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Printed PZT Transducers Network for the Structural Health Monitoring of Foreign Object Damage Composite Panel

Article dans une revue avec comité de lecture
Auteur
ccPAUNIKAR, Shweta
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
ccGALANOPOULOS, GEORGIOS
483398 General University Hospital of Patras
ccRÉBILLAT, Marc
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
ccWIRTH, Ingo
528122 Fraunhofer Institute for Manufacturing Technology and Advanced Materials [Fraunhofer IFAM]
ccMONTEIRO, Eric
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
ccMARGERIT, Pierre
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
ccMECHBAL, Nazih
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]

URI
http://hdl.handle.net/10985/27061
DOI
10.58286/29635
Date
2024-07
Journal
e-Journal of Nondestructive Testing

Résumé

The work presented here focuses on the structural health monitoring (SHM) of a foreign object damage (FOD) composite panel equipped with an innovative printed piezoelectric transducer network. The 3D woven composite FOD panel measures approximately 800 mm x 320 mm, is curved with a cross-sectional thickness varying from approximately 2 mm to 12 mm, and a stainless-steel leading edge is bonded at one of its sides. The core idea explored here is to rely on an innovative screen-printing technology to print a full piezoelectric transducer allowing to successfully achieve SHM on such a complex composite structure. This work is being carried out within the European project MORPHO – H2020. After printing a 25 elements PZT network, a four points bending fatigue experimental campaign using the PZT network along with other sensor technologies (embedded optical fibres with FBG sensors and acoustic emission sensors) is carried out. This unique experimental campaign allows to generate data and will help to develop diagnostic and prognostic methodologies for remaining life estimation and SHM of the FOD panel. It is demonstrated here through impedance measurements that the printing process associated with the printed PZT transducers is highly repeatable thus validating its use at a larger industrial scale. Furthermore, the printed piezoelectric transducers electromechanical behaviour is characterized and they are shown to be able to detect foreign object impact and to size and localize resulting damage using Lamb waves signals collected at different locations of the network. This innovative printing technology for PZT transducers network is thus extremely promising. It is furthermore highly advantageous to use the printed transducers for SHM instead of regular ceramic ones as this technology is non-intrusive, add negligible weight, can be printed during the manufacturing process, and arrays of transducers ensure easy availability of another transducer in case of failure of one.

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  • Single atom convolutional matching pursuit: Theoretical framework and application to Lamb waves based structural health monitoring 
    Article dans une revue avec comité de lecture
    ccRODRIGUEZ, Sebastian; ccRÉBILLAT, Marc; ccPAUNIKAR, Shweta; ccMARGERIT, Pierre; ccMONTEIRO, Eric; ccCHINESTA SORIA, Francisco; ccMECHBAL, Nazih (Elsevier BV, 2025-06)
    Lamb Waves (LW) based Structural Health Monitoring (SHM) aims to monitor the health state of thin structures. An Initial Wave Packet (IWP) is sent in the structure and interacts with boundaries, discontinuities, and with ...
  • Systems and methods for controlling and implantable blood pump 
    Brevet
    SCHEFFLER, Mattias; BARABINO, Nicolas; ccRÉBILLAT, Marc; ccMONTEIRO, Eric; ccMECHBAL, Nazih (2022-03)
    Systems and methods for controlling an implantable pump are provided. For example, the exemplary controller for controlling the implantable pump may only rely on the actuator's current measurement. The controller is robust ...
  • Towards an industrial deployment of PZT based SHM processes: A dedicated metamodel for Lamb wave propagation 
    Communication avec acte
    POSTORINO, Hadrien; ccMONTEIRO, Eric; ccMECHBAL, Nazih; ccRÉBILLAT, Marc (2020)
    Numerical simulations of Structural Health Monitoring processes based on wave propagation can be very costly in terms of computation time, especially for complex aeronautic composite structures, and therefore strongly ...
  • Advanced harmonic-hybrid reduced model for solving parametric dynamics in structural health monitoring 
    Communication sans acte
    ccRODRÍGUEZ ITURRA, Rodrigo Alejandro; CHINESTA, FRANCISCO; ccDI LORENZO, Daniele; ccMONTEIRO, Eric; ccNAZIH, MECHBAL; ccMARC, RÉBILLAT (2023-07)
    This work present an innovative technique that helps to accelerate structural dynamics simulations when there is a defect in the structure and at the same time, allows its approximation in a parametric way by using reduced ...
  • Topological data analysis for lamb waves based shm method in operational conditions 
    Communication avec acte
    ccLEJEUNE, Arthur; ccHASCOËT, Nicolas; ccRÉBILLAT, Marc; ccMECHBAL, Nazih; ccMONTEIRO, Eric (Dept. of Mechanical Engineering & Aeronautics University of Patras, 2023)
    Structural Health Monitoring (SHM) based on Lamb wave propagation is a promising solution to optimize maintenance, safety and enlarge service life of aeronautical structures. However, it remains a significant challenge to ...

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