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  • This work is aimed on the study of thermal stability of n-TiC/a-C:H coatings prepared by unbalanced reactive magnetron sputtering process containing an acetylene as a reactive gas. These coatings show high hardness and elastic modulus together with low wear and low friction coefficient. High speed steel was used as a substrate. The thermal stability of the films was investigated as a function of thermal annealing under UHV conditions up to 700oC using thermal desorption spectroscopy. The films were annealed in the laboratory furnace Classic Clare 4.0. The furnace chamber was evacuated by turbomolecular pump down to minimum pressure of about 10-5 Pa. The studied samples were subjected to heating with constant heating rate. The mass spectrometer Pfeiffer Vacuum Prisma 80 was set in order to follow the evolution of hydrogen and hydrocarbon species in time. The film stability was studied from the mechanical and structural point of view.
  • This work is aimed on the study of thermal stability of n-TiC/a-C:H coatings prepared by unbalanced reactive magnetron sputtering process containing an acetylene as a reactive gas. These coatings show high hardness and elastic modulus together with low wear and low friction coefficient. High speed steel was used as a substrate. The thermal stability of the films was investigated as a function of thermal annealing under UHV conditions up to 700oC using thermal desorption spectroscopy. The films were annealed in the laboratory furnace Classic Clare 4.0. The furnace chamber was evacuated by turbomolecular pump down to minimum pressure of about 10-5 Pa. The studied samples were subjected to heating with constant heating rate. The mass spectrometer Pfeiffer Vacuum Prisma 80 was set in order to follow the evolution of hydrogen and hydrocarbon species in time. The film stability was studied from the mechanical and structural point of view. (en)
Title
  • Study of the thermal dependence of mechanical properties, chemical composition and structure of the nanocomposite TiC/a-C:H coatings
  • Study of the thermal dependence of mechanical properties, chemical composition and structure of the nanocomposite TiC/a-C:H coatings (en)
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  • Study of the thermal dependence of mechanical properties, chemical composition and structure of the nanocomposite TiC/a-C:H coatings
  • Study of the thermal dependence of mechanical properties, chemical composition and structure of the nanocomposite TiC/a-C:H coatings (en)
skos:notation
  • RIV/00216224:14310/13:00066207!RIV14-MSM-14310___
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  • P(ED2.1.00/03.0086), P(GAP205/12/0407), S
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  • 108791
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  • RIV/00216224:14310/13:00066207
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  • mechanical properties; thermal dependency; nanocomposite (en)
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  • [0247459D3B4D]
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  • Buršíková, Vilma
  • Vašina, Petr
  • Caha, Ondřej
  • Peřina, Vratislav
  • Souček, Pavel
  • Zábranský, Lukáš
  • Gardelka, Tomáš
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  • 14310
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