Detecting acoustic-emission signals with fiber-optic interference transducers
- 作者: Bashkov O.V.1, Romashko R.V.2, Zaikov V.I.1, Panin S.V.3,4, Bezruk M.N.2, Khun K.1, Bashkov I.O.1
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隶属关系:
- Komsomolsk-na-Amure State Technical University
- Institute of Automation and Control Processes
- Institute of Strength Physics and Materials Science
- Tomsk Polytechnic University
- 期: 卷 53, 编号 6 (2017)
- 页面: 415-421
- 栏目: Acoustic Methods
- URL: https://journal-vniispk.ru/1061-8309/article/view/181364
- DOI: https://doi.org/10.1134/S1061830917060031
- ID: 181364
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详细
Results of the analysis of acoustic-emission signals generated due to ultrasonic waves propagating in a polymer composite material and registered with piezoelectric and fiber-optic sensors are presented. The fiber-optic sensors were arranged into an adaptive interferometer based on using a dynamic hologram formed in a photorefractive crystal. Reducing the setpoint fading has made it possible to improve the noise immunity and sensitivity of the measurement system when using an adaptive interferometer on a photorefractive crystal. Optical fibers in the interferometer’s measurement system served as sensors of ultrasonic waves and were built into a polymer composite material when the sample was manufactured. The sample was a rectangular plate made of a multilayer fiberglass material. It has been discovered that the sensitivity of the adaptive interferometer makes it possible to detect acoustic- emission signals generated by a Hsu–Nielsen source. When determining the speed of sound in the polymer composite material, peculiarities of registering a group wave by fiber-optic sensors have been established that are due to the anisotropy of the medium the wave propagates in and the distributed character of sensor placement in the studied composite material. The wavelet transform has been used to separate the informative component of the wanted signal.
作者简介
O. Bashkov
Komsomolsk-na-Amure State Technical University
编辑信件的主要联系方式.
Email: bashkov_ov@mail.ru
俄罗斯联邦, Komsomolsk-na-Amure, 681013
R. Romashko
Institute of Automation and Control Processes
Email: bashkov_ov@mail.ru
俄罗斯联邦, Vladivostok, 690041
V. Zaikov
Komsomolsk-na-Amure State Technical University
Email: bashkov_ov@mail.ru
俄罗斯联邦, Komsomolsk-na-Amure, 681013
S. Panin
Institute of Strength Physics and Materials Science; Tomsk Polytechnic University
Email: bashkov_ov@mail.ru
俄罗斯联邦, Tomsk, 634055; Tomsk, 634050
M. Bezruk
Institute of Automation and Control Processes
Email: bashkov_ov@mail.ru
俄罗斯联邦, Vladivostok, 690041
K. Khun
Komsomolsk-na-Amure State Technical University
Email: bashkov_ov@mail.ru
俄罗斯联邦, Komsomolsk-na-Amure, 681013
I. Bashkov
Komsomolsk-na-Amure State Technical University
Email: bashkov_ov@mail.ru
俄罗斯联邦, Komsomolsk-na-Amure, 681013
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