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Analysis of a conical sleeve with pivot joint loading of axial force

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents theoretical and experimental studies of energy dissipation in a model of a conical sleeve-pivot joint. Energy dissipation between cooperating surfaces of a friction pair including structural friction, elastic and frictional effects between its elements and Lame’s problem are taken into account. A comparative analysis was conducted to compare the theoretical results obtained from numerical simulations and direct experimental data acquired from the MTS testing machine. The analysis of the influence of geometrical and material parameters, external loading on the dissipation of energy is presented too. This paper shows an outline of theoretical considerations, the method for conducting tests as well as selected comparative results.
Słowa kluczowe
Rocznik
Strony
345--358
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
autor
  • Warsaw University of Technology, Institute of Machine Design Fundamentals, Warszawa, Poland
autor
  • Warsaw University of Technology, Institute of Machine Design Fundamentals, Warszawa, Poland
autor
  • Warsaw University of Technology, Institute of Machine Design Fundamentals, Warszawa, Poland
Bibliografia
  • 1. Ando Y., Ishikawa Y., Kitahara T., 1995, Friction characteristics and adhesion under low normal load, Journal of Tribology, 117, 569-574
  • 2. Dyląg Z., Jakubowicz A., Orłoś Z., 1996, 1997, Strength of Materials (in Polish), vol. I and II, Publishers Technical of Science, Warsaw
  • 3. Feeny B., Guran A., Hinrichs N., Popp K., 1998, A historical review on dry friction and stick-slip phenomena, Applied Mechanics Review, 51, 321-341
  • 4. Gałkowski Z., 1999, Influence of structural friction of the vibrations sleeve-shaft (in Polish), Science of Books Rzeszów University of Technology, 174, 283-288
  • 5. Giergiel J., 1990, Damping of Mechanical Vibrations (in Polish), Polish Publishers of Science, Warsaw
  • 6. Grudziński K., Kostek R., 2005, Influence of normal micro-vibrations in contact on sliping motion of solid body, Journal of Theoretical and Applied Mechanics, 43, 37-49
  • 7. KaczmarekW., 2003, Analysis of a bolted joint with elastic and frictional effects occuring between its elements, Machine Dynamics Problems, 27, 1, 21-40
  • 8. Kalinin N., Lebiediew Ju., Panowko J.G., Lebiediev V.J., Strachow G.I., 1961, Konstrukcyonnoe dempfirovanie v nepodvizhnykh soedinenyakh, Akademija Nauk Łatwijskoj CCR, Riga
  • 9. Kosior A., 2005, Influence of Parameters of Joints with Structural Friction on Elastic and Damping Properties of Mechanical Systems, Publishing House of the Warsaw University of Technology, Mechanics, Exercise, book 209
  • 10. Lin Y.K., Cai G.Q., 1990, Random Vibration of Hysteresis Systems, Nonlinear Dynamics in Engineering Systems, Springer Verlag, Berlin, Heidelberg, 189-196
  • 11. Person B.N.J., 1998, Sliding Friction, Springer, Berlin
  • 12. Popp K., 1998, A historical review on dry friction and stick-slip phenomena, Applied Mechanics Review, 51, 321-341
  • 13. Osiński Z., 1986, Damping of Mechanical Vibrations (in Polish), Polish Publishing House, Warsaw
  • 14. Osiński Z., 1988, Damping of Vibrations, A.A. BALKEMA/Rotterdam/Brookfield
  • 15. Sadowski P., Stupkiewicz S., 2010, Combined effect of friction and macroscopic deformation on asperity flattening, Tribology International, 43, 9, 1735-1741
  • 16. Sextro W., 2002, Dynamical Contact Problems with Friction, Springer, Berlin
  • 17. Skup Z., 2010, Nonlinear Phenomena in the Damping Vibration (in Polish), Publishing House of the Warsaw University of Technology, pp. 376
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0cf0252d-5561-4e38-aeb4-c8568efc380f
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