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Properties of made by different methods of RP impeller foundry patterns

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Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This article presents the tests of properties of foundry patterns of turbocharger turbine impeller. Impellers prototypes were predestinated for casting by method losing patterns. There were carried out tests of these prototypes made by different methods of Rapid Prototyping (RP). Two impeller were made by growth methods: stereolitography (SLA) and three dimensional printing (3DP). One prototype was made by the method of Vacuum Casting as a wax casting. Tests were executed in the Department of Machine Design of Rzeszow University of Technology in cooperation with WSK PZL Rzeszow and Car Technology Krakow. First impeller was carried out by method of stereolitography on SLA 250 plant. That pattern was also used to carry out silicon matrix for casting of wax pattern. Next pattern was printed by three dimensional printer Z510 from the powder ZP14. Good removability of the pattern from the mould is particularly essential for impellers of small turbines with blades of small thickness of their section. All pattern were tested on their removability from the ceramic mould. The best melting properties had the wax pattern. Patterns made from resin SL5170 (SLA) and powder ZP14 (3DP) were removed in the process of burning but about 1% of soot was left in the mould.
Rocznik
Strony
83--86
Opis fizyczny
Bibliogr. 15 poz., rys.
Twórcy
autor
  • Department of Machine Design, Rzeszów University of Technology, Al. Powstańców Warszawy 8, 35-959 Rzeszów, gbudzik@prz.edu.pl
Bibliografia
  • [1] S. H. Choi, S. Samavedam, Modelling and optimisation of Rapid Prototyping, Computers in Industry No 47/2002.
  • [2] J.C. Feriera, E. Santos, H. Madureira, J.Castro, Integration of VP/RP/RT/RE/RM for rapid product and process development, Rapid Prototyping Journal Vol. 12 No. 1/2006, Emerald 2006, 18-28.
  • [3] A. Gebhardt, Rapid Prototyping, Carl Hanser Verlag, Munich 2003.
  • [4] N. Homburg, E. Wellbrock, Knowledge - Based manufacturing strategy and methods for foundries, Conference and Exhibition for Rapid Technology, Erfurt 2006.
  • [5] Y. Song, Y. Yan, R. Zhang, F. Wang, Manufacture of the die of an automobile deck part based on rapid prototyping and rapid tooling technology. Journal of Materials Processing Technology 120 (2002) 237-242, Elsevier 2001.
  • [6] R. Hartym, Dimensional accuracy of investment casting for the burned pattern process, Archives of Foundry, Volume 6, No18 (2/2), (2006) 231-236 (in Polish)
  • [7] R. Haratym, J. Tomasik, The influence of ceramic mould quality on surface geometry of al investment casting, Archives of Foundry, Volume 6, No18 (2/2), (2006) 237-242 (in Polish)
  • [8] D. Myszka, J. Modzelewski, M. Leśniwski, A. Kerwiński, Introduction to titanium investment casting as implants use, Archives of Foundry, Volume 6, No18 (2/2), (2006) 237-242 (in Polish)
  • [9] G. Budzik, A. Marciniec, Computer Aided Design of turbochargers rotor, Journal of KONES Internal Combustion Engines, Institute of Aeronautics, Vol.12 No. 1-2, Warszawa 2005.
  • [10] G. Budzik, D. Kozdęba, M. Sobolak, Rapid Prototyping method of investment pattern of blade in silicone mould, Archives of Foundry, Volume 6, No18 (2/2), (2006) 201-206 (in Polish).
  • [11] G. Budzik, D. Kozdęba, M. Sobolak, Rapid Prototyping technology using for investment casting process, Archives of Foundry, Volume 6, No18 (2/2), (2006) 207-212 (in Polish).
  • [12] Spectrum Z510/DesignmateTM CX 3D Printer, User Manual Rev X, Z Corporation 2006.
  • [13] ZPrint Software Manual Version 7.4, Z Corporation 2006.
  • [14] 3D Lightyear SLA File Preparation Software - User's Guide 2001.
  • [15] Stereolithography Buildstation - 3D Systems Publications 2001
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ4-0013-0017
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