Affiliation:
1. Komsomolsk-on-Amur State University
2. Vladivostok Branch of Russian Customs Academy
Abstract
This work is devoted to the investigation of the characteristics of acoustic emission waves to establish their relations with the parameters of the fracture of the structure of the material. The paper presents the results of the analysis of acoustic emission signals recorded during the propagation of ultrasonic waves in metal sheet materials using piezoelectric sensors. The specimen was a rectangular aluminum plate. The piezoelectric sensor recorded acoustic emission signals generated by the Hsu-Nielsen source. The piezoelectric sensor is located in the center of the aluminum plate. Then sources are generated with different hardness to model various kinds of cracks at each specific location. To determine the informative component of a useful acoustic emission signal, the Morlet wavelet transformation was used. When excited by a fracture pencils of different hardness, the magnitude of the wavelet differ in the energy and intensity of the spectrogram.
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference20 articles.
1. S. Alkiviadis Paipetis, E. Theodore Matikas, G. Dimitrios Aggelis, D.V. Hemelrijck, Emerging Technologies in Non-Destrctive Testing. CRC Press. Taylor & Francis Group. (2012).
2. V.V. Bardakov, V.A. Barat, D.A. Terent'ev, D.V. Chernov, and K.O. Osipov, Peculiarities of applying the AE method in testing bridge constructions, Kontrol. Diagn. 1 (2016) 32–39.
3. J. Tang, et al., Structural health monitoring methodology for wind turbine blades using acoustic emission, Proc.Cond. Nondestr. Eval. 20(6) (2014).
4. F.G. Yuan, Structural Health Monitoring (SHM) in Aerospace Structures, Woodhead Publishing, (2016).
5. M.F. Haider, V.Giurgiutiu, B.Lin, Yu.L, Simulation of lamb wave propagation using excitation potentials, Proceedings of the ASME Pressure Vessels and Piping Conference. 6A(PVP2017-66074 (2017) 7.
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