A Comparative Analysis on the Optimization of Carbon Fibre Reinforced Polymer and Glass Fiber Reinforced Polymers as Wrapping Structures on Defected Piping System using Computational Simulation Approach
This study examined the application of carbon fiber reinforced polymer (CFRP) and glass fiber reinforced polymer (GFRP) as wrapping structures for defective pipe systems. The structural behavior and performance of the CFRP and GFRP wrapping structures were assessed using computational simulation met...
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semarak ilmu
2024
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Online Access: | http://eprints.uthm.edu.my/12400/1/J17865_519900e1cd0d049d0fd05e80733ab8fa.pdf http://eprints.uthm.edu.my/12400/ https://doi.org/10.37934/aram.118.1.7989 |
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my.uthm.eprints.124002025-02-21T07:51:37Z http://eprints.uthm.edu.my/12400/ A Comparative Analysis on the Optimization of Carbon Fibre Reinforced Polymer and Glass Fiber Reinforced Polymers as Wrapping Structures on Defected Piping System using Computational Simulation Approach M. Letchumanan, Shaktivell Tajul Arifin, Ahmad Mubarak Nor Salim, Nor Adrian Taib, Ishkrizat TA Engineering (General). Civil engineering (General) This study examined the application of carbon fiber reinforced polymer (CFRP) and glass fiber reinforced polymer (GFRP) as wrapping structures for defective pipe systems. The structural behavior and performance of the CFRP and GFRP wrapping structures were assessed using computational simulation methodologies. The goal of the study was to determine the best wrapping material for strengthening the integrity and reliability of piping systems with defects by comparing the results of the simulations. The study evaluated the capability of the proposed composite wrapping structure through CAD simulation. The simulations provided preliminary analysis and visually depicted deformations, aiding in the selection of an optimized lamination orientation for the composite wrapping structure in real-world applications. Eventually, this approach could have alleviated two primary failure modes that were common in composite repair: composite overloading due to excessive thickness and composite delamination from the substrate. The results of this study would have helped enhance effective and efficient pipe repair techniques in a variety of industries by offering useful insights into the selection and use of suitable wrapping structures for repairing defective pipes. semarak ilmu 2024 Article PeerReviewed text en http://eprints.uthm.edu.my/12400/1/J17865_519900e1cd0d049d0fd05e80733ab8fa.pdf M. Letchumanan, Shaktivell and Tajul Arifin, Ahmad Mubarak and Nor Salim, Nor Adrian and Taib, Ishkrizat (2024) A Comparative Analysis on the Optimization of Carbon Fibre Reinforced Polymer and Glass Fiber Reinforced Polymers as Wrapping Structures on Defected Piping System using Computational Simulation Approach. Journal of Advanced Research in Applied Mechanics, 118 (1). pp. 79-89. ISSN 2289-7895 https://doi.org/10.37934/aram.118.1.7989 |
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TA Engineering (General). Civil engineering (General) M. Letchumanan, Shaktivell Tajul Arifin, Ahmad Mubarak Nor Salim, Nor Adrian Taib, Ishkrizat A Comparative Analysis on the Optimization of Carbon Fibre Reinforced Polymer and Glass Fiber Reinforced Polymers as Wrapping Structures on Defected Piping System using Computational Simulation Approach |
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This study examined the application of carbon fiber reinforced polymer (CFRP) and glass fiber reinforced polymer (GFRP) as wrapping structures for defective pipe systems. The structural behavior and performance of the CFRP and GFRP wrapping structures were assessed using computational simulation methodologies. The goal of the study was to determine the best wrapping material for strengthening the integrity and reliability of piping systems with defects by comparing the results of the simulations. The study evaluated the capability of the proposed composite wrapping structure through CAD simulation. The simulations provided preliminary analysis and visually depicted
deformations, aiding in the selection of an optimized lamination orientation for the composite wrapping structure in real-world applications. Eventually, this approach
could have alleviated two primary failure modes that were common in composite repair: composite overloading due to excessive thickness and composite delamination from the substrate. The results of this study would have helped enhance effective and efficient pipe repair techniques in a variety of industries by offering useful insights into the selection and use of suitable wrapping structures for repairing defective pipes. |
format |
Article |
author |
M. Letchumanan, Shaktivell Tajul Arifin, Ahmad Mubarak Nor Salim, Nor Adrian Taib, Ishkrizat |
author_facet |
M. Letchumanan, Shaktivell Tajul Arifin, Ahmad Mubarak Nor Salim, Nor Adrian Taib, Ishkrizat |
author_sort |
M. Letchumanan, Shaktivell |
title |
A Comparative Analysis on the Optimization of Carbon Fibre Reinforced Polymer and Glass Fiber Reinforced Polymers as Wrapping Structures on Defected Piping System using Computational Simulation Approach |
title_short |
A Comparative Analysis on the Optimization of Carbon Fibre Reinforced Polymer and Glass Fiber Reinforced Polymers as Wrapping Structures on Defected Piping System using Computational Simulation Approach |
title_full |
A Comparative Analysis on the Optimization of Carbon Fibre Reinforced Polymer and Glass Fiber Reinforced Polymers as Wrapping Structures on Defected Piping System using Computational Simulation Approach |
title_fullStr |
A Comparative Analysis on the Optimization of Carbon Fibre Reinforced Polymer and Glass Fiber Reinforced Polymers as Wrapping Structures on Defected Piping System using Computational Simulation Approach |
title_full_unstemmed |
A Comparative Analysis on the Optimization of Carbon Fibre Reinforced Polymer and Glass Fiber Reinforced Polymers as Wrapping Structures on Defected Piping System using Computational Simulation Approach |
title_sort |
comparative analysis on the optimization of carbon fibre reinforced polymer and glass fiber reinforced polymers as wrapping structures on defected piping system using computational simulation approach |
publisher |
semarak ilmu |
publishDate |
2024 |
url |
http://eprints.uthm.edu.my/12400/1/J17865_519900e1cd0d049d0fd05e80733ab8fa.pdf http://eprints.uthm.edu.my/12400/ https://doi.org/10.37934/aram.118.1.7989 |
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1825163111098744832 |