSTT). The approach is based on results from segmental analyses of slender SSTT-confined circular columns subjected to eccentric loads. A capacity reduction factor analogue to that proposed by Kwak and Kim (2004) accounts for the effect of slenderness in design. P-M interaction diagrams computed using rigorous nonlinear P-Delta analyses are compared to those calculated by the proposed approach to assess its accuracy. The results indicate that the proposed approach predicts conservatively the ultimate capacity of slender HSC circular columns confined using the SSTT, and therefore it can be used in the design of modern reinforced concrete (RC) structures. Multi-Science Publ 2015-08 Article PeerReviewed Ma, Chau Khun and Awang, Abdullah Zawawi and Omar, Wahid and Pilakoutas, Kypros and Mohd. Tahir, Mahmood and Garcia, Reyes (2015) Elastic design of slender high-strength RC circular columns confined with external tensioned steel straps. Advances in Structural Engineering, 18 (9). pp. 1487-1499. ISSN 2048-4011 |
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TA Engineering (General). Civil engineering (General) Ma, Chau Khun Awang, Abdullah Zawawi Omar, Wahid Pilakoutas, Kypros Mohd. Tahir, Mahmood Garcia, Reyes Elastic design of slender high-strength RC circular columns confined with external tensioned steel straps |
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This article proposes a design approach to calculate the capacity of slender high-strength concrete (HSC) columns confined with a cost-effective Steel Strapping Tensioning Technique (SSTT). The approach is based on results from segmental analyses of slender SSTT-confined circular columns subjected to eccentric loads. A capacity reduction factor analogue to that proposed by Kwak and Kim (2004) accounts for the effect of slenderness in design. P-M interaction diagrams computed using rigorous nonlinear P-Delta analyses are compared to those calculated by the proposed approach to assess its accuracy. The results indicate that the proposed approach predicts conservatively the ultimate capacity of slender HSC circular columns confined using the SSTT, and therefore it can be used in the design of modern reinforced concrete (RC) structures. |
format |
Article |
author |
Ma, Chau Khun Awang, Abdullah Zawawi Omar, Wahid Pilakoutas, Kypros Mohd. Tahir, Mahmood Garcia, Reyes |
author_facet |
Ma, Chau Khun Awang, Abdullah Zawawi Omar, Wahid Pilakoutas, Kypros Mohd. Tahir, Mahmood Garcia, Reyes |
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Ma, Chau Khun |
title |
Elastic design of slender high-strength RC circular columns confined with external tensioned steel straps |
title_short |
Elastic design of slender high-strength RC circular columns confined with external tensioned steel straps |
title_full |
Elastic design of slender high-strength RC circular columns confined with external tensioned steel straps |
title_fullStr |
Elastic design of slender high-strength RC circular columns confined with external tensioned steel straps |
title_full_unstemmed |
Elastic design of slender high-strength RC circular columns confined with external tensioned steel straps |
title_sort |
elastic design of slender high-strength rc circular columns confined with external tensioned steel straps |
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Multi-Science Publ |
publishDate |
2015 |
url |
http://eprints.utm.my/id/eprint/54949/ |
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1643653647780806656 |
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13.209306 |