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Comparison of technology of forming the sheet metal by numerical simulations

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: The paper is concerned about the problems in forming low-carbon and stainless sheet metal in paralel on the same tools. It describes the properties of stainless sheet metal and the comparison with ordinary sheet metal of DC04 quality. Differences in physical properties pose a source of problems occurring in forming both sheet metals of the same geometry. Design/methodology/approach: Numerical simulation methods of deep drawing have been used for planning the technology of forming low-carbon and stainless sheet metal. For establishing basic properties of material the conventional testing methods have been used. Findings: The target of researches was to find out what changes have to be made in the forming tools, when the sheet metal from stainless steel is formed. Research limitations/implications: : Comparison of formability of sheet metals was limited only to materials suitable for use in production of household appliances. Practical implications: The research is practically employed in forming sheet metal parts for household appliances. Originality/value: By the use of the method described it is possible to determine in advance, how the forming tool must be made. Our aim was to make a forming tool suitable for forming sheet metal from stainless and low-carbon steel. The paper presents actual constructions.
Rocznik
Strony
403--406
Opis fizyczny
Bibliogr. 16 poz., rys., wykr.
Twórcy
autor
  • Faculty of Mechanical Engineering, University of Maribor, Smetanova ulica 17, SI-2000 Maribor, Slovenia
autor
  • Gorenje Orodjarna d.o.o. Partizanska 12, SI-3503 Velenje, Slovenia
autor
  • Faculty of Mechanical Engineering, University of Maribor, Smetanova ulica 17, SI-2000 Maribor, Slovenia
autor
  • Faculty of Mechanical Engineering, University of Maribor, Smetanova ulica 17, SI-2000 Maribor, Slovenia
Bibliografia
  • [1] G. Oehler , F. Schnitt-, Stanz- und Ziehwerkzeuge, 7. Auflage. Berlin: Springer-Verlag Berlin Heidelberg, 1993
  • [2] M. Brezočnik, J. Balič, Z. Kampuš, Modeling of forming efficiency using genetic programming. J. mater. process. technol.. [Print ed.], 2001, vol. 109, no. pp. 20-29.
  • [3] M. Nastran, J. Balič, Prediction of metal wire behavior using genetic programming. J. mater. process. technol.. [Print ed.], 2002, vol. 122, no. 2/3, pp. 368-373
  • [4] M. Brezočnik, J. Balič, K. Kuzman, Genetic programming approach M. to determining of metal materials properties. J. intell. manuf., 2002, vol. 13, no. 1,
  • [5] Z. Kampuš, J. Balič, Jože. Deep drawing of tailored blanks without a blankholder. J. mater. process. technol. [Print ed.], 2003, letn. 133, št. 1/2, pp. 128-133.
  • [6] M. Ficko, I. Drstvenšek, M. Brezočnik, J. Balič, B. Vaupotič, Boštjan. Prediction of total manufacturing costs for stamping tool on the basis of CAD-model of finished product. J. mater. process. technol.. [Print ed.], 15. Maj 2005, vol. 164-165, str. 1327-1335
  • [7] T. Pepelnjak, G. Gantar, K. Kuzman, Numerical simulations in optimisation of product and forming process. J. mater. process. technol.. [Print ed.], 2001, vol. 115, no. 1, pp. 122-126
  • [8] G. Gantar, K. Kuzman, B. Filipič, Increasing the stability of the deep drawing process by simulation-based optimization. J. mater. process. technol. [Print ed.], 2005, vol. 164/165, pp. 1343-1350
  • [9] G. Gantar, K. Kuzman, Sensitivity and stability evaluation of the deep drawing process. J. mater. process. technol.. [Print ed.], 2002, pp.125-126
  • [10] I. Drstvenšek, I. Pahole, M. Kovačič, J. Balič, Jože. Intelligent interface in a flexible production environment. J. mater. process. technol.. [Print ed.], 15. maj 2005, vol. 164-165, pp. 1309-1316
  • [11] Pahole I., Automated Determination of Feasibility of Work Operations on Multiaxis NC Milling and Drilling Machine, 8th. International AMME 99, Gliwice-Zakopane, 461-464
  • [12] Madejski J., Agent design for the responsibility-based manufacturing system, 7th. International AMME 98, Gliwice-Zakopane
  • [13] Zhi-hua Zhong, Finite Element Procedures for contact - impact problems, Oxford University Press
  • [14] E. Schedin, Forming Stainless Steel, Avesta Polarit R&D
  • [15] C. Arwidson, Numerical simulation of sheet metal forming for high strength steel, Lulea University of Technology
  • [16] H. Rudi, Friction in sheet metal forming, University Twente, Ensched
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0e4aca3e-4e15-474a-bec8-ed1f28baadc3
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