• DocumentCode
    1354221
  • Title

    Magnetic Properties and Corrosion Resistance Studies on Hybrid Magnetic Overcoats for Perpendicular Recording Media

  • Author

    Poh, Wei Choong ; Piramanayagam, S.N. ; Liew, T.

  • Author_Institution
    Data Storage Inst., A*STAR, Singapore, Singapore
  • Volume
    46
  • Issue
    4
  • fYear
    2010
  • fDate
    4/1/2010 12:00:00 AM
  • Firstpage
    1069
  • Lastpage
    1076
  • Abstract
    Magnetic properties and corrosion inhibition properties of hybrid magnetic overcoats (Hy-MOC) that are suitable for ultra-high-density recording are investigated. Two types of Hy-MOC using different types of Co-based alloys were investigated for the magnetic overcoat (MOC). Hy- MOC(??) used CoCrPt:SiO2 (14% SiO2) while Hy-MOC(??) used CoCr22 as the sputtering targets for the reactive sputtering with N2. Magnetic hysteresis loops indicated that both types of Hy-MOC-using various percentages of N2 flow rate-are coupled with the recording layers of the hard disk media. Hy-MOC also increased the coercivity of the perpendicular media which is attributed to the enhanced thermal stability. It was also found that the remanent squareness (S=Mr/Ms) of the media using the MOC was closer to 1. The negative nucleation field (Hn) of the media using Hy-MOC(??) also showed a slight increase as compared to the medium without Hy-MOC but it is not seen for the media using Hy- MOC(??). Potentiodynamic polarization analysis of Hy-MOC samples also indicated that the Hy-MOC are able to provide sufficient corrosion protection for the hard disk media; and they are as good or even better than 2 nm amorphous carbon overcoat.
  • Keywords
    chromium alloys; cobalt alloys; coercive force; corrosion inhibitors; corrosion protection; corrosion resistance; hard discs; magnetic hysteresis; magnetic multilayers; perpendicular magnetic recording; platinum alloys; remanence; silicon compounds; sputtering; thermal stability; CoCr22; CoCrPt-SiO2; coercivity; corrosion inhibition; corrosion protection; corrosion resistance; enhanced thermal stability; hard disk media; hybrid magnetic overcoats; magnetic hysteresis loops; magnetic recording layers; negative nucleation field; potentiodynamic polarization analysis; reactive sputtering; remanent squareness; ultra-high-density perpendicular recording media; Corrosion; magnetic spacing; overcoat; perpendicular magnetic recording; recording media;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2009.2037430
  • Filename
    5352302