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Investigation of stress-strain state of a workpiece at gauge burnishing of its holes

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Języki publikacji
EN
Abstrakty
EN
The application of finite-element method when investigating the stress-strain state of a workpiece exposed to the gauge burnishing under the conditions of nonzero friction is considered. The mathematical model of the workpiece surface-plastic deformation during burnishing, algorithm and computational results of stresses and deformations are given.
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Twórcy
autor
  • Slovak University of Technology, Faculty of Materials Science and Technology, Institute of Production Technologies, Jána Bottu č. 2781/25, 917 24 Trnava, Slovakia
  • Kalashnikov Izhevsk State Technical University, Izhevsk, Russia
  • Technical University of Košice, Faculty of Mechanical Engineering, Letná 9, 042 00 Košice, Slovakia
Bibliografia
  • 1. Sivtsev N.S. Mechanical and mathematical model for loading the local contact at SPD under non stationary friction conditions. Mechanical engineering, 10, 2004, 3-12.
  • 2. Makushok, E.M., Kalinovskaya, T.V., and Belyi, A.V., Massoperenos v protsessakh treniya (Mass Transfer in Friction Processes), Minsk: Nauka i Tekhnika, 1978.
  • 3. Маkushok Е.М., Kalinovskaya T.V., Krasnevskya S.M. et al. Fundamentals of the processes of surface plastic deformation. Science and engineering, 1988.
  • 4. Božek P. and Pivarčiová E. Flexible manufacturing system with automatic control of product quality. Strojarstvo, 55(3), 2013, 211-221.
  • 5. Birger I.A., Shorr B.F. and Iosilevich G.B. Calculation of machine part strength: Reference-book. Mechanical engineering, 1979.
  • 6. Božek, P. Automated detection type body and shape deformation for robotic welding line. Advances in Intelligent Systems and Computing, 240, 2014, 229-240.
  • 7. Abramov I.V., Fattiev F.F., Dulotin V.A. et al. High-tension fits with guaranteed interference. Izhevsk: ISTU Publishers, 2002.
  • 8. Proskuryakov Y.G. Hole burnishing. Sverdlovsk: Mashgiz, 1961.
  • 9. Božek P., Pokorný P. Analysis and evaluation of differences dimensional products of production system. Applied Mechanics and Materials, 611, 2014, 339-345.
  • 10. Rozenberg A.M., Rozenberg O.A. Mechanics of plastic deformation in the processes of cutting and deforming broaching. Kiev, Naukova dumka, 1990.
  • 11. Monchenko V.P. Effective technology of manufacturing hollow cylinders. Mechanical engineering, 1980.
  • 12. Yanchenko I.I. Investigation of the burnishing process under different conditions of the tool lubricating: Thesis of Candidate of Technical Sciences. Izhvesk. 1973.
  • 13. Korshunov A. The generalized model of valuation of constructive-technological complexity of a machine-building item. Pollack Periodica, 2(3), 2007, 135-146.
  • 14. Tarasov V.V. Development of scientific bases for manufacturing the thin-wall parts by axisymmetric deformation of rotational tool: Thesis of Doctor of Technical Sciences. Izhevsk, 1999.
  • 15. Debski H., Koszalka G. and Ferdynus M. Application of FEM in the analysis of the structure of a trailer supporting frame with variable operation parameters. Eksploat. i Niezawodn. – Maint. Reliab., 14, 2012, 107-113.
  • 16. Garbacz T., Jachowicz T., Gajdoš I., Kijewski G. Research on the influence of blowing agent on selected properties of extruded cellular products. Advances in Science and Technology Research Journal, 2015, 9(28), 81–88.
  • 17. Peterka P., Krešák J., Kropuch S., Fedorko G., Molnar V. and Vojtko M. Failure analysis of hoisting steel wire rope. Engineering Failure Analysis, 45, 2014, 96-105.
  • 18. Molnár V., Boroška J. and Dečmanová J. Mechanical properties of steel rope wires - quality test assurance. Acta Montanistica Slovaca, 15, 2010, 23-30.
  • 19. Molnár V., Fedorko G., Krešák J., Peterka P. and Fabianová J. The influence of corrosion on the life of steel ropes and prediction of their decommissioning. Engineering Failure Analysis, 74, 2017, 119-132.
  • 20. Kmet S., Stanova E., Fedorko G., Fabian M. and Brodniansky J. Experimental investigation and finite element analysis of a four-layered spiral strand bent over a curved support. Engineering Structures, 57, 2013, 475-483.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0eb28d43-9661-47c0-9615-5f0e12a4c7ca
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