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Warianty tytułu
Języki publikacji
Abstrakty
The motive behind the effort to make virtual prototyping more sophisticated is first of all cost reduction of manufacturing machine design, followed by reduction of lead time for development, prototyping and testing of the pre-manufacturing machine series. This article deals with the analysis of manufacturing precision of a 3-axial, numerically controlled milling machine. The methodology for precision analysis rests on a selected simplified numerical calculation model of a manufacturing machine on which virtual machining has been conducted. The mechanical inaccuracy itself is calculated by computer via the FEM analysis. The results are processed for visualization by the Excel software.
Wydawca
Rocznik
Tom
Strony
212--219
Opis fizyczny
Bibliogr. 19 poz., fig., tab.
Twórcy
autor
- Technical University of Košice, Faculty of Mechanical Engineering, Letná 9, 042 00 Košice, Slovak Republic
autor
- Technical University of Košice, Faculty of Mechanical Engineering, Letná 9, 042 00 Košice, Slovak Republic
autor
- Technical University of Košice, Faculty of Mechanical Engineering, Letná 9, 042 00 Košice, Slovak Republic
Bibliografia
- 1. Demeč P., Svetlík J., Semjon J. Virtual prototyping machine tools in terms of the dynamics of the machining process. SjF TU, 2011.
- 2. Demeč P. Manufacturing Technology - basics of the construction. TU, 2013.
- 3. Moskaľ D. Audit of the accuracy of machine tools. Transfer inovácií, 1999.
- 4. Hiwin Motion control & Systems. Hiwin, 2016.
- 5. Hoffmann group Tools to make you better. Hoffman group, 2016.
- 6. Beňo J. Theory of metal cutting. SjF TU, 1999.
- 7. Keka B. Finite Element Analysis is integrated into CAD systems. MM Spectrum, 2005/6, 48.
- 8. Korba P., Piľa J. Application of CAx systems when designing the construction of nodes of a helicopter. Zakład Poligraficzny WISŁA, 2013.
- 9. Korba P., Piľa J., Sabo J., Antoško M. The use of CAX systems as a tool to reduce the economic costs in the aviation industry. SGEM 2014, Sofia, Bulgaria 2014, 385-392.
- 10. Žilinský, A., Svetlík, J., Drabiková, E.: New CAD softwares in engineering, 2014. In: Transfer inovácií. Č. 30, s. 137-140. - ISSN 1337-7094.
- 11. Baron P. Research and application of methods of technical diagnostics for the verification of the design node. Measurement, Vol. 94, 2016, 245-253.
- 12. Jurko J. Study on cone roller bearing surface roughness improvement and the effect of surface roughness on tapered roller bearing service life. International Journal of Advanced Manufacturing Technology, Vol. 82, 2016, 1099-1106.
- 13. Kniebugl L. Engineering Technology. Mechossi, 2008.
- 14. Stanova E. Fedorko G. Kmet S. Molnár V. Fabian M. Finite element analysis of spiral strands with different shapes subjected to axial loads. Adv. Eng. Softw., 2015.
- 15. Gajdoš I. Slota J. Spišák E. Jachowicz T. Tor-Świątek A. Structure and tensile properties evaluation of samples produced by Fused Deposition Modeling. Open Engineering, 2016, 1, 6, 86-89.
- 16. Debski H. Koszalka G. Ferdynus M. Application of fem in the analysis of the structure of a trailer supporting frame with variable operation parameters. Eksploatacja i Niezawodnosc. Maintenance and Reliability, 2012, 107-113.
- 17. Michalik P. Zajac J. Hatala M. Mital D. Fecova V. Monitoring surface roughness of thin-walled components from steel C45 machining down and up milling. Measurement, 2014, 416–428.
- 18. Palenčár R. Ďuriš S. Dovica M. Palenčár J. Application of Monte Carlo method for evaluation of uncertainties of temperature measurement by SPRT. IMEKO 21 World Congress. - Prague, Czech 2016, 1-6.
- 19. Zegzulka J. Jezerska L. Liptakova T. Hlosta J. Necas J., study of structural and selected mechanical/ physical properties of metal powders. Met. 2015 24TH Int. Conf. Metall. Ostrava, Czech 2015, 1457–1462.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c0a98444-6985-4050-aa95-616d06f2880b