Rehabilitation of notched circular hollow sectional steel beam using CFRP patch
The application of carbon fiber reinforced polymer (CFRP) composites for rehabilitation of steel structures has become vital in recent years. This paper presents an experimental program and a finite element (FE) modelling approach to study the effectiveness of CFRP patch for repair of notch damaged...
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my.utp.eprints.218292018-10-23T02:20:27Z Rehabilitation of notched circular hollow sectional steel beam using CFRP patch Setvati, M.R. Mustaffa, Z. The application of carbon fiber reinforced polymer (CFRP) composites for rehabilitation of steel structures has become vital in recent years. This paper presents an experimental program and a finite element (FE) modelling approach to study the effectiveness of CFRP patch for repair of notch damaged circular hollow sectional (CHS) steel beams. The proposed modeling approach is unique because it takes into account the orthotropic behavior and stacking sequence of composite materials. Parametric study was conducted to investigate the effect of initial damage (i.e., notch depth) on flexural performance of the notched beams and effectiveness of the repair system using the validated FE models. Results demonstrated the ability of CFRP patch to repair notched CHS steel beams, restoring them to their original flexural stiffness and strength. The effect of composite patch repair technique on post-elastic stiffness was more pronounced compared to the elastic stiffness. Composite patch repair becomes more effective when the level of initial damage of beam increases. Copyright © 2018 Techno-Press, Ltd. Techno Press 2018 Article PeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85049609121&doi=10.12989%2fscs.2018.26.2.151&partnerID=40&md5=e5bd6f07d6e9f2503a8b5f1b723c4cf8 Setvati, M.R. and Mustaffa, Z. (2018) Rehabilitation of notched circular hollow sectional steel beam using CFRP patch. Steel and Composite Structures, 26 (2). pp. 151-161. http://eprints.utp.edu.my/21829/ |
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The application of carbon fiber reinforced polymer (CFRP) composites for rehabilitation of steel structures has become vital in recent years. This paper presents an experimental program and a finite element (FE) modelling approach to study the effectiveness of CFRP patch for repair of notch damaged circular hollow sectional (CHS) steel beams. The proposed modeling approach is unique because it takes into account the orthotropic behavior and stacking sequence of composite materials. Parametric study was conducted to investigate the effect of initial damage (i.e., notch depth) on flexural performance of the notched beams and effectiveness of the repair system using the validated FE models. Results demonstrated the ability of CFRP patch to repair notched CHS steel beams, restoring them to their original flexural stiffness and strength. The effect of composite patch repair technique on post-elastic stiffness was more pronounced compared to the elastic stiffness. Composite patch repair becomes more effective when the level of initial damage of beam increases. Copyright © 2018 Techno-Press, Ltd. |
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Article |
author |
Setvati, M.R. Mustaffa, Z. |
spellingShingle |
Setvati, M.R. Mustaffa, Z. Rehabilitation of notched circular hollow sectional steel beam using CFRP patch |
author_facet |
Setvati, M.R. Mustaffa, Z. |
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Setvati, M.R. |
title |
Rehabilitation of notched circular hollow sectional steel beam using CFRP patch |
title_short |
Rehabilitation of notched circular hollow sectional steel beam using CFRP patch |
title_full |
Rehabilitation of notched circular hollow sectional steel beam using CFRP patch |
title_fullStr |
Rehabilitation of notched circular hollow sectional steel beam using CFRP patch |
title_full_unstemmed |
Rehabilitation of notched circular hollow sectional steel beam using CFRP patch |
title_sort |
rehabilitation of notched circular hollow sectional steel beam using cfrp patch |
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Techno Press |
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2018 |
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https://www.scopus.com/inward/record.uri?eid=2-s2.0-85049609121&doi=10.12989%2fscs.2018.26.2.151&partnerID=40&md5=e5bd6f07d6e9f2503a8b5f1b723c4cf8 http://eprints.utp.edu.my/21829/ |
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