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Generalized model of strains during bending of metal tubes in bending machines

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
According to the postulate concerning a local change of the “actual active radius” with a bending angle in the bent zone, a generalized model of strain during bending of ametal tube has been derived. The considered tubes should be subjected to bending in tube bending machines by the method of wrapping on a rotating template and with the use of a lubricated steel mandrel. The model is represented by three components of strain in the analytical form, including displacement of the neutral axis. Generalization of the model of metal tubes in the existing papers consists in including the displacement of the neutral axis and the possibility of determination of strains at each point along the thickness of the wall of the bent tube in the bending zone. The derived scheme of strain satisfies initial and boundary kinematic conditions of the bending process, conditions of continuity and inseparability of strains. The obtained analytical expressions can be classified as acceptable from the kinematic point of view.
Rocznik
Strony
1093--1106
Opis fizyczny
Bibliogr. 29 poz., rys.
Twórcy
  • Opole University of Technology, Faculty of Engineering and Logistics, Opole, Poland
Bibliografia
  • 1. Beskin L., 1945, Bending of thin curved tubes, Journal of Applied Mechanics, Transactions of the ASME, 12
  • 2. Boyle M., 1971, Bending thin wall stainless tubing, Machinery, 77, 71
  • 3. European Standard, 1993, Energetyka, Wytwarzanie, 448
  • 4. Franz W.D., 1961, Das Kalt-Biegen von Rohren, Springer-Verlag, Berlin
  • 5. Franz W.D., 1969, Numerisch gesteuerte Rohrkaltbiegemaschinen, Werkstatt und Betrieb, 9, 69, 129-145
  • 6. Gruner P., 1960, ¨Uber Rohrbiegeverfahren, Maschinenmarkt, 30/31, 120-129
  • 7. Grunow O., 1985, Praktisches Rohrbiegen, Springer-Verlag, Berlin
  • 8. Hill R., 1986, Mathematical Theory of Plasticity, At the Clarendon Press, London-Oxford
  • 9. Johnson W., Mellor P.B., 1975, Engineering Plasticity, van Nostrand Reinhold Company, London
  • 10. Korzemski J.W., 1968, Thin-walled pipe bending with use of mandrels, Mechanik, 4, 68, 207-210
  • 11. Korzemski J.W., 1971, Bending of Thin-Walled Pipes (in Polish), WNT, Warszawa
  • 12. Li H., Yang H., Zhan M., Gu R.J., 2006, A new method to accurately obtain wrinkling limit diagram in NC bending process of thin-walled tube with large diameter under different loading paths, Journal of Materials Processing Technology, 177, 192-196
  • 13. Marciniak Z., 1971, Limit Deformations in Sheet Metal Stamping (in Polish), WNT, Warszawa
  • 14. Mendelson A., 1988, Plasticity-Theory and Applications, Mc Millan Company, New York
  • 15. Olszak W., Perzyna P., Sawczuk A., 1985, Theory of Plasticity (in Polish), PWN, Warszawa
  • 16. Pesak F., 1953, Bending thin wall tubing, Machinery, 60, 147-151
  • 17. Szczepiński W., 1973, Theory of Plastic Working of Metals, PWN, Warszawa
  • 18. Śloderbach Z., 1999, A model for strain geometry evaluation in pipe bending processes, Engineering Transactions, 47, 1, 3-20
  • 19. Śloderbach Z., 2002, Some Problems of Mechanics in Pipeline Bending Processes (in Polish), Publishing of Wrocław University of Technology, Wrocław, ISBN 83-7085-665-9
  • 20. Śloderbach Z., 2012, Application of the new flexible multi-segment mandrel for bending metallic tubes on machine benders (in Polish), Energetyka, Zeszyt Tematyczny nr XXIV, 97-99
  • 21. Śloderbach Z., Rechul Z., 2000, Effect of strain hardening and normal anisotropy on admissible values of strain and stress in pipe-bending processes, Journal of Theoretical and Applied Mechanics, 38, 4, 843-859
  • 22. Tang N.C., 2000, Plastic-deformation analysis in tube bending, International Journal of Pressure Vessels and Piping, 77, 12, 751-759
  • 23. UDT Conditions, WUDT-UC-WO-O/02:10, 2003, Pressure Installations. General Requirements. Strength Calculations (in Polish), Issue I, Warszawa
  • 24. Wick Ch., Benedict J.T., Veilleux R.F., 2001, Tool and Manufacturing Engineers Handbook. A Reference Book for Manufacturing Engineers, Managers and Technicians, Volume II, Forming, Fourth Edition, Society of Manufacturing Engineers, One SME Drive, Dearbon, Michigan, USA
  • 25. Yang H., Lin Y., 2004, Wrinkling analysis for forming limit of tube bending processes, Journal of Materials Processing Technology, 152, 363-369
  • 26. Zdankiewicz M., 1970, Investigations of the cold bending processes of tubes (in Polish), Mechanik, 7/70, Warszawa
  • 27. Zdankiewicz M., 1998, European directive concern in pressure installations. Requirements for the manufacturing (in Polish), Dozór Techniczny, 98, 2, 25-33, 48
  • 28. Zhang Z., Yang H., Li H., Ren N., Tian Y., 2011, Bending behaviors of large diameter thinwalled CP-Ti tube in rotary draw bending, Progress in Natural Science: Materials International, 21, 401-412
  • 29. Zhiqiang J., Mei Z., He Y., Xudong X., Guangjun L., 2011, Deformation behavior of medium-strength TA18 high-pressure tubes during nc bending with different bending radii, Chinese Journal of Aeronautics, 24, 657-664
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-8389a75f-50dd-40c3-88ac-45f7f172c206
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