This paper introduces Legendre wavelets as a novel wavelet type and explores their effectiveness in detecting damage in carbon-epoxy composite beams. These wavelets are generated by differentiating the first derivative of Legendre functions on a ten-digit grid using finite difference methods, resulting in three versions with seven, five, and three sampling points. The Legendre wavelet functions with five and three sampling points are computed. Carbon-epoxy laminated composite beam mode shapes serve as the input signal for a Legendre wavelet transform. Numerical and experimental studies validate the practical applicability of these wavelets for damage detection. Results demonstrate that all Legendre wavelet functions are suitable for damage detection in laminated composite beams. Especially, those derived from higher-degree Legendre polynomials exhibit superior performance.
Saadatmorad, M., Fantuzzi, N., Russo, P. (2026). Introducing Legendre wavelet functions for damage detection in laminated composite beams. COMPOSITES. PART C, OPEN ACCESS, 19, 1-13 [10.1016/j.jcomc.2026.100700].
Introducing Legendre wavelet functions for damage detection in laminated composite beams
Fantuzzi, N
;
2026
Abstract
This paper introduces Legendre wavelets as a novel wavelet type and explores their effectiveness in detecting damage in carbon-epoxy composite beams. These wavelets are generated by differentiating the first derivative of Legendre functions on a ten-digit grid using finite difference methods, resulting in three versions with seven, five, and three sampling points. The Legendre wavelet functions with five and three sampling points are computed. Carbon-epoxy laminated composite beam mode shapes serve as the input signal for a Legendre wavelet transform. Numerical and experimental studies validate the practical applicability of these wavelets for damage detection. Results demonstrate that all Legendre wavelet functions are suitable for damage detection in laminated composite beams. Especially, those derived from higher-degree Legendre polynomials exhibit superior performance.| File | Dimensione | Formato | |
|---|---|---|---|
|
morteza_jcomc.pdf
accesso aperto
Tipo:
Versione (PDF) editoriale / Version Of Record
Licenza:
Licenza per Accesso Aperto. Creative Commons Attribuzione - Non commerciale - Non opere derivate (CCBYNCND)
Dimensione
6.9 MB
Formato
Adobe PDF
|
6.9 MB | Adobe PDF | Visualizza/Apri |
I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.



