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System for the Assessment of the Dynamic State of Ball Bearings with Respect to Vibration They Generate

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Języki publikacji
EN
Abstrakty
EN
Bearings are important components of many structures. Their reliability is a prerequisite for the correct operation of designed and operated equipment. This is why bearing manufacturers want to produce bearings with greater load-carrying capacity, durability and bearings that generate as little vibration as possible. In the paper, a newly developed device for measurements of the level of vibrations produced by ball bearings was described. Basic requirements for such devices, their suitability for the bearing industry applications, and the mechanical construction of the most important units were discussed.
Słowa kluczowe
Twórcy
  • Fabryka Łożysk Tocznych - Kraśnik S.A., ul. Fabryczna 6, 23-210 Kraśnik, Poland
  • Kielce University of Technology, al. Tysiąclecia Państwa Polskiego 7, 25-314 Kielce, Poland
Bibliografia
  • 1. Krzemiński-Freda H.: Rolling Bearings (in Polish). PWN Warszawa1985, pp. 48-50.
  • 2. ISO 15242-1:2015, Rolling bearings – Measuring methods for vibration – Part 1: Fundamentals.
  • 3. ISO 15242-2:2015, Rolling bearings – Measuring methods for vibration – Part 2: Radial ball bearings with cylindrical bore and outside surface.
  • 4. ISO 15242-3:2006, Rolling bearings – Measuring methods for vibration – Part 3: Radial spherical and tapered roller bearings with cylindrical bore and outside surface.
  • 5. Lin H., Ye Y.C., Huang B.J., Su J.L.: Bearing vibration detection and analysis using enhanced fast Fourier transform algorithm. Advances in Mechanical Engineering. 8. 2016: 1-14.
  • 6. Nadabaică D.C., Nedeff V., Radkowski S., Mączak J.: The importance of FFT and BCS spectrums analysis for diagnostics and prediction of rolling bearing failure. Diagnostyka, 14(4), 2013: 3-12.
  • 7. Hemmati F., Miraskari M., Gadala M.S.: Application of wavelet packet transform in roller bearing fault detection and life estimation. Journal of Physics: Conference Series, 2018, 1074, 012142
  • 8. Lacey S.J.: An Overview of Bearing Vibration Analysis. Maintenance & Asset Management. 23(6),2008: 32-42.
  • 9. Adamczak S., Zmarzły P.: Influence of raceway waviness on the level of vibration in rolling – element bearings. Bulletin of the Polish Academy of Sciences - Technical Sciences, 65(4), 2017.
  • 10. Zmarzły P.: Influence of bearing raceway Surface topography on the level of generated vibration as an example of operational heredity. Indian Journal of Engineering & Materials Sciences, 27, April 2020: 356-364.
  • 11. Wrzochal M., Adamczak S., Piotrowicz G., Wnuk S.: Industrial experimental research as a contribution to the development of an experimental model of rolling bearing vibrations. Strojniški Vestnik – Journal of Mechanical Engineering, 68(9), 2022: 552-559.
  • 12. Kecik K., Smagała A., Lyubitska K.: Ball Bearing Fault Diagnosis Using Recurrence Analysis. Materials, 15, 2022: 5940.
  • 13. Kecik K., Smagała A., Ciecieląg K. : Diagnosis of angular contact ball bearing defects based on re- currence diagrams and quantification analysis of vibration signals. Measurement, 216, 2023: 112963.
  • 14. Adamczak S., Piotrowicz G., Pietrusiński L., Wrzochal M., Domagalski R.: Axial load clamping mechanism for rolling bearings, especially in noise and vibration measurement equipment (in Polish). P.434731 A1, 21.07.2020.
  • 15. Adamczak S.: Surface Geometric Measurements. Outline of shape, waviness and roughness (in Polish). WNT Warszawa 2003, pp. 206-211.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0c72525d-ef17-411b-8146-ed7003dc50ea
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