Research into ultrasoic and hydrodinamic cavitation phenomena in a hydraulic system
The article describes the course of the ultrasonic cavitation in a hydraulic tank and the hydrodynamic cavitation in a gear pump. The course of those phenomena was confirmed in experimental tests carried out with the use of a tank and a pump made of transparent plastics. It has been proved that the...
Saved in:
Main Authors: | , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
National Technical University of Ukraine "Igor Sikorsky Kyiv Polytechnic Institute"
2021-06-01
|
Series: | Mechanics and Advanced Technologies |
Subjects: | |
Online Access: | http://journal.mmi.kpi.ua/article/view/234496 |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
_version_ | 1839598220192251904 |
---|---|
author | Ярослав Стрічек Петр Антоняк Міхал Банас Петр Стрічек Олег Яхно Олександр Луговський Василь Ковальов |
author_facet | Ярослав Стрічек Петр Антоняк Міхал Банас Петр Стрічек Олег Яхно Олександр Луговський Василь Ковальов |
author_sort | Ярослав Стрічек |
collection | DOAJ |
description |
The article describes the course of the ultrasonic cavitation in a hydraulic tank and the hydrodynamic cavitation in a gear pump. The course of those phenomena was confirmed in experimental tests carried out with the use of a tank and a pump made of transparent plastics. It has been proved that the oscillator-cavitation system made according to the original project is useful to induce the phenomenon of ultrasonic cavitation. It has also been shown that the PIV visualization method, consisting in a special system of illuminating transparent objects and recording the flow through those objects with a fast camera, is useful for the studying of the cavitation phenomena.
A visible interaction between the ultrasonic and the hydrodynamic cavitation was observed. The induction of ultrasonic cavitation in the tank causes degassing of the oil, and the degassed oil supplying the pump reduces the hydrodynamic cavitation in its internal channels and clearances. This is an example of beneficial effects of the ultrasonic cavitation on the operation of a pump and a hydraulic system.
The presented work is an example of effective co-operation between the communities of Wroclaw University of Science and Technology and Igor Sikorsky Kiyv Politechnic Institute, National Technical University of Ukraine.
|
format | Article |
id | doaj-art-b2d3d2d3a3bc47a2bc770f4e2c7d6000 |
institution | Matheson Library |
issn | 2521-1943 2522-4255 |
language | English |
publishDate | 2021-06-01 |
publisher | National Technical University of Ukraine "Igor Sikorsky Kyiv Polytechnic Institute" |
record_format | Article |
series | Mechanics and Advanced Technologies |
spelling | doaj-art-b2d3d2d3a3bc47a2bc770f4e2c7d60002025-08-02T17:07:29ZengNational Technical University of Ukraine "Igor Sikorsky Kyiv Polytechnic Institute"Mechanics and Advanced Technologies2521-19432522-42552021-06-015110.20535/2521-1943.2021.5.1.234496Research into ultrasoic and hydrodinamic cavitation phenomena in a hydraulic systemЯрослав Стрічек0Петр Антоняк1Міхал Банас2Петр Стрічек3Олег Яхно4Олександр Луговський5Василь Ковальов6Wroclaw University of Science and TecnologyWroclaw University of Science and TecnologyWroclaw University of Science and Tecnology Wroclaw University of Science and Tecnology Igor Sikorsky Kyiv Polytechnic InstituteIgor Sikorsky Kyiv Polytechnic InstituteIgor Sikorsky Kyiv Polytechnic Institute The article describes the course of the ultrasonic cavitation in a hydraulic tank and the hydrodynamic cavitation in a gear pump. The course of those phenomena was confirmed in experimental tests carried out with the use of a tank and a pump made of transparent plastics. It has been proved that the oscillator-cavitation system made according to the original project is useful to induce the phenomenon of ultrasonic cavitation. It has also been shown that the PIV visualization method, consisting in a special system of illuminating transparent objects and recording the flow through those objects with a fast camera, is useful for the studying of the cavitation phenomena. A visible interaction between the ultrasonic and the hydrodynamic cavitation was observed. The induction of ultrasonic cavitation in the tank causes degassing of the oil, and the degassed oil supplying the pump reduces the hydrodynamic cavitation in its internal channels and clearances. This is an example of beneficial effects of the ultrasonic cavitation on the operation of a pump and a hydraulic system. The presented work is an example of effective co-operation between the communities of Wroclaw University of Science and Technology and Igor Sikorsky Kiyv Politechnic Institute, National Technical University of Ukraine. http://journal.mmi.kpi.ua/article/view/234496ultrasonic cavitation; hydraulic tank; hydrodynamic cavitation; gear pump; plastic; PIV-visualization |
spellingShingle | Ярослав Стрічек Петр Антоняк Міхал Банас Петр Стрічек Олег Яхно Олександр Луговський Василь Ковальов Research into ultrasoic and hydrodinamic cavitation phenomena in a hydraulic system Mechanics and Advanced Technologies ultrasonic cavitation; hydraulic tank; hydrodynamic cavitation; gear pump; plastic; PIV-visualization |
title | Research into ultrasoic and hydrodinamic cavitation phenomena in a hydraulic system |
title_full | Research into ultrasoic and hydrodinamic cavitation phenomena in a hydraulic system |
title_fullStr | Research into ultrasoic and hydrodinamic cavitation phenomena in a hydraulic system |
title_full_unstemmed | Research into ultrasoic and hydrodinamic cavitation phenomena in a hydraulic system |
title_short | Research into ultrasoic and hydrodinamic cavitation phenomena in a hydraulic system |
title_sort | research into ultrasoic and hydrodinamic cavitation phenomena in a hydraulic system |
topic | ultrasonic cavitation; hydraulic tank; hydrodynamic cavitation; gear pump; plastic; PIV-visualization |
url | http://journal.mmi.kpi.ua/article/view/234496 |
work_keys_str_mv | AT âroslavstríček researchintoultrasoicandhydrodinamiccavitationphenomenainahydraulicsystem AT petrantonâk researchintoultrasoicandhydrodinamiccavitationphenomenainahydraulicsystem AT míhalbanas researchintoultrasoicandhydrodinamiccavitationphenomenainahydraulicsystem AT petrstríček researchintoultrasoicandhydrodinamiccavitationphenomenainahydraulicsystem AT olegâhno researchintoultrasoicandhydrodinamiccavitationphenomenainahydraulicsystem AT oleksandrlugovsʹkij researchintoultrasoicandhydrodinamiccavitationphenomenainahydraulicsystem AT vasilʹkovalʹov researchintoultrasoicandhydrodinamiccavitationphenomenainahydraulicsystem |