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2011 | Vol. 48, nr 2 | 103-111
Tytuł artykułu

Gradient PVD coatings deposited on the sintered tool materials

Wybrane pełne teksty z tego czasopisma
Warianty tytułu
Języki publikacji
PL
Abstrakty
EN
The paper presents investigation results of properties of the sintered tool materials: cemented carbides, cermets and Al2O3 type oxide tool ceramics with gradient (Ti,Al)N and Ti(C,N) coatings deposited with the cathodic arc evaporation CAE-PVD method.
Wydawca

Rocznik
Strony
103-111
Opis fizyczny
Bibliogr. 27 poz.
Twórcy
  • Division of Materials Processing Technology, Management and Computer Techniques in Materials Science, Institute of Engineering Materials and Biomaterials, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland, eszek.dobrzanski@polsl.pl
Bibliografia
  • [1] M. Antonov, I. Hussainova, F. Sergejev, P. Kulu, A. Gregor, Assessment of gradient and nanogradient PVD coatings behaviour under erosive, abrasive and impact wear conditions, Wear 267 (2009) 898-906.
  • [2] M. Arndt, T. Kacsich, Performance of new AlTiN coatings in dry and high speed cutting, Surface and Coatings Technology 163-164 (2003) 674-680.
  • [3] Y.Y. Chang, D.Y. Wang, Characterization of nano-crystalline AlTiN coatings synthesized by a cathodic-arc deposition process, Surface and Coatings Technology 201 (2007) 6699-6701.
  • [4] G.E. D’Errico, R. Calzavarini, B. Vicenzi, Influences of PVD coatings on cermet tool life in continuous and interrupted turning, Journal of Materials Processing Technology 78 (1998) 53-58.
  • [5] M. Cłapa, D. Batory, Improving adhesion and wear resistance of carbon coatings using Ti:C gradient layers, Journal of Achievements in Materials and Manufacturing Engineering 20 (2007) 415-418.
  • [6] B.G. Wendler, W. Pawlak, Low friction and wear resistant coating systems on Ti6Al4V alloy, Journal of Achievements in Materials and Manufacturing Engineering 26/2 (2008) 207-210.
  • [7] W. Pawlak, B. Wendler, Multilayer, hybrid PVD coatings on Ti6Al4V titanium alloy, Journal of Achievements in Materials and Manufacturing Engineering 37/2 (2009) 660-667.
  • [8] I.Yu. Konyashin, PVD/CVD technology for coating cemented carbides, Surface and Coatings Technology 71 (1995) 277-283.
  • [9] W. Kwaśny, Predicting properties of PVD and CVD coatings based on fractal quantities describing their surface, Journal of Achievements in Materials and Manufacturing Engineering 37/2 (2009) 125-192.
  • [10] W. Kwaśny, A modification of the method for determination of the surface fractal dimension and multifractal analysis, Journal of Achievements in Materials and Manufacturing Engineering 33/2 (2009) 115-125.
  • [11] W. Kaczorowski, D. Batory, Carbon and titanium based layers for wood-based materials, Journal of Achievements in Materials and Manufacturing Engineering 27/2 (2008) 187-190.
  • [12] R.M. Nowak, S. Jonas, S. Zimowski, K. Tkacz-??miech, Amorphous carbon layers on polymeric substrates, Journal of Achievements in Materials and Manufacturing Engineering 25/1 (2007) 23-26.
  • [13] B. Wendler, T. Moskalewicz, I. Progalskiy, W. Pawlak, M. Makówka, K. Włodarczyk, P. Nolbrzak, A. Czyrska- Filemonowicz, A. Rylski, Hard and superhard nanolaminate and nanocomposite coatings for machine elements based on Ti6Al4V alloy, Journal of Achievements in Materials and Manufacturing Engineering 43/1 (2010) 455-462.
  • [14] L.A. Dobrzański, L.W. Łukowska, W. Kwaśny, J. Mikuła, K. Gołombek, Ti(C,N) and (Ti,Al)N hard wear resistant coatings, Journal of Achievements in Materials and Manufacturing Engineering 42/2 (2010) 93-103.
  • [15] M. Richert, A. Mazurkiewicz, J. Smolik, Chromium carbide coatings obtained by the hybrid PVD methods, Journal of Achievements in Materials and Manufacturing Engineering 43/1 (2010) 145-152.
  • [16] L.A. Dobrzański, L.W. Łukowska, J. Mikuła, K. Gołombek, P. Podstawski, Functional properties of the sintered tool materials with (Ti,Al)N coating, Journal of Achievements in Materials and Manufacturing Engineering 36/2 (2009) 134-141.
  • [17] J. Gu, G. Barber, S. Tung, R.J. Gu, Tool life and wear mechanism of uncoated and coated milling inserts, Wear 225-229 (1999) 273-284.
  • [18] Li Chen, S.Q. Wang, Yong Du, Jia Li, Microstructure and mechanical properties of gradient Ti(C,N) and TiN/Ti(C, N) multilayer PVD coatings, Materials Science and Engineering A 478 (2008) 336-339.
  • [19] D. Batory, A. Stanishevsky, W. Kaczorowski, The effect ofdeposition parameters on the properties of gradient a-C:H/Ti layers, Journal of Achievements in Materials and Manufacturing Engineering 37/2 (2009) 381-386.
  • [20] R. Manaila, A. Devenyi, D. Biro, L. David, P.B. Barna, A. Kovacs, Multilayer TiAlN coatings with composition gradient, Surface and Coatings Technology 151-152 (2002) 21-25.
  • [21] G. Matula, Study on steel matrix composites with (Ti,Al)N gradient PVD coatings, Journal of Achievements in Materials and Manufacturing Engineering 34/1 (2009) 79-86.
  • [22] S. PalDey, S.C. Deevi, Properties of single layer and gradient (Ti,Al)N coatings, Materials Science and Engineering A 361 (2003) 1-8.
  • [23] A. Perry, J.A. Sue, P.J. Martin, Practical measurement of the residual stress in coatings, Surface and coatings Technology 81 (1996)17-28.
  • [24] X. Qiao, Y. Hou, Y. Wu, J. Chen, Study on functionally gradient coatings of Ti-Al-N, Surface and Coatings Technology 131 (2000) 462-464.
  • [25] M. Sokovic, J. Kopac, L.A. Dobrzański, J. Mikuła,K. Gołombek, D. Pakuła, Cutting characteristics of PVD and CVD-coated ceramic tool inserts, Tribology in Industry 28/1-2 (2006) 3-8.
  • [26] A. Śliwa, J. Mikuła, K. Gołombek, L.A. Dobrzański, FEM modelling of internal stresses in PVD coated FGM, Journal of Achievements in Materials and Manufacturing Engineering 36/1 (2009) 71-78.
  • [27] V. Volvoda, Structure of thin films of titanium nitride, Journal of Alloys and Compounds 219 (1995) 83-87.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL9-0047-0013
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