DocumentCode
813892
Title
Comparative study of the nonlinear behavior of fatigued and intact samples of metallic alloys
Author
Campos-Pozuelo, Cleofé ; Vanhille, Christian ; Gallego-Juárez, Juan A.
Author_Institution
Inst. de Acustica, Consejo Superior de Investigaciones Cientificas, Madrid, Spain
Volume
53
Issue
1
fYear
2006
Firstpage
175
Lastpage
184
Abstract
A method and an experimental setup to study the nonlinear behavior of fatigued and intact metal samples under high-frequency stresses has been developed and tested. The method is based on the measurement of the vibration velocity of stepped bar samples flexurally and/or extensionally vibrating at resonance. The vibration velocity signal, picked up by a laser vibrometer, is automatically acquired and analyzed by classical fast Fourier transform (FFT) methods for different excitation levels. The experimental setup was designed in such a way that it can be used for fatiguing and for testing the material samples. The tests have been done with samples of titanium and aluminium alloys. Results before and after fatigue crack nucleation are compared. A strongly nonlinear, nonclassical behavior is observed for fatigued samples. Theoretical interpretations of the different nonlinear behavior of standing waves in fatigued and intact samples are explored, and the results of the models are qualitatively compared with the experimental data. The models´ approach provides an interpretation about the origin of nonlinearity in fatigued samples.
Keywords
aluminium alloys; bending strength; fast Fourier transforms; fatigue cracks; titanium alloys; vibrations; FFT; aluminium alloys; fast Fourier transform; fatigue crack nucleation; flexure; laser vibrometer; metallic alloys; nonlinear behavior; standing waves; titanium alloys; vibration velocity; Fast Fourier transforms; Laser excitation; Materials testing; Optical materials; Resonance; Signal analysis; Stress; Velocity measurement; Vibration measurement; Vibrometers;
fLanguage
English
Journal_Title
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
Publisher
ieee
ISSN
0885-3010
Type
jour
DOI
10.1109/TUFFC.2006.1588403
Filename
1588403
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