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Characterization of Al Based Coatings Deposited by PVD Technique onto Samples Made from High Speed Steel

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Języki publikacji
EN
Abstrakty
EN
The paper deals with evaluation of selected properties of TiAlN and CrAlN coatings deposited by PVD technique on specimens from the high speed steel HS6-5-2-5 (STN 19 852). There were evaluated tribological properties such friction coefficient and wear as well as mechanical properties such thickness and chemical composition of coatings, hardness and Young's modulus. These Al based coatings were tested by selected methods. Measured properties were compared to other authors.
Twórcy
autor
autor
  • Department of Technology and Materials, Faculty of Mechanical Engineering, Technical University of Kosice, 74 Masiarska St., 040 01 Kosice, Slovakia
Bibliografia
  • [1] Hagarová M., Štěpánek I., Properties of thin coating deposited on tool steel after different technological conditions of physical vapour deposition process, Metallic Materials, 46 (3), pp.165-172, 2008.
  • [2] Jakubéczyová D., Hvizdoš P., Selecká M., Investigation of thin layers deposited by two PVD techniques on high speed steel produced by powder metallurgy, Applied Surface Science, 258, pp. 5105-5110, 2012.
  • [3] Yasuo Tanno, Akira Azushima, Effect of counter materials on coefficients of friction of TiN coatings with preferred grain orientations, Wear, 266, pp. 1178-1184, 2009.
  • [4] Chang-Lin Liang, Guo-An Cheng, Rui-Ting Zheng, Hua-Ping Liu, Fabrication and performance of TiN/TiAlN nanometer modulated coatings, Thin Solid Films, 520, pp. 813-817, 2011.
  • [5] Podgornik B., Zajec B., Bay N., Vižintin J., Application of hard coatings for blanking and piercing tools, Wear, 270, pp. 850-856, 2011.
  • [6] Tlili B., Mustapha N., Nouveau C., Benlatreche Y., Guillemot G., Lambertin M., Correlation between thermal properties and aluminum fractions in CrAlN layers, deposited by PVD technique, Vacuum, 84, pp. 1067-1074, 2010.
  • [7] Endrino J. L., Derflinger V., The influence of alloying elements on the phase stability and mechanical properties of AlCrN coatings, Surf. Coat. Technol., 200, pp. 988-992, 2005.
  • [8] Dobrzanski L. A., Pakuła D., Hajduczek E., 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, pp. 331-340, 2004.
  • [9] Hsieh J. H., Liang C., Yu C. H., Wu W., Deposition and characterization of TiAlN and multi-layered TiN/TiAlN coatings using unbalanced magnetron sputtering, Surf. Coat. Technol., 132, pp. 108-109, 1998.
  • [10] Podgornik B., Zajec B., Bay N., Vižintin J., Application of hard coatings for blanking and piercing tools, Wear, 270, pp. 850-856, 2011.
  • [11] Hazlinger M., Moravčík R., Čaplovič Ľ., Degradation Processes and Prediction of Material Lifetime, STU Bratislava, 2010.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWA0-0055-0004
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