Tribological and mechanical properties of CN ultra-thin overcoat films and their influence on the underlying magnetic media.

被引:0
|
作者
Ott, RD [1 ]
Scharf, TW [1 ]
Yang, D [1 ]
Barnard, JA [1 ]
机构
[1] Univ Alabama, Ctr Mat & Informat Technol, Tuscaloosa, AL 35487 USA
关键词
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Ultra-thin nitrogenated carbon overcoats have attractive tribological properties that make them favorable for protective coatings for rigid magnetic disks. The wear characteristics of the overcoat are dearly influenced by the nitrogen content and thickness of the overcoat. In addition, as the magnetic media thickness is reduced to approximately 10 nm for future extraordinarily high density recording, the influence of the ultra-thin overcoat on media magnetic properties may become important. In this study the main parameters of interest were the nitrogen content and the overcoat film thickness. These two parameters were systematically varied to evaluate their influence on both the tribological performance of the overcoat. The nitrogenated overcoats, with thicknesses ranging from 2 to 10 nm, were all deposited on a 20 nm thick layer of Co. The tribological and mechanical properties of the overcoats were evaluated with the use of nanoindentation and nanowear test procedures. The vertical resolution, approximately 1 nm, of the Nano Indenter(R) II allowed examination of tribological properties of ultra-thin films on the order of 2 nm in thickness. Several important properties of the overcoats have been determined as a function of nitrogen content and overcoat film thickness. Included among these are the adhesion of the overcoat to the magnetic layer as well as the surface roughness and the coefficient of friction.
引用
收藏
页码:99 / 108
页数:10
相关论文
共 50 条
  • [41] Tribological properties of carbon nitride overcoat for thin-film magnetic rigid disks
    Univ of California, La Jolla, United States
    Surf Coat Technol, 1 -3 pt 2 (664-671):
  • [42] Tribological properties of carbon nitride overcoat for thin-film magnetic rigid disks
    Khurshudov, AG
    Kato, K
    SURFACE & COATINGS TECHNOLOGY, 1996, 86-7 (1-3): : 664 - 671
  • [43] Mechanical and functional properties of ultra-thin Mg foils
    Somekawa, Hidetoshi
    Motohashi, Norie
    Kuroda, Shuji
    Mandai, Toshihiko
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2023, 872
  • [44] Optical and Structural Properties of Ultra-thin Gold Films
    Kossoy, Anna
    Merk, Virginia
    Simakov, Denis
    Leosson, Kristjan
    Kena-Cohen, Stephane
    Maier, Stefan A.
    Advanced Optical Materials, 2015, 3 (01): : 71 - 77
  • [45] Investigation of sputtered tape media with an ultra-thin magnetic layer
    Lee, Hwan-Soo
    Laughlin, David E.
    PHYSICA STATUS SOLIDI C - CURRENT TOPICS IN SOLID STATE PHYSICS, VOL 4, NO 12, 2007, 4 (12): : 4524 - 4527
  • [46] Magnetic properties of ultra-thin (Fe, Co) films coupled by Ir(001) spacers
    Kebaili, Aboubakr Seddik
    Blizak, Salah
    Bihlmayer, Gustav
    Blugel, Stefan
    PHYSICA B-CONDENSED MATTER, 2020, 596
  • [47] Overcoat Free Magnetic Media for Lower Magnetic Spacing and Improved Tribological Properties for Higher Areal Densities
    M. Abdul Samad
    E. Rismani
    H. Yang
    S. K. Sinha
    C. S. Bhatia
    Tribology Letters, 2011, 43 : 247 - 256
  • [48] Surface properties of ultra-thin tetrahedral amorphous carbon films for magnetic storage technology
    Casiraghi, C
    Ferrari, AC
    Ohr, R
    Chu, D
    Robertson, J
    DIAMOND AND RELATED MATERIALS, 2004, 13 (4-8) : 1416 - 1421
  • [49] Overcoat Free Magnetic Media for Lower Magnetic Spacing and Improved Tribological Properties for Higher Areal Densities
    Samad, M. Abdul
    Rismani, E.
    Yang, H.
    Sinha, S. K.
    Bhatia, C. S.
    TRIBOLOGY LETTERS, 2011, 43 (03) : 247 - 256
  • [50] Preparation of ultra-thin carbon overcoat for magnetic recording medium by filtered cathodic vacuum arc technology
    Fujimaki, S
    Yatsue, T
    Kokaku, Y
    Ohno, T
    Kanbe, T
    VACUUM, 2004, 74 (3-4) : 711 - 716