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On the Durability of the Hydraulic Satellite Motor Working Mechanism in Overload Condition Cover

On the Durability of the Hydraulic Satellite Motor Working Mechanism in Overload Condition

Open Access
|Apr 2016

References

  1. 1. Śliwiński P.,, Satellite operating mechanism of hydraulic positive displacement machines, Poland, 2012.
  2. 2. Śliwiński P., R&D of satellite pumps and motors with small geometrical displacement supplied with oil and non-flammable liquids, in: C.J. Tadeusz (Ed.), Developments in mechanical engineering Gdańsk University of Technology, Gdańsk, 2012.
  3. 3. Śliwiński P.,, Results of developmental research of hydraulic satellite motors series of types SM (in Polish), in: K.M.M. Centre (Ed.), Research, design, production and operation of hydraulic systems (in Polish), „Cylinder” Library, Gliwice, 2010.
  4. 4. Balawender A., Śliwinski P., Developmental research of hydraulic satellite motors and satellite pump with small geometrical displacement supplied with water, emulsion and oil (in Polish), Gdansk University of Technology, 2010.
  5. 5. Balawender A., Physical and mathematical model of losses in hydraulic motors. Gdansk University of Technology, Gdansk, 2005.
  6. 6. Balawender A., Elgert K., Research on development of satellite hydraulic motors of III generation (in Polish), KBN no. 8T07C04720, Gdansk University of Technology, 2003.
  7. 7. Łubiński J., Śliwiński P., Multi parameter sliding test result evaluation for the selection of material pair for wear resistant components of a hydraulic motor dedicated for use with environmentally friendly working fluids, Wear Processes Szczecin, 2012.
  8. 8. Fernandes P.J.L., McDuling C., Surface contact fatigue failures in gears. Engineering Failure Analysis, 4 (1997), 99-107.10.1016/S1350-6307(97)00006-X
  9. 9. Fernandes P.J.L., Tooth bending fatigue failures in gears. Engineering Failure Analysis, 3 (1996), 219-25.10.1016/1350-6307(96)00008-8
  10. 10. Alban L.E., Systematic analysis of gear failures. American Society for Metals International, Metals Park, Ohio, 1985.
  11. 11. Pilkey D.F., Pilkey W.D., Stress concentration factors. Wiley & Sons, Incorporated, John, 2008.10.1002/9780470211106
  12. 12. Boniardi M., D’Errico F., C. Tagliabue. Influence of carburizing and nitriding on failure of gears - A case study. Engineering Failure Analysis, 13 (2006), 312-39.
  13. 13. Fu G., An Extension of Hertz’s Theory in Contact Mechanics. Journal of Applied Mechanics, 74 (2006), 373-4.
  14. 14. Sekercioglu T., Fracture analysis of gear pump used for polymer production. Engineering Failure Analysis, 13 (2006), 835-42.
  15. 15. Genel K., Demirkol M., Effect of case depth on fatigue performance of AISI 8620 carburized steel. International Journal of Fatigue, 21 (1999), 207-12.
  16. 16. Product catalogue, Udeholm, www.udeholm.pl
  17. 17. Olsson H., Ukonsaari J., Wear testing and specification of hydraulic fluid in industrial applications. Tribology International, 36 (2003), 835-41.
  18. 18. ASM Metals Handbook, Failure of Gears. American Society for Metals, Metals Park Ohio, 1975.
  19. 19. Wulpi D.J., Understanding how components fail. American Society for Metals International, Materials Park, Ohio, 1985.
  20. 20. Errichello R., Morphology of micropitting. Gear Technology, (2012), 74-81.
  21. 21. Śliwiński P., Satellite pump and motor. Machines, Technologies, Materials, 9 (2014), 8-11.
  22. 22. Patrosz P., Śliwiński P., Compact satellite hydraulic unit. Machines, Technologies, Materials, 9 (2014), 17-20.
DOI: https://doi.org/10.1515/adms-2016-0004 | Journal eISSN: 2083-4799 | Journal ISSN: 1730-2439
Language: English
Page range: 35 - 46
Published on: Apr 29, 2016
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2016 M. Szkodo, A. Stanisławska, P. Śliwiński, published by Gdansk University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.