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Powłoki nanostrukturalne na narzędzia skrawające

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
EN
Nanostructural coats for cutting tools
Języki publikacji
PL
Abstrakty
PL
Nowe konfiguracje nanostrukturalnych powłok przeciwzużyciowych nanoszonych łukową metodą PVD na ostrza skrawające z różnych materiałów narzędziowych. Podano wyniki prób trwałości płytek skrawających.
EN
New systems of nanostructural wear resistant protection applied by means of the electric arc PVD coating method on cutting edges of different tool materials. Edge wear life test results are given to complement the article.
Czasopismo
Rocznik
Strony
964--967
Opis fizyczny
Bibliogr. 28 poz., fot., rys., tab.
Twórcy
autor
  • Instytut Zaawansowanych Technologii Wytwarzania
Bibliografia
  • 1. A. N. Panckow, J. Steffenhagen, B. Wegener, L. Dubner, F. Leirath: Application of a novel vacuum- arc ion-plating technology for the design of advanced wear resistant coatings. Surf. Coat. Technol. 138, 2001, 71-73.
  • 2. BALZERS: Przyszłość to NANO. Materiały informacyjne. 2005.
  • 3. A. Leyland, A. Matthews: Optimization of nanostructured tribological coatings. Nanostructured Coatings. ed. Cavaleiro A., De Hosson J. Th. M., Springer, N.York, 2006, 511-538.
  • 4. P. Eh. Hovsepian, W. D. Munz : Synthesis, structure and applications of nanoscale multilayer/superlattice structured PVD coatings. Nanostructured Coatings, ed. Cavaleiro A., De Hosson J. Th. M., Springer, N. York, 2006, 555-643.
  • 5. G. Abadias et al.: Stress, interfacial effects and mechanical properties of nanoscale multilayered coatings. Surf. Coat. Technol. 202, 2007, 844-853.
  • 6. L. Hultman: Synthesis, structure and properties of superhard superlattice coatings, Nanostructured Coatings, ed. Cavaleiro A., De Hosson J. Th. M., Springer, N. York, 2006, 539-554.
  • 7. J. Park, Y. Baik: The crystalline structure, hardness and thermal stability of AlN/CrN superlattice coating prepared by D.C. magnetron sputtering. Surf. Coat. Technol., 2005, 200, 1519-1523.
  • 8. F. Wu, S. Tien, J. Duh: Manufacture, microstructure and mechanical properties of CrWN and CrN/WN nanolayered coatings. Surf. Coat. Technol., 2005, 200, 1514-1518.
  • 9. Y. Y. Chang, D. Y. Wang, Ch. Y. Hung: Structural and mechanical properties of nanolayered TiAlN/CrN coatings synthesized by arc deposition process. Surf. Coat. Technol. 2005, 200, 1702-1708.
  • 10. Spain et al: Characterization and application of Cr-Al-N coatings. Surf. Coat. Technol., 2005, 200, 1507-1513.
  • 11. A. E. Reiter et al: Investigation of the properties of Al1-xCrxN coatings by cathodic arc evaporation. Surf. Coat. Technol., 2005, 200, 2114-2122.
  • 12. K. Yamamoto, S. Kujime, K. Takahara: Structural and mechanical property of Si incorporated (Ti, Cr, Al)N coatings deposited by arc ion plating process. Surf. Coat. Technol., 2005, 200, 1383-1390.
  • 13. S. Zhang et al: Ni - toughened nc-TiN/a-SiNx nanocomposite thin films. Surf. Coat. Technol., 2005, 194, 119-127.
  • 14. A. Flink et al: Influence of Si on the microstructure of arc evaporated (Ti, Si)N thin films; evidence for cubic solid solutions and their thermal stability. Surf. Coat. Technol., 2005, 200, 1535-1542.
  • 15. S.K. Kim et al: Deposition of superhard TiAlSiN thin films by cathodic arc plasma deposition. Surf. Coat. Technol., 2005, 200, 1391-1394.
  • 16. PVD coated Al2O3 - an update, Hauser Technol. For You, 11/04/2006, 6-8.
  • 17. Q. Luo: Temperature dependent friction and wear of magnetron sputtered coating TiAlN/VN. Wear, 2011, 2058-2066.
  • 18. L. Settineri et al.: Evaluation of wear resistance of AlSiTiN and AlSiCrN nanocomposite coatings for cutting tools. Surf. Coat. Technol. 57 (2008), 575-578.
  • 19. P. Ch. Tsai et al.: "The effects of deposition parameters on the structure and properties of titanium-containing DLC films synthesized by cathodic arc plasma evaporation". Surf. Coat Technol. 202 (2008), 5350-5355.
  • 20. M.C. Kang et al.: "Effect of the minimum quantity lubrication in high-speed end-mill of AISI D2 cold-worked die steel (62 HRC) by coated carbide tools". Surf. Coat. Technol. 202 (2008), 5621-5624.
  • 21. S. Veprek, M. J. G. Veprek-Heijman: Industrial applications of super-hard nanocomposite coatings. Surf. Coat. Technol. 202 (2008), 5063-5073.
  • 22. M. Sakurai et al.: Surface morphology and mechanical properties of nanoscale TiAlN/SiNx multilayer coating deposited by reactive magnetron sputtering. Surf. Coat. Technol. 203 (2008), 171-179.
  • 23. S.K. Kim et al.: Effect of cathode arc current and bias voltage on the mechanical properties CrAlSiN thin films. Surf. Coat. Technol. 202 (2008), 5400-5404.
  • 24. Ch. Stein, M. Keunecke, K. Bewilogua et al.: Cubic boron nitride based coating systems with different interlayers for cutting inserts. Surf. Coat. Technol. 205 (2011), 103-106.
  • 25. Ch. Wustefeld, D. Rafaja, V. Klemm, C. Michotte, M. Kathrein: "Effect of the aluminium content and the bias voltage on the microstructure formation in Ti1-xAlxN protective coatings grown by cathodic arc evaporation". Surf. Coat. Technol. 205, (2010), 1345-1349.
  • 26. W. Tillmann, E. Vogli, S. Momeni: Improvement of press dies used for the production of diamond composites by means of DUPLEX-PVD-coatings. Surf. Coat. Technol. 205 (2010), 1571-1577.
  • 27. C.P. Mulligan, T.A. Blanchet, D. Gall: Control of lubricant transport by CrN diffusion barrier layer during high-temperature sliding of a CrN-Ag composite coating. Surf. Coat. Technol. 205 (2010), 1350-1355.
  • 28. K. Czechowski, I. Pofelska-Filip, B. Królicka, P. Szlosek, B. Smuk, J. Wszołek, A. Kurleto, J. Kasina: Effect of nitride nano-scale multilayer coatings on functional properties of composite ceramic cutting inserts. Bulletin of the Polish Academy of Science. Tech. Sciences, 2005, 53, 4,425-431.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BOS6-0001-0003
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