Full-field inspection of three-dimensional structures using steady-state acoustic wavenumber spectroscopy
Author(s) -
EliseAnne Koskelo,
Eric Flynn
Publication year - 2017
Publication title -
aip conference proceedings
Language(s) - English
Resource type - Conference proceedings
SCImago Journal Rank - 0.177
H-Index - 75
eISSN - 1551-7616
pISSN - 0094-243X
DOI - 10.1063/1.4974547
Subject(s) - wavenumber , laser doppler vibrometer , distortion (music) , optics , acoustics , transducer , projection (relational algebra) , signal (programming language) , nondestructive testing , field (mathematics) , ultrasonic sensor , laser , materials science , physics , mathematics , computer science , algorithm , amplifier , optoelectronics , cmos , quantum mechanics , distributed feedback laser , pure mathematics , programming language
Inspection of and around joints, beams, and other three-dimensional structures is integral to practical nondestructive evaluation of large structures. Non-contact, scanning laser ultrasound techniques offer an automated means of physically accessing these regions. However, to realize the benefits of laser-scanning techniques, simultaneous inspection of multiple surfaces at different orientations to the scanner must not significantly degrade the signal level nor diminish the ability to distinguish defects from healthy geometric features. In this study, we evaluated the implementation of acoustic wavenumber spectroscopy for inspecting metal joints and crossbeams from interior angles. With this technique, we used a single-tone, steady-state, ultrasonic excitation to excite the joints via a single transducer attached to one surface. We then measured the full-field velocity responses using a scanning Laser Doppler vibrometer and produced maps of local wavenumber estimates. With the high signal level associated...
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