Improvement of Operational Parameters for Precision Rolling Bearings by Cleaning Working Surfaces from Micro Pollution of Various Nature

In manufacturing high-precision rolling bearings for aviation and urban machinery, the key tasks are to reduce the cost of production of such products, increase their efficiency and resource, and ensure their reuse after performing appropriate repair work. The results of many years of research show...

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Main Authors: Stelmakh A., Kostyunik R., Mikosianchyk O., Kushchev A., Ibraimov T., Sydorenko O., Zaichuk N., Shymchuk S.
Format: Article
Language:English
Published: Sumy State University 2023-06-01
Series:Журнал інженерних наук
Subjects:
Online Access:http://jes.sumdu.edu.ua/wp-content/uploads/2023/06/jes_10_1_2023_A31-A40.pdf
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author Stelmakh A.
Kostyunik R.
Mikosianchyk O.
Kushchev A.
Ibraimov T.
Sydorenko O.
Zaichuk N.
Shymchuk S.
author_facet Stelmakh A.
Kostyunik R.
Mikosianchyk O.
Kushchev A.
Ibraimov T.
Sydorenko O.
Zaichuk N.
Shymchuk S.
author_sort Stelmakh A.
collection DOAJ
description In manufacturing high-precision rolling bearings for aviation and urban machinery, the key tasks are to reduce the cost of production of such products, increase their efficiency and resource, and ensure their reuse after performing appropriate repair work. The results of many years of research show that these tasks can be successfully solved by cleaning the working surfaces of the parts of such precision tribonodes by non-contact pulse methods, particularly by using variable electromagnetic fields. The article describes the process of deep cleaning the working surfaces of parts of various high-precision ball bearings (from overall to miniature). During this cleaning, ferromagnetic and other impurities in the form of micro-, sub-micro- and nanoparticles were removed on a developed stand that can be used on an industrial scale. Further studies of cleaned bearings showed improved operational parameters such as reduced noise and vibration and the degree of magnetization. To achieve the specified results, appropriate cleaning methods were developed and tested.
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spelling doaj.art-09f5c54a1aa8439d9c2bef6c811665d62023-06-22T08:48:14ZengSumy State UniversityЖурнал інженерних наук2312-24982414-93812023-06-01101A31A4010.21272/jes.2023.10(1).a5Improvement of Operational Parameters for Precision Rolling Bearings by Cleaning Working Surfaces from Micro Pollution of Various NatureStelmakh A.0https://orcid.org/0000-0002-9132-6334Kostyunik R.1https://orcid.org/0000-0003-0232-9208Mikosianchyk O.2https://orcid.org/0000-0002-2438-1333Kushchev A.3https://orcid.org/0009-0003-9056-0123Ibraimov T.4https://orcid.org/0009-0003-1637-4541Sydorenko O.5https://orcid.org/0000-0002-3051-8703Zaichuk N.6https://orcid.org/0000-0001-6258-4820Shymchuk S.7https://orcid.org/0000-0002-1293-560XBeijing Institute of Technology, 5, Zhongguancun St, Haidian Qu, ChinaNational Aviation University, 1, Liubomyra Huzara Ave., 03058 Kyiv, UkraineNational Aviation University, 1, Liubomyra Huzara Ave., 03058 Kyiv, UkraineNational Aviation University, 1, Liubomyra Huzara Ave., 03058 Kyiv, UkraineNational Aviation University, 1, Liubomyra Huzara Ave., 03058 Kyiv, UkraineNational Aviation University, 1, Liubomyra Huzara Ave., 03058 Kyiv, UkraineLutsk National Technical University, 75, Lvivska St., 43018 Lutsk, UkraineLutsk National Technical University, 75, Lvivska St., 43018 Lutsk, UkraineIn manufacturing high-precision rolling bearings for aviation and urban machinery, the key tasks are to reduce the cost of production of such products, increase their efficiency and resource, and ensure their reuse after performing appropriate repair work. The results of many years of research show that these tasks can be successfully solved by cleaning the working surfaces of the parts of such precision tribonodes by non-contact pulse methods, particularly by using variable electromagnetic fields. The article describes the process of deep cleaning the working surfaces of parts of various high-precision ball bearings (from overall to miniature). During this cleaning, ferromagnetic and other impurities in the form of micro-, sub-micro- and nanoparticles were removed on a developed stand that can be used on an industrial scale. Further studies of cleaned bearings showed improved operational parameters such as reduced noise and vibration and the degree of magnetization. To achieve the specified results, appropriate cleaning methods were developed and tested.http://jes.sumdu.edu.ua/wp-content/uploads/2023/06/jes_10_1_2023_A31-A40.pdfminiature ball bearingsnanopollution particlesvibration speedvibration accelerationpulse-magnetic-turbulent cleaningultrasonic method
spellingShingle Stelmakh A.
Kostyunik R.
Mikosianchyk O.
Kushchev A.
Ibraimov T.
Sydorenko O.
Zaichuk N.
Shymchuk S.
Improvement of Operational Parameters for Precision Rolling Bearings by Cleaning Working Surfaces from Micro Pollution of Various Nature
Журнал інженерних наук
miniature ball bearings
nanopollution particles
vibration speed
vibration acceleration
pulse-magnetic-turbulent cleaning
ultrasonic method
title Improvement of Operational Parameters for Precision Rolling Bearings by Cleaning Working Surfaces from Micro Pollution of Various Nature
title_full Improvement of Operational Parameters for Precision Rolling Bearings by Cleaning Working Surfaces from Micro Pollution of Various Nature
title_fullStr Improvement of Operational Parameters for Precision Rolling Bearings by Cleaning Working Surfaces from Micro Pollution of Various Nature
title_full_unstemmed Improvement of Operational Parameters for Precision Rolling Bearings by Cleaning Working Surfaces from Micro Pollution of Various Nature
title_short Improvement of Operational Parameters for Precision Rolling Bearings by Cleaning Working Surfaces from Micro Pollution of Various Nature
title_sort improvement of operational parameters for precision rolling bearings by cleaning working surfaces from micro pollution of various nature
topic miniature ball bearings
nanopollution particles
vibration speed
vibration acceleration
pulse-magnetic-turbulent cleaning
ultrasonic method
url http://jes.sumdu.edu.ua/wp-content/uploads/2023/06/jes_10_1_2023_A31-A40.pdf
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