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Characteristics of Ti(C,N) and (Ti,Zr)N gradient PVD coatings deposited onto sintered tool materials

Wybrane pełne teksty z tego czasopisma
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Języki publikacji
EN
Abstrakty
EN
Purpose: The purpose of this paper is the characterisation of Ti(C,N) and (Ti,Zr)N thin films produced by cathode arc evaporation physical vapour deposition (CAE-PVD) method onto sintered carbides and sialon tool ceramics. Design/methodology/approach: The GDOS spectrometer was used to indicated chemical concentration changes of the coating components. The phase composition of the investigated coatings was determined by means of the X-ray diffractometer: standard and grazing incidence X-ray diffraction methods. Observations of surface topography and fractures of the deposited coatings were carried out in the scanning electron microscope. Tests of the coatings adhesion to the substrate material were made by use of the scratch test. The microhardness of substrates and coatings were measured by Vickers method. Cutting ability was determined by technological cutting trials. Findings: The studied PVD gradient coatings deposited by cathodic arc evaporation method are demonstrated high hardness, adhesion and wear resistance. The critical load LC2, which is in the range 21-53 N, depends on both the coating type and material substrate. Coatings deposited on sintered carbides are extending tools life. Practical implications: Ti(C,N) and (Ti,Zr)N gradient coatings can be applied for cutting tools. Originality/value: It should be emphasized, that the mechanical properties of the PVD coatings described in this work are very encouraging and therefore their application for products manufacturing at mass scale is possible in all cases where reliable, very hard and abrasion resistant coatings, deposited onto sintered tools substrate are required.
Rocznik
Strony
629--634
Opis fizyczny
Bibliogr. 13 poz., wykr.
Twórcy
autor
autor
autor
  • 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, leszek.dobrzanski@polsl.pl
Bibliografia
  • [1] L. A. Dobrzański, K. Gołombek, J. Mikuła, D. Pakuła, Improvement of tool materials by deposition of gradient and multilayers coatings, Journal of Achievements in Materials and Manufacturing Engineering 19/2 (2006) 86-91.
  • [2] K. Lukaszkowicz, L. A. Dobrzański, M. Staszuk, M. Pancielejko, Comparison of the PVD gradient coatings deposited onto X40CrMoV5-1 and HS6-5-2 tool steel substrate, Journal of Achievements in Materials and Manufacturing Engineering 27/1 (2008) 79-82.
  • [3] M. Soković, J. Mikuła, L. A. Dobrzański, J. Kopać, L. Koseć, P. Panjan, J. Madejski, A. Piech, Cutting properties of the Al2O3+SiC(W) based tool ceramic reinforced with the PVD and CVD wear resistant coatings, Journal of Materials Processing Technology 164-165 (2005) 924-929.
  • [4] L. A. Dobrzański, D. Pakuła, E. Hajduczek, Structure and properties of the multi-component TiAlSiN coatings obtained in the PVD process in the nitride tool ceramics, Journal of Materials Processing Technology 157-158 (2004) 331-340.
  • [5] L. A. Dobrzański, K. Gołombek, Structure and properties of the cutting tools made from cemented carbides and cermets with the TiN+mono-, gradient-or multi (Ti,Al,Si)N+TiN nanocrystalline coatings, Journal of Materials Processing Technology 164-165 (2005) 805-815.
  • [6] L. A. Dobrzański, W. Kwaśny, Z. Brytan, R. Shishkov, B. Tomov, Structure and properties of the Ti+Ti(C,N) coatings obtained in the PVD process on sintered high speed steel, Journal of Materials Processing Technology 157-158 (2004) 312-316.
  • [7] W. Precht, Recent advances in hard and superhard anti-wear coating technology, Material Engineering 3 (2006) 513-515.
  • [8] U. Schulz, M. Peters, F. W. Bach, G. Tegeder, Graded coatings for thermal, wear and corrosion barriers, Materials Science and Engineering 362 (2003) 61-80.
  • [9] M. Kupczyk, Surface engineering. Wear resistant coatings for cutting edges, Poznań University of Technology Publishing House, Poznań, 2004 (in Polish).
  • [10] G. E. D'Errico, E. Guglielmi, G. Rutelli, A study of coatings for end mills in high speed metal cutting, Journal of Materials Processing Technology 92-93 (1999) 251-256.
  • [11] G. E. D'Errico, E. Guglielmi, A comparitive study of PVD coated cermet inserts for milling applications, Journal of Materials Processing Technology 78 (1998) 48-52.
  • [12] K. Czechowski, I. Pofelska-Filip, P. Szlosek, A. Fedaczyński, J. Kasina, B, Królicka, Chossen properties of hard layers deposited on ceramic material cutting inserts and their influence on the inserts and their influence on the inserts duratibility, Materials Engineering 5 (2005) 261-264.
  • [13] K. Czechowski, I. Pofelska-Filip, P. Szlosek, B. Królicka, J. Wszołek, Forming the functional properties of cutting inserts of composite oxide-carbide ceramics by nanostructural coatings deposited using the arc PVD method, Materials Engineering 5 (2006) 913-916.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWAN-0004-0020
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