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SPATIAL ATTENUATION PREDICTION OF LAMB WAVES IN COMPOSITE MATERIALS

Communication avec acte
Auteur
GUO, Shuanglin
ccMECHBAL, Nazih
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
ccRÉBILLAT, Marc

URI
http://hdl.handle.net/10985/19538
Date
2019

Résumé

The inspection and detection of damage in composite materials using Lamb waves are particularly effective because Lamb wave can propagate over relatively large distance and hence can cover a large area with few testing time and equipment. However, comparing to the dispersion features that have been investigated systematically in the literature, predicting simply and reliably the spatial attenuation, which is the decrease of the amplitude of the propagating wave with distance, is still a challenge especially for structures large enough to industrial scale. In this paper, a simple model able to predict Lamb wave attenuation for different frequencies, which takes three damping models, Hysteretic, Kelvin-Voigt and Biot models into account, is derived directly from dispersion equations. Experiments on a practical aeronautical component, a Fan Cowl Structure, are carried out to validate the developed model. The merits of the proposed method lie in the fact that it is derived directly from dispersion equations instead of relying on complex finite element models and are thus simple to compute. Despite its simplicity, it is still effective when predicting attenuation coefficient for geometrically complex structures such as the Fan Cowl Structure.

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Documents liés

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  • Guided waves propagation in arbitrarily stacked composite laminates: Between-layers incompatibility issue resolution using hybrid matrix strategy 
    Article dans une revue avec comité de lecture
    ccGUO , Shuanglin; ccRÉBILLAT, Marc; LIU, Yuan; ccLI, Qiufeng; ccLU, Chao; ccMECHBAL, Nazih (Elsevier BV, 2023-07)
    Lamb waves (LWs) are widely used to achieve structural health monitoring of aeronautic composite structures. Composite materials are however anisotropic and LWs propagation characteristics depend on their propagation ...
  • Dichotomy property of dispersion equation of guided waves propagating in anisotropic composite plates 
    Article dans une revue avec comité de lecture
    GUO, Shuanglin; ccRÉBILLAT, Marc; ccMECHBAL, Nazih (Elsevier BV, 2022-02)
    Accurate prediction of dispersion curves for ultrasonic guided waves propagation in multi-layered composite laminates is crucial for the deployment of nondestructive testing procedures and structural health monitoring ...
  • Prediction of frequency and spatially dependent attenuation of guided waves propagating in mounted and unmounted A380 parts made up of anisotropic viscoelastic composite laminates 
    Article dans une revue avec comité de lecture
    GUO, Shuanglin; ccRÉBILLAT, Marc; ccMECHBAL, Nazih (SAGE Publications, 2022-05)
    Monitoring damage in composite structures using guided wave-based techniques is particularly effective due to their excellent ability to propagate over relatively long distance and hence to cover a large area with few ...
  • Improving Lamb Wave detection for SHM using a dedicated LWDS electronics 
    Communication avec acte
    JAUSSAUD, Gladys; REBUFA, Jocelyn; FOURNIER, Marc; LOGEAIS, Matthieu; BENCHEIKH, Nabil; ccMECHBAL, Nazih; ccRÉBILLAT, Marc (NTD, 2019)
    In the context of Condition Based Maintenance (CBM) for aircrafts, Structural Health Monitoring (SHM) is one main field of research. Detection and localization of damages in a structure request reliability of the equipment ...

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