Structural Rehabilitation of API Steel Pipes Using GFRP Under Dynamic Condition
Corrosion of steel pipes significantly challenges industries such as oil and gas, water transport, and chemicals, where pipeline integrity is paramount. Degradation due to corrosion leads to reduced efficiency, heightened risk of catastrophic failure, and substantial economic and safety concerns. Th...
Published in: | JURNAL KEJURUTERAAN |
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Main Authors: | , , , , , , , |
Format: | Article |
Language: | English |
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UKM PRESS
2024
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Online Access: | https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001337032000038 |
author |
Hashim Mohd Hisbany Mohd; Muda Mohd Fakri; Norhan Nurhakim Hazman; Shahid Muhammad Daniel Abdul; Fadzil Najwa Mohammad; Sam Abdul Rahman Mohd; Al-Fakih Amin |
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spellingShingle |
Hashim Mohd Hisbany Mohd; Muda Mohd Fakri; Norhan Nurhakim Hazman; Shahid Muhammad Daniel Abdul; Fadzil Najwa Mohammad; Sam Abdul Rahman Mohd; Al-Fakih Amin Structural Rehabilitation of API Steel Pipes Using GFRP Under Dynamic Condition Engineering |
author_facet |
Hashim Mohd Hisbany Mohd; Muda Mohd Fakri; Norhan Nurhakim Hazman; Shahid Muhammad Daniel Abdul; Fadzil Najwa Mohammad; Sam Abdul Rahman Mohd; Al-Fakih Amin |
author_sort |
Hashim |
spelling |
Hashim, Mohd Hisbany Mohd; Muda, Mohd Fakri; Norhan, Nurhakim Hazman; Shahid, Muhammad Daniel Abdul; Fadzil, Najwa Mohammad; Sam, Abdul Rahman Mohd; Al-Fakih, Amin Structural Rehabilitation of API Steel Pipes Using GFRP Under Dynamic Condition JURNAL KEJURUTERAAN English Article Corrosion of steel pipes significantly challenges industries such as oil and gas, water transport, and chemicals, where pipeline integrity is paramount. Degradation due to corrosion leads to reduced efficiency, heightened risk of catastrophic failure, and substantial economic and safety concerns. This study investigates the effectiveness of Glass Fiber-Reinforced Polymer (GFRP) wrap in restoring and enhancing the performance of corroded API 5L X42 steel pipes. Through controlled corrosion induction, application of GFRP wrapping, and cyclic loading tests, this study offers a comprehensive understanding of the initial response and performance under dynamic condition. For unrepaired pipes, maximum force applied ranged from 67.84 kN to 404.8 kN as stroke increased from 1mm to 12mm, with corresponding maximum deformation from 0.8mm to 9.01mm. In contrast, GFRP-rehabilitated pipes demonstrated applied force ranging from 28.98 kN to 452.87 kN, with maximum deformation from 0.65mm to 14.41mm. These findings underscore the efficacy of GFRP patches in mitigating corrosion effects, extending pipeline service life, and reducing failure risk. This study validates theoretical models and offers practical guidance for adopting resilient materials in engineering, enhancing pipeline integrity in critical industrial applications. UKM PRESS 0128-0198 2289-7526 2024 36 5 10.17576/jkukm-2024-36(5)-37 Engineering gold WOS:001337032000038 https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001337032000038 |
title |
Structural Rehabilitation of API Steel Pipes Using GFRP Under Dynamic Condition |
title_short |
Structural Rehabilitation of API Steel Pipes Using GFRP Under Dynamic Condition |
title_full |
Structural Rehabilitation of API Steel Pipes Using GFRP Under Dynamic Condition |
title_fullStr |
Structural Rehabilitation of API Steel Pipes Using GFRP Under Dynamic Condition |
title_full_unstemmed |
Structural Rehabilitation of API Steel Pipes Using GFRP Under Dynamic Condition |
title_sort |
Structural Rehabilitation of API Steel Pipes Using GFRP Under Dynamic Condition |
container_title |
JURNAL KEJURUTERAAN |
language |
English |
format |
Article |
description |
Corrosion of steel pipes significantly challenges industries such as oil and gas, water transport, and chemicals, where pipeline integrity is paramount. Degradation due to corrosion leads to reduced efficiency, heightened risk of catastrophic failure, and substantial economic and safety concerns. This study investigates the effectiveness of Glass Fiber-Reinforced Polymer (GFRP) wrap in restoring and enhancing the performance of corroded API 5L X42 steel pipes. Through controlled corrosion induction, application of GFRP wrapping, and cyclic loading tests, this study offers a comprehensive understanding of the initial response and performance under dynamic condition. For unrepaired pipes, maximum force applied ranged from 67.84 kN to 404.8 kN as stroke increased from 1mm to 12mm, with corresponding maximum deformation from 0.8mm to 9.01mm. In contrast, GFRP-rehabilitated pipes demonstrated applied force ranging from 28.98 kN to 452.87 kN, with maximum deformation from 0.65mm to 14.41mm. These findings underscore the efficacy of GFRP patches in mitigating corrosion effects, extending pipeline service life, and reducing failure risk. This study validates theoretical models and offers practical guidance for adopting resilient materials in engineering, enhancing pipeline integrity in critical industrial applications. |
publisher |
UKM PRESS |
issn |
0128-0198 2289-7526 |
publishDate |
2024 |
container_volume |
36 |
container_issue |
5 |
doi_str_mv |
10.17576/jkukm-2024-36(5)-37 |
topic |
Engineering |
topic_facet |
Engineering |
accesstype |
gold |
id |
WOS:001337032000038 |
url |
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001337032000038 |
record_format |
wos |
collection |
Web of Science (WoS) |
_version_ |
1818940499741900800 |