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Computer Aided Development of the Innovative Incremental Forming Process

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Computer aided design of innovative incremental forming process dedicated to manufacturing integral elements for aerospace industry is the main aim of the present work. Description of the proposed incremental forging idea as well as details of the developed numerical models are presented within the paper. First, a simple model of a single anvil indentation was created to evaluate material behaviour under different pressing depths. Then a complete numerical model of developed incremental forming press was proposed. Finally, obtained results in the form of strain distribution and recorded forging loads are presented and compared with results from conventional forming model.
Rocznik
Strony
84--93
Opis fizyczny
Bibliogr. 13 poz., rys.
Twórcy
autor
  • AGH University of Science and Technology, Cracow, Poland
autor
  • AGH University of Science and Technology, Cracow, Poland
autor
  • Silesian University of Technology, Gliwice, Poland
Bibliografia
  • [1] WIŚLICKI T.; 1964, Airframe construction technology, Wydawnictwa Naukowo – Techniczne, Warszawa, (in Polish).
  • [2] HUSSAIN G., GAO L.; 2007, A novel method to test the thinning limits of sheet metals in negative incremental forming, International Journal of Machine Tools & Manufacture, 47, 419–435.
  • [3] ISEKIA H., NAGANAWAB T.; 2002, Vertical wall surface forming of rectangular shell using multistage incremental forming with spherical and cylindrical rollers, Journal of Materials Processing Technology, 130–131, 675–679.
  • [4] HUSSAIN G., GAOA L., DAR N.U.; 2007, An experimental study on some formability evaluation methods in negative incremental forming, Journal of Materials Processing Technology, 186, 45–53.
  • [5] YOON S.J., YANGL D.Y.; 2005, An incremental roll forming process for manufacturing doubly curved sheets from general quadrilateral sheet blanks with enhanced process features, CIRP Annals - Manufacturing Technology, 54, 221-224.
  • [6] FILICEL L., FRATIN L., MICARI F.; 2002, Analysis of material formability in incremental forming, CIRP Annals - Manufacturing Technology, 51/1, 199-202.
  • [7] MUSZKA K., MADEJ L., MAJTA J.; 2013, The effects of deformation and microstructure inhomogeneities in the Accumulative Angular Drawing (AAD), Materials Science and Engineering A, 574, 68-74.
  • [8] STANISTREET T.F., ALLWOOD J.M., WILLOUGHBY A.M.; 2006, The design of a flexible model ring rolling machine, Journal of Materials Processing Technology, 177, 630–633.
  • [9] GROCHE P., FRITSCHE D.,TEKKAYA E.A., ALLWOOD J.M., HIRT G., NEUGEBAUER R.; 2007, Incremental bulk metal forming, CIRP Annals - Manufacturing Technology, 56, 635–656
  • [10] WONG C.C., DEAN T.A., LIN J.; 2004, Incremental forming of solid cylindrical components using flow forming principles, Journal of Materials Processing Technology, 153–154, 60–66.
  • [11] JIN Y., MURATA M.; 2004, Influence of pitch and cross-sectional ratio of strip of sheet metal on incremental in-plane bending, Journal of Materials Processing Technology, 155–156, 1810–1814.
  • [12] GROSMAN F., MADEJ L., ZIOLKIEWICZ S., NOWAK J.; 2012, Experimental and numerical investigation on development of new incremental forming process, Journal of Materials Processing Technology, 212, 2200–2209.
  • [13] GROSMAN F., TKOCZ M., PAWLICKI, J. LIPSKA B.; 2012, Incremental forming of integral parts, Hutnik – Wiadomości Hutnicze, 8, 583-586, (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0b03992c-b779-4931-9ec4-fbfa73dd5b68
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