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Visualization of subsurface damage in woven carbon fiber-reinforced composites using polarization-sensitive terahertz imaging

Article dans une revue avec comité de lecture
Auteur
DONG, Junliang
82338 School of Electrical and Computer Engineering - Georgia Insitute of Technology [ECE GeorgiaTech]
24541 Georgia Tech Lorraine [Metz]
POMARÈDE, Pascal
24541 Georgia Tech Lorraine [Metz]
CHEHAMI, Lynda
24541 Georgia Tech Lorraine [Metz]
LOCQUET, Alexandre
24541 Georgia Tech Lorraine [Metz]
82338 School of Electrical and Computer Engineering - Georgia Insitute of Technology [ECE GeorgiaTech]
ccMERAGHNI, Fodil
178323 Laboratoire d'Etude des Microstructures et de Mécanique des Matériaux [LEM3]
DECLERCQ, Nico F.
24541 Georgia Tech Lorraine [Metz]
CITRIN, D.S.
24541 Georgia Tech Lorraine [Metz]
82338 School of Electrical and Computer Engineering - Georgia Insitute of Technology [ECE GeorgiaTech]

URI
http://hdl.handle.net/10985/17198
DOI
10.1016/j.ndteint.2018.07.001
Date
2018
Journal
NDT & E International

Résumé

Polarization-sensitive terahertz imaging is applied to characterize subsurface damage in woven carbon fiber-reinforced composite laminates in this study. Terahertz subsurface spectral imaging based on terahertz deconvolution is tailored and applied to detect, in a nondestructive fashion, the subsurface damage within the first ply of the laminate caused by a four-point bending test. Subsurface damage types, including matrix cracking, fiber distortion/fracture, as well as intra-ply delamination, are successfully characterized. Our results show that, although the conductivity of carbon fibers rapidly attenuates terahertz propagation with depth, the imaging capability of terahertz radiation on woven carbon fiber-reinforced composites can nonetheless be significantly enhanced by taking advantage of the terahertz polarization and terahertz deconvolution. The method demonstrated in this study is capable of extracting and visualizing a number of fine details of the subsurface damage in woven carbon fiber-reinforced composites, and the results achieved are confirmed by comparative studies with X-ray tomography.

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Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • Application of Ultrasonic Coda Wave Interferometry for Micro-cracks Monitoring in Woven Fabric Composites 
    Article dans une revue avec comité de lecture
    POMARÈDE, Pascal; CHEHAMI, Lynda; DECLERCQ, Nico Felicien; ccMERAGHNI, Fodil; DONG, Junliang; LOCQUET, Alexandre; CITRIN, D. S. (Springer Verlag, 2019)
    The consequences of a four-point bending test, up to 12 mm, are examined by emitting 1 MHz ultrasonic guided waves in woven carbon fiber reinforced polymer specimens, using coda wave interferometry (CWI), revealing a ...
  • Automated classification of subsurface impact damage in thermoplastic composites using depth-resolved terahertz imaging and deep learning 
    Article dans une revue avec comité de lecture
    SILITONGA, Dicky J.; POMARÈDE, Pascal; BAWANA, Niyem M.; SHI, Haolian; DECLERCQ, Nico F.; CITRIN, D. S.; MERAGHNI, Fodil; LOCQUET, Alexandre (Elsevier, 2026-01)
    Reliable detection of barely visible impact damage is critical to ensure the structural integrity of composite components in service, particularly in safety-critical applications such as pressure vessels and transportation ...
  • Detection of Low-Velocity Impact Damage in Woven-Fabric Reinforced Thermoplastic Composite Laminates by Deep-Learning Classification Trained on Terahertz-Imaging Data 
    Communication avec acte
    SILITONGA, Dicky J.; ccPOMAREDE, Pascal; BAWANA, Niyem M.; SHI, Haolian; DECLERCQ, Nico F.; CITRIN, D.S.; ccMERAGHNI, Fodil; LOCQUET, Alexandre (Association Française de Mécanique (AFM), 2025-08)
    Terahertz (THz) imaging is gaining attention as a nondestructive testing technique for assessing damage due to its high axial resolution and nonionizing nature, presenting a promising alternative to conventional methods ...
  • Ultrasonic investigation of the effect of compressive strains on 3D periodic bi-material structures 
    Article dans une revue avec comité de lecture
    CHEHAMI, Lynda; LIU, Jingfei; ccPOMAREDE, Pascal; LOHMULLER, Paul; ccPIOTROWSKI, Boris; ccMERAGHNI, Fodil; DECLERCQ, Nico F. (EDP Sciences, 2022-06)
    Due to the specific elastic properties such as high stiffness to mass ratio, regular microstructure materials are widely used in the industry. The need for nondestructive evaluation is ubiquitous to ensure material quality. ...
  • Determination of the process-induced microstructure of woven glass fabric reinforced polyamide 6.6/6 composite using terahertz pulsed imaging 
    Article dans une revue avec comité de lecture
    CALVO-DE LA ROSA, J.; ccPOMAREDE, Pascal; ANTONIK, P.; ccMERAGHNI, Fodil; CITRIN, D.S.; RONTANI, D.; LOCQUET, A. (Elsevier BV, 2023-06)
    Terahertz pulsed imaging, combined with spatial and temporal signal and image processing, is performed to visualize the woven fabric in the various plies of glass-fiber-reinforced polymer laminates and to determine ...

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