Methodical Approach to Using Acoustic Emission Method for Tribosystem Monitoring

The method of diagnosing various constructions of tribosystems by acoustic emission method is developed in the work. The development of the methodology is based on the following assumptions. The activity of acoustic emission during the operation of the tribosystem will depend on the rate of deformat...

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Published in:Tribology in Industry
Main Authors: Victor Vojtov, Katherine Fenenko, Anton Voitov, Andriy Hrynkiv, Oleg Lyashuk, Yuriy Vovk
Format: Article
Language:English
Published: University of Kragujevac 2022-09-01
Subjects:
Online Access:http://www.tribology.rs/journals/2022/2022-3/2022-3-09.html
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author Victor Vojtov
Katherine Fenenko
Anton Voitov
Andriy Hrynkiv
Oleg Lyashuk
Yuriy Vovk
author_facet Victor Vojtov
Katherine Fenenko
Anton Voitov
Andriy Hrynkiv
Oleg Lyashuk
Yuriy Vovk
author_sort Victor Vojtov
collection DOAJ
container_title Tribology in Industry
description The method of diagnosing various constructions of tribosystems by acoustic emission method is developed in the work. The development of the methodology is based on the following assumptions. The activity of acoustic emission during the operation of the tribosystem will depend on the rate of deformation of materials on the spots of actual contact. The total acoustic signal from the friction zone is formed as a result of the interference of the primary acoustic signals from the spots of actual contact with the friction surface, which correspond to the coherence condition. Based on these assumptions, the expression for calculating the informative frequencies that will be generated by the tribosystem in the process. The method of diagnosis contains the following steps: determination of informative frequencies on which it is necessary to register amplitudes; determining the magnitude of the amplitudes that carry the maximum information; distribution of the general acoustic signal on clusters and establishment of functional communication of values of a peak factor of clusters with values of coefficient of friction, speed of wear and time of running-in of tribosystems in an online mode. The use of the developed technique will increase the robustness of the method of diagnosing tribosystems and identify surface processes during wear.
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spelling doaj-art-e50c4f5e89c14f28b682d22f09dee7b12025-08-19T21:22:35ZengUniversity of KragujevacTribology in Industry0354-89962217-79652022-09-0144347048110.24874/ti.1298.05.22.08Methodical Approach to Using Acoustic Emission Method for Tribosystem MonitoringVictor Vojtov0https://orcid.org/0000-0001-5383-7566Katherine Fenenko1https://orcid.org/0000-0003-4243-2912Anton Voitov2https://orcid.org/0000-0002-5626-131XAndriy Hrynkiv3https://orcid.org/0000-0002-4478-1940Oleg Lyashuk4https://orcid.org/0000-0003-4881-8568Yuriy Vovk5https://orcid.org/0000-0001-8983-2580Kharkiv Petro Vasylenko National Technical University of Agriculture, 44 Alchevskikh Str., 61002 Kharkiv, UkraineKharkiv Petro Vasylenko National Technical University of Agriculture, 44 Alchevskikh Str., 61002 Kharkiv, UkraineKharkiv Petro Vasylenko National Technical University of Agriculture, 44 Alchevskikh Str., 61002 Kharkiv, UkraineCentral Ukrainian National Technical University, 8 Universytetskyi ave., 25006 Kropyvnytskyi, UkraineTernopil Ivan Puluj National Technical University, 56 Ruska str., 46001 Ternopil, UkraineTernopil Ivan Puluj National Technical University, 56 Ruska str., 46001 Ternopil, UkraineThe method of diagnosing various constructions of tribosystems by acoustic emission method is developed in the work. The development of the methodology is based on the following assumptions. The activity of acoustic emission during the operation of the tribosystem will depend on the rate of deformation of materials on the spots of actual contact. The total acoustic signal from the friction zone is formed as a result of the interference of the primary acoustic signals from the spots of actual contact with the friction surface, which correspond to the coherence condition. Based on these assumptions, the expression for calculating the informative frequencies that will be generated by the tribosystem in the process. The method of diagnosis contains the following steps: determination of informative frequencies on which it is necessary to register amplitudes; determining the magnitude of the amplitudes that carry the maximum information; distribution of the general acoustic signal on clusters and establishment of functional communication of values of a peak factor of clusters with values of coefficient of friction, speed of wear and time of running-in of tribosystems in an online mode. The use of the developed technique will increase the robustness of the method of diagnosing tribosystems and identify surface processes during wear.http://www.tribology.rs/journals/2022/2022-3/2022-3-09.htmltribosystemacoustic emissioncluster analysisinformative amplitudemethods of diagnosiswear ratecoefficient of frictionrobustness of the method
spellingShingle Victor Vojtov
Katherine Fenenko
Anton Voitov
Andriy Hrynkiv
Oleg Lyashuk
Yuriy Vovk
Methodical Approach to Using Acoustic Emission Method for Tribosystem Monitoring
tribosystem
acoustic emission
cluster analysis
informative amplitude
methods of diagnosis
wear rate
coefficient of friction
robustness of the method
title Methodical Approach to Using Acoustic Emission Method for Tribosystem Monitoring
title_full Methodical Approach to Using Acoustic Emission Method for Tribosystem Monitoring
title_fullStr Methodical Approach to Using Acoustic Emission Method for Tribosystem Monitoring
title_full_unstemmed Methodical Approach to Using Acoustic Emission Method for Tribosystem Monitoring
title_short Methodical Approach to Using Acoustic Emission Method for Tribosystem Monitoring
title_sort methodical approach to using acoustic emission method for tribosystem monitoring
topic tribosystem
acoustic emission
cluster analysis
informative amplitude
methods of diagnosis
wear rate
coefficient of friction
robustness of the method
url http://www.tribology.rs/journals/2022/2022-3/2022-3-09.html
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AT andriyhrynkiv methodicalapproachtousingacousticemissionmethodfortribosystemmonitoring
AT oleglyashuk methodicalapproachtousingacousticemissionmethodfortribosystemmonitoring
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