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Geometrical precision of 3DP casting form for founding gears

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article presents analysis of geometrical precision of casting form made by means of 3DP method. Three dimentional printing is a universal method of rapid prototyping which can be used to make tools – castings forms as a Rapid Tooling method. By means of this method in direct incremental process a casting form of spur gear was created. Precision of creating the form by 3DP method depends on different factors. Technological factors depending on machine operator include: the thickness of the layer and placing the model in working space. The precision of creating the model also depends on preparing the printer for work: the condition and calibration of printing heads, the condition of the printing unit slide guides and preparing the working space. Three dimentional printer Z510 Spectrum was prepared for work in a way assuring the greatest precision of created models. Technological parameters responsible for precision were set on maximum values. The aim of the research was defining the precision of casting form generated by 3DP Rapid Prototyping Method. The research was made by means of coordinate measuring machine Wenzel LH87. The measuring machine software was used to compare the outcome of the measurement to nominal model 3D-CAD. The problem of tool precision of casting forms generated by Rapid Tooling is rarely considered in literature covering rapid prototyping and casting technologies. That is why the research presented in this article is an original work in the technological and practical aspect.
Rocznik
Strony
391--394
Opis fizyczny
Bibliogr. 15 poz., rys.
Twórcy
autor
  • Department of Machine Design, Rzeszów University of Technology, Al. Powstańców Warszawy 8, 35-959 Rzeszów
autor
  • Department of Machine Design, Rzeszów University of Technology, Al. Powstańców Warszawy 8, 35-959 Rzeszów
autor
  • Department of Machine Design, Rzeszów University of Technology, Al. Powstańców Warszawy 8, 35-959 Rzeszów
autor
  • Department of Machine Design, Rzeszów University of Technology, Al. Powstańców Warszawy 8, 35-959 Rzeszów
  • Department of Machine Design, Rzeszów University of Technology, Al. Powstańców Warszawy 8, 35-959 Rzeszów
autor
  • Department of Machine Design, Rzeszów University of Technology, Al. Powstańców Warszawy 8, 35-959 Rzeszów
Bibliografia
  • [1] W. Liou, Rapid Prototyping and engineering applications – a toolbox for prototype development, Taylor & Francis Group, 2008.
  • [2] A. Gebhardt, Rapid Prototyping, Carl Hanser Verlag, Munich 2006.
  • [3] N. Homburg, E. Wellbrock, Knowledge – based manufacturing strategy and methods for foundries, Conference and Exhibition for Rapid Technology, Erfurt 2006.
  • [4] R. Hartym, Dimensional accuracy of investment casting for the burned pattern process, Archives of Foundry, Volume 6, No 18 (2/2), (2006) 231-236.
  • [5] R. Haratym, J. Tomasik, The influence of ceramic mould quality on surface geometry of al investment casting, Archives of Foundry, Volume 6, No 18 (2/2), (2006) 237-242.
  • [6] T. Wohlers, Wohlers Report 2009 – State of the Industry, Annual Worldwide Pro-gress Report. Wohlers Associates Inc., Fort Collins, CO, USA 2009.
  • [7] I. Gajdoš, J. Slota, E. Spišák, FDM prototypes virtual modeling, ICAT 2008, 2nd International Conference on Additive Technologies: DAAAM Specialized Conference: September 17th-19th, 2008, Ptuj, Slovenia: Proceedings. Vienna: DAAAM International, 3 p. ISBN 3-901509-72-0.
  • [8] 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.
  • [9] G. Budzik, T. Markowski, M. Sobolak, Hybrid foundry patterns of bevel gears. Archives of Foundry Engineering, Vol. 7, Issue 1/2007, s. 131-134.
  • [10] G. Budzik, T. Markowski, M. Sobolak, Prototyping of Bevel Gears of Aircraft Power Transmission, Journal of KONES Powertrain and Transport, Vol. 14, No. 2, Warszawa 2007, s. 61-66.
  • [11] G. Budzik, Properties of made by different methods of RP impeller foundry patterns, Archives of Foundry Engineering, Vol. 7, Issue 2/2007, s. 83-86.
  • [12] G. Budzik, Possibilities of utilizing 3DP technology for foundry mould making, Archives of Foundry Engineering, Vol. 7, Issue 2/2007, s. 65-68.
  • [13] PN-EN ISO 10360-5:2003 Geometrical Product Specifications (GPS). Acceptance and reverification tests for coordinate measuring machines (CMM). Part 5: CMMs using multiple-stylus probing system (in Polish).
  • [14] E. Ratajczyk, Coordinate measuring technique, Oficyna Wydawnicza Politechniki Warszawskiej, Warszawa 2006 (in Polish).
  • [15] G. Budzik, A. Marciniec, T. Markowski, M. Oleksy, M. Cygnar, The geometrical precision of the silicone matrices to the manufacturing of the models of the gear, Archives of Foundry Engineering, Volume 9, Issue 2/2009, s. 137-142.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e39aaa3d-930c-4e98-93aa-79d9161667e1
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