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    • 7. 发明授权
    • Magnetic disk and manufacturing method thereof
    • 磁盘及其制造方法
    • US08709532B2
    • 2014-04-29
    • US12758195
    • 2010-04-12
    • Masafumi Ishiyama
    • Masafumi Ishiyama
    • G11B5/84
    • G11B5/8408G11B5/64G11B5/72Y10T29/49702
    • In a magnetic disk having a magnetic layer, a protection layer, and a lubrication layer formed on a substrate in this order, a surface free energy γS of a surface of the magnetic disk derived by an extended Fowkes equation is greater than 0 and no greater than 24 mN/m. γSd (dispersion force component of surface free energy) forming the surface free energy γS is greater than 0 and no greater than 17 mN/m, γSp (dipole component of surface free energy) forming the surface free energy γS is greater than 0 and no greater than 1 mN/m, and γSh (hydrogen bonding force component of surface free energy) forming the surface free energy γS is greater than 0 and no greater than 6 mN/m.
    • 在依次形成在基板上的具有磁性层,保护层和润滑层的磁盘中,通过扩展Fowkes方程导出的磁盘表面的表面自由能γS大于0而不大于 超过24 mN / m。 形成表面自由能γS的γSd(表面自由能的分散力分量)大于0且不大于17mN / m,形成表面自由能γS的γSp(表面自由能的偶极子成分)大于0,并且不 大于1mN / m,形成表面自由能γS的γSh(表面自由能的氢键力分量)大于0且不大于6mN / m。
    • 8. 发明申请
    • MICROWAVE ASSISTED MAGNETIC RECORDING MEDIUM AND INFORMATION RECORDING APPARATUS USING THE SAME
    • 微波辅助磁记录介质和信息记录装置
    • US20130293983A1
    • 2013-11-07
    • US13798349
    • 2013-03-13
    • HITACHI, LTD.
    • Yoshiyuki HIRAYAMAMasukazu IGARASHIKatsuro WATANABE
    • G11B5/68G11B5/718
    • G11B5/68G11B5/02G11B5/64G11B5/65G11B5/66G11B5/718G11B5/746G11B2005/0024
    • Provided is a magnetic recording medium achieving both of reduction in switching field distribution and reduction in switching field intensity by high-frequency magnetic field, thus enabling high-density recording. Magnetic grains of the magnetic recording medium are made up of a recording layer and a resonance layer. The resonance layer is disposed closer to a protective layer 5 than the recording layer, and a magnetic material of the recording layer has anisotropy field 1.2 times or more anisotropy field of a magnetic material of the resonance layer. The magnetic material of the recording layer has saturation magnetization substantially equal to saturation magnetization of the magnetic material of the resonance layer. At the entire resonance layer and a part of the recording layer, the magnetic grains are separated from surrounding magnetic grains by a nonmagnetic material, and at a part of the recording layer, the magnetic grains are coupled with surrounding magnetic grains.
    • 提供了一种磁记录介质,其通过高频磁场实现开关场分布的减小和开关场强的降低,从而实现高密度记录。 磁记录介质的磁性颗粒由记录层和谐振层组成。 谐振层设置成比记录层更靠近保护层5,并且记录层的磁性材料具有共振层的磁性材料的各向异性场的1.2倍以上的各向异性场。 记录层的磁性材料具有与谐振层的磁性材料的饱和磁化强度基本相等的饱和磁化强度。 在整个共振层和记录层的一部分,磁性颗粒通过非磁性材料与周围的磁性颗粒分离,并且在记录层的一部分,磁性颗粒与周围的磁性颗粒结合。