Fatigue Damage Evolution and Monitoring of Carbon Fiber Reinforced Polymer Bridge Cable by Acoustic Emission Technique
Desirable properties of carbon fiber-reinforced plastic (CFRP) composites include their high strength, high rigidity, light weight, corrosion free, and fatigue resistance. CFRP composites are popularly applied in bridge engineering structures, but the causes of fatigue damage in CFRP bridges have no...
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Language: | English |
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Wiley
2012-10-01
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Series: | International Journal of Distributed Sensor Networks |
Online Access: | https://doi.org/10.1155/2012/282139 |
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author | Dongsheng Li Qian Hu Jinping Ou |
author_facet | Dongsheng Li Qian Hu Jinping Ou |
author_sort | Dongsheng Li |
collection | DOAJ |
description | Desirable properties of carbon fiber-reinforced plastic (CFRP) composites include their high strength, high rigidity, light weight, corrosion free, and fatigue resistance. CFRP composites are popularly applied in bridge engineering structures, but the causes of fatigue damage in CFRP bridges have not been thoroughly investigated. We adopt acoustic emission (AE) technology to monitor fatigue damage and failure of CFRP bridge cables. The relationship between AE signal characteristics and CFRP cable fatigue damage, as well as the pattern of AE signals during a fatigue test, is investigated. Results show that the failure models exhibit matrix and fiber-matrix interface failures at the initial stage of fatigue testing, followed by delamination and fiber rupture. The b value, Kurtosis index, and RA value based on AE characteristic parameters are proposed to describe the different damage stage failure modes. Finally, the failure types of AE waveform are extracted and analyzed using wavelet transformation. The AE technique proved to be a potential means for evaluating the fatigue damage characteristics of CFRP cables. |
format | Article |
id | doaj-art-56b92c0d19e44a74b91a1ab4092ccbc9 |
institution | Kabale University |
issn | 1550-1477 |
language | English |
publishDate | 2012-10-01 |
publisher | Wiley |
record_format | Article |
series | International Journal of Distributed Sensor Networks |
spelling | doaj-art-56b92c0d19e44a74b91a1ab4092ccbc92025-02-03T06:45:33ZengWileyInternational Journal of Distributed Sensor Networks1550-14772012-10-01810.1155/2012/282139Fatigue Damage Evolution and Monitoring of Carbon Fiber Reinforced Polymer Bridge Cable by Acoustic Emission TechniqueDongsheng LiQian HuJinping OuDesirable properties of carbon fiber-reinforced plastic (CFRP) composites include their high strength, high rigidity, light weight, corrosion free, and fatigue resistance. CFRP composites are popularly applied in bridge engineering structures, but the causes of fatigue damage in CFRP bridges have not been thoroughly investigated. We adopt acoustic emission (AE) technology to monitor fatigue damage and failure of CFRP bridge cables. The relationship between AE signal characteristics and CFRP cable fatigue damage, as well as the pattern of AE signals during a fatigue test, is investigated. Results show that the failure models exhibit matrix and fiber-matrix interface failures at the initial stage of fatigue testing, followed by delamination and fiber rupture. The b value, Kurtosis index, and RA value based on AE characteristic parameters are proposed to describe the different damage stage failure modes. Finally, the failure types of AE waveform are extracted and analyzed using wavelet transformation. The AE technique proved to be a potential means for evaluating the fatigue damage characteristics of CFRP cables.https://doi.org/10.1155/2012/282139 |
spellingShingle | Dongsheng Li Qian Hu Jinping Ou Fatigue Damage Evolution and Monitoring of Carbon Fiber Reinforced Polymer Bridge Cable by Acoustic Emission Technique International Journal of Distributed Sensor Networks |
title | Fatigue Damage Evolution and Monitoring of Carbon Fiber Reinforced Polymer Bridge Cable by Acoustic Emission Technique |
title_full | Fatigue Damage Evolution and Monitoring of Carbon Fiber Reinforced Polymer Bridge Cable by Acoustic Emission Technique |
title_fullStr | Fatigue Damage Evolution and Monitoring of Carbon Fiber Reinforced Polymer Bridge Cable by Acoustic Emission Technique |
title_full_unstemmed | Fatigue Damage Evolution and Monitoring of Carbon Fiber Reinforced Polymer Bridge Cable by Acoustic Emission Technique |
title_short | Fatigue Damage Evolution and Monitoring of Carbon Fiber Reinforced Polymer Bridge Cable by Acoustic Emission Technique |
title_sort | fatigue damage evolution and monitoring of carbon fiber reinforced polymer bridge cable by acoustic emission technique |
url | https://doi.org/10.1155/2012/282139 |
work_keys_str_mv | AT dongshengli fatiguedamageevolutionandmonitoringofcarbonfiberreinforcedpolymerbridgecablebyacousticemissiontechnique AT qianhu fatiguedamageevolutionandmonitoringofcarbonfiberreinforcedpolymerbridgecablebyacousticemissiontechnique AT jinpingou fatiguedamageevolutionandmonitoringofcarbonfiberreinforcedpolymerbridgecablebyacousticemissiontechnique |