4.6 Article

A quantitative damage imaging technique based on enhanced CCRTM for composite plates using 2D scan

Journal

SMART MATERIALS AND STRUCTURES
Volume 25, Issue 10, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/0964-1726/25/10/105022

Keywords

reverse-time migration (RTM); damage imaging; time-reversal; non-contact; zero-lag cross-correlation (ZLCC); barely visible impact damage (BVID); 2D scan

Funding

  1. NASA Vehicle Systems Safety Technologies (VSST) Grant from NASA LaRC [NX12AL15A]

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A two-dimensional (2D) non-contact areal scan system was developed to image and quantify impact damage in a composite plate using an enhanced zero-lag cross-correlation reverse-time migration (E-CCRTM) technique. The system comprises a single piezoelectric wafer mounted on the composite plate and a laser Doppler vibrometer (LDV) for scanning a region in the vicinity of the PZT to capture the scattered wavefield. The proposed damage imaging technique takes into account the amplitude, phase, geometric spreading, and all of the frequency content of the Lamb waves propagating in the plate; thus, a reflectivity coefficients of the delamination is calculated and potentially related to damage severity. Comparisons are made in terms of damage imaging quality between 2D areal scans and 1D line scans as well as between the proposed and existing imaging conditions. The experimental results show that the 2D E-CCRTM performs robustly when imaging and quantifying impact damage in large-scale composites using a single PZT actuator with a nearby areal scan using LDV.

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