Lamb wave (A0 mode) scattering directionality at defects
Author(s) -
Paul Fromme
Publication year - 2017
Publication title -
aip conference proceedings
Language(s) - English
Resource type - Conference proceedings
eISSN - 1551-7616
pISSN - 0094-243X
DOI - 10.1063/1.4974570
Subject(s) - wavelength , optics , lamb waves , transducer , orientation (vector space) , structural health monitoring , interferometry , scattering , acoustics , materials science , directionality , sensitivity (control systems) , ultrasonic sensor , plane wave , amplitude , signal (programming language) , surface wave , physics , geometry , engineering , electronic engineering , biology , computer science , mathematics , composite material , genetics , programming language
Localized and distributed guided ultrasonic waves array systems offer an efficient way for the structural health monitoring of large structures. The detection sensitivity for fatigue cracks depends on the orientation of the crack relative to the location of the sensor elements. Crack-like defects have a directionality pattern of the scattered field depending on the angle of the incident wave relative to the defect orientation and on the ratio of the defect depth and length to the wavelength. From FE simulations it has been shown that for cracks and notches almost no energy is scattered in certain directions from the defect, i.e., the data processing algorithm must take into account that for some transducer combinations no change in the signal even for a significant defect will be detected. The scattered wave field directionality pattern for an incident low frequency A0 Lamb wave mode was predicted from 3D Finite Element simulations and verified from experimental measurements at machined part-through and t...
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