Monitoring Poisson’s Ratio Degradation of FRP Composites under Fatigue Loading Using Biaxially Embedded FBG Sensors

The significance of strain measurement is obvious for the analysis of Fiber-Reinforced Polymer (FRP) composites. Conventional strain measurement methods are sufficient for static testing in general. Nevertheless, if the requirements exceed the capabilities of these conventional methods, more sophist...

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Main Authors: Erdem Akay, Cagatay Yilmaz, Esat S. Kocaman, Halit S. Turkmen, Mehmet Yildiz
Format: Article
Language:English
Published: MDPI AG 2016-09-01
Series:Materials
Subjects:
FBG
Online Access:http://www.mdpi.com/1996-1944/9/9/781
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spelling doaj-d05e5b7f142b4f558148cdd24f0a10a22020-11-24T23:02:50ZengMDPI AGMaterials1996-19442016-09-019978110.3390/ma9090781ma9090781Monitoring Poisson’s Ratio Degradation of FRP Composites under Fatigue Loading Using Biaxially Embedded FBG SensorsErdem Akay0Cagatay Yilmaz1Esat S. Kocaman2Halit S. Turkmen3Mehmet Yildiz4Faculty of Aeronautics and Astronautics, Ayazaga Campus, Istanbul Technical University, Maslak, Istanbul 34469, TurkeyFaculty of Engineering and Natural Sciences, SU-Kordsa Composite Technologies Center of Excellence and Integrated Manufacturing Technologies Research and Application Center, Sabanci University, Orhanli-Tuzla, Istanbul 34956, TurkeyFaculty of Engineering and Natural Sciences, SU-Kordsa Composite Technologies Center of Excellence and Integrated Manufacturing Technologies Research and Application Center, Sabanci University, Orhanli-Tuzla, Istanbul 34956, TurkeyFaculty of Aeronautics and Astronautics, Ayazaga Campus, Istanbul Technical University, Maslak, Istanbul 34469, TurkeyFaculty of Engineering and Natural Sciences, SU-Kordsa Composite Technologies Center of Excellence and Integrated Manufacturing Technologies Research and Application Center, Sabanci University, Orhanli-Tuzla, Istanbul 34956, TurkeyThe significance of strain measurement is obvious for the analysis of Fiber-Reinforced Polymer (FRP) composites. Conventional strain measurement methods are sufficient for static testing in general. Nevertheless, if the requirements exceed the capabilities of these conventional methods, more sophisticated techniques are necessary to obtain strain data. Fiber Bragg Grating (FBG) sensors have many advantages for strain measurement over conventional ones. Thus, the present paper suggests a novel method for biaxial strain measurement using embedded FBG sensors during the fatigue testing of FRP composites. Poisson’s ratio and its reduction were monitored for each cyclic loading by using embedded FBG sensors for a given specimen and correlated with the fatigue stages determined based on the variations of the applied fatigue loading and temperature due to the autogenous heating to predict an oncoming failure of the continuous fiber-reinforced epoxy matrix composite specimens under fatigue loading. The results show that FBG sensor technology has a remarkable potential for monitoring the evolution of Poisson’s ratio on a cycle-by-cycle basis, which can reliably be used towards tracking the fatigue stages of composite for structural health monitoring purposes.http://www.mdpi.com/1996-1944/9/9/781strainPoisson’s ratioFBGcompositefatiguelateral strain
collection DOAJ
language English
format Article
sources DOAJ
author Erdem Akay
Cagatay Yilmaz
Esat S. Kocaman
Halit S. Turkmen
Mehmet Yildiz
spellingShingle Erdem Akay
Cagatay Yilmaz
Esat S. Kocaman
Halit S. Turkmen
Mehmet Yildiz
Monitoring Poisson’s Ratio Degradation of FRP Composites under Fatigue Loading Using Biaxially Embedded FBG Sensors
Materials
strain
Poisson’s ratio
FBG
composite
fatigue
lateral strain
author_facet Erdem Akay
Cagatay Yilmaz
Esat S. Kocaman
Halit S. Turkmen
Mehmet Yildiz
author_sort Erdem Akay
title Monitoring Poisson’s Ratio Degradation of FRP Composites under Fatigue Loading Using Biaxially Embedded FBG Sensors
title_short Monitoring Poisson’s Ratio Degradation of FRP Composites under Fatigue Loading Using Biaxially Embedded FBG Sensors
title_full Monitoring Poisson’s Ratio Degradation of FRP Composites under Fatigue Loading Using Biaxially Embedded FBG Sensors
title_fullStr Monitoring Poisson’s Ratio Degradation of FRP Composites under Fatigue Loading Using Biaxially Embedded FBG Sensors
title_full_unstemmed Monitoring Poisson’s Ratio Degradation of FRP Composites under Fatigue Loading Using Biaxially Embedded FBG Sensors
title_sort monitoring poisson’s ratio degradation of frp composites under fatigue loading using biaxially embedded fbg sensors
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2016-09-01
description The significance of strain measurement is obvious for the analysis of Fiber-Reinforced Polymer (FRP) composites. Conventional strain measurement methods are sufficient for static testing in general. Nevertheless, if the requirements exceed the capabilities of these conventional methods, more sophisticated techniques are necessary to obtain strain data. Fiber Bragg Grating (FBG) sensors have many advantages for strain measurement over conventional ones. Thus, the present paper suggests a novel method for biaxial strain measurement using embedded FBG sensors during the fatigue testing of FRP composites. Poisson’s ratio and its reduction were monitored for each cyclic loading by using embedded FBG sensors for a given specimen and correlated with the fatigue stages determined based on the variations of the applied fatigue loading and temperature due to the autogenous heating to predict an oncoming failure of the continuous fiber-reinforced epoxy matrix composite specimens under fatigue loading. The results show that FBG sensor technology has a remarkable potential for monitoring the evolution of Poisson’s ratio on a cycle-by-cycle basis, which can reliably be used towards tracking the fatigue stages of composite for structural health monitoring purposes.
topic strain
Poisson’s ratio
FBG
composite
fatigue
lateral strain
url http://www.mdpi.com/1996-1944/9/9/781
work_keys_str_mv AT erdemakay monitoringpoissonsratiodegradationoffrpcompositesunderfatigueloadingusingbiaxiallyembeddedfbgsensors
AT cagatayyilmaz monitoringpoissonsratiodegradationoffrpcompositesunderfatigueloadingusingbiaxiallyembeddedfbgsensors
AT esatskocaman monitoringpoissonsratiodegradationoffrpcompositesunderfatigueloadingusingbiaxiallyembeddedfbgsensors
AT halitsturkmen monitoringpoissonsratiodegradationoffrpcompositesunderfatigueloadingusingbiaxiallyembeddedfbgsensors
AT mehmetyildiz monitoringpoissonsratiodegradationoffrpcompositesunderfatigueloadingusingbiaxiallyembeddedfbgsensors
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