4.6 Article

Guided wave imaging for detection and evaluation of impact-induced delamination in composites

Journal

SMART MATERIALS AND STRUCTURES
Volume 24, Issue 10, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/0964-1726/24/10/105019

Keywords

guided waves; frequency wavenumber analysis; delamination quantification; laser vibrometry sensing

Funding

  1. SC NASA EPSCoR Research and Education Awards Program (REAP) [21-NE-USC_Yu-RGP]

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In this paper, guided wavefield interactions with delamination damage in laminated composite panels are investigated. The frequency-wavenumber representations of the guided wavefields show that different wavenumbers are present in the delaminated plate, compared to a pristine case. The wavenumbers are correlated to trapped waves in the delamination region. Novel approaches for imaging the composite panels using guided waves are discussed and demonstrated for quantitative evaluation of the delamination damage. A filter reconstruction imaging method is shown to provide a rapid technique to locate delamination damage by showing where guided wave energy is trapped. A spatial wavenumber-based imaging algorithm is applied to calculate wavenumber values at each spatial location and highlights the delamination damage as regions with larger wavenumber values. The imaging approaches are demonstrated using experimental data from a plate with a simulated delamination (teflon insert) and from a plate containing impact-induced delamination damage. The methods are also applied to a multiple mode guided wave case to demonstrate application to complex wave cases.

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