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Primary research aiming to apply laminated sheet steel tools for forming processes

Identyfikatory
Warianty tytułu
Konferencja
Rapid Production 2004. Innovation ‒ Knowledge ‒ Industry (1st International Conference; 29 September-1 October 2004; Wrocław)
Języki publikacji
EN
Abstrakty
EN
In Laminated Object Manufacturing (LOM) sheets of different materials are applied. In majority cases the sheets of paper are used, however in case of Rapid Tooling or Rapid Manufacturing processes the product can be built by using sheets of steel. In presented investigations the product has been divided for layers (individual sheets of steel). In each sheet the slot using Water Jet Abrasive Machine Tool has been done. Then the steel sheets with slots have been connected one to each other using special glue. As a result the sculptured cavity has been created. The finishing machining of this sculptured cavity has been carried out on 3-axis milling centre. This way of manufacturing has been applied and checked for tools production for some forming processes. In the paper at first the process of tool rapid production using steel sheets will be described. Then the result of experimental tests with above mentioned steel sheet tools will be presented and discussed.
Słowa kluczowe
Twórcy
autor
  • Cracow University of Technology, Al. Jana Pawła II nr 37, 31-864 Kraków
autor
  • Cracow University of Technology, Al. Jana Pawła II nr 37, 31-864 Kraków
autor
  • Institute of Metal Cutting, ul. Wrocławska 37a, 30-011 Kraków
  • State Higher Vocational School, 33-300 Nowy Sącz, ul. Zamenhofa 1
Bibliografia
  • [1] DORMAL T., DAM J-L., BARALDI U.: A New Technology for the Manufacturing of Large Prototype Injection Moulds: LLCC (Laminated Laser Cut Cavities). Proceedings of the 7th European Conference on Rapid Prototyping and Manufacturing, AGIT Technology Centre, Aachen, Germany, 1998, pp.327-335.
  • [2] GAO J.X., TANG Y.S., A User Oriented Process Planing System for Sheet Metal Fabrication in the Aerospace Industry, Proceedings of 14th International Conference on Computer Aided Production Engineering; Tokyo ‒ September 1988, pp. 259-264.
  • [3] HIMMER T., NAKAGAWA T., MOHRI N.: Rapid Die Manufacturing System. Proceedings of the 7th European Conference on Rapid Prototyping and Manufacturing, AGIT Technology Centre, Aachen, Germany, 1998, pp.315-326.
  • [4] KRUTH J.P.: Material increas manufacturing by rapid prototyping techniques. Annals of CIRP, 1991, t. 40, Nr 2, pp.603-614.
  • [5] KRUTH J.P.: Rapid Prototyping, a new application of physical and chemical processes for material accretion manufacturing. Proceed. Int. Symp. for Electr. Mach., ISEM XI, Lausanne, Switzerland, 1995, pp.3-28.
  • [6] MONCELSI D., Rapid tooling for sheet metal forming with Dieless NC forming, Proceedings of Euro-u Rapid 2003, FRANKFURT/Main December 1-2, 2003.
  • [7] OBIKAWA T., YOSHINO M., MATSUMURA T., SASAHARA H., SHINOZUKA J., FURUSAWA K.: Rapid Manufacturing System by Sheet Steel Lamination. Proceedings of the 14th International Conference on Computer-Aided Production Engineering, Tokyo, Japan, 1998, pp. 265-270.
  • [8] OCZOŚ K.E.: Postęp w szybkim kształtowaniu przyrostowym - Rapid Prototyping. Mechanik, 1999 a, Nr 4, pp.197-208.
  • [9] RUSZAJ A. Niekonwencjonalne metody wytwarzania elementów maszyn i narzydzi, Wydawnictwo IOS, Kraków 1999.
  • [10] YOSHIKO M., OBIKAWA T., SHINOZUKA J., Mechanical Properies of Laminated Sheet Steel Produscts by Rapid Manufacturing System; Proceedings of the 14th International Conference on Computer-Aided Production Engineering, Tokyo, Japan, 1998, pp. 271-276.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS3-0003-0067
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