Residual stress effects of a fatigue crack on guided lamb waves
Author(s) -
Marcias Martinez,
Shashank Pant,
Marko Yanishevsky,
David Bäckman
Publication year - 2017
Publication title -
smart materials and structures
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.898
H-Index - 154
eISSN - 1361-665X
pISSN - 0964-1726
DOI - 10.1088/1361-665x/aa8a0c
Subject(s) - residual stress , discontinuity (linguistics) , classification of discontinuities , lamb waves , finite element method , structural engineering , materials science , residual , acoustics , structural health monitoring , ultrasonic sensor , amplitude , engineering , mechanics , wave propagation , computer science , composite material , physics , mathematics , mathematical analysis , optics , algorithm
Structural health monitoring has focused on the use of computational models to capture the effect of crack-like discontinuities on the behaviour of acoustic-ultrasonic signals. However, few models have taken into account the effect of geometric complexity in combination with residual stresses generated during the fatigue crack growth process. In this study, a finite element analysis model of a C-channel type aeronautical structure is evaluated under a pitch-catch scenario. Three different finite element model configurations were considered in order to understand the effects that residual stresses of a fatigue crack emanating from a through-hole have on the guided Lamb wave propagation behaviour. The results demonstrate that numerical modelling is able to capture the change in amplitude and the effect of a phase shift on the guided Lamb wave behaviour due to the presence of the discontinuity and the stress field generated during the fatigue crack growth process.Peer reviewed: YesNRC publication: Ye
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