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    • 3. 发明申请
    • PERPENDICULAR MAGNETIC RECORDING MEDIUM MANUFACTURING METHOD
    • 全能磁记录介质制造方法
    • US20090191331A1
    • 2009-07-30
    • US12295550
    • 2007-03-31
    • Teiichiro UmezawaTakahiro OnoueChikara TakasuKong Kim
    • Teiichiro UmezawaTakahiro OnoueChikara TakasuKong Kim
    • B05D5/12
    • G11B5/667G11B5/84
    • [Object] To provide a manufacturing method that can easily enhance a reversed domain nucleation magnetic field of a magnetic recording layer in a perpendicular magnetic recording medium having, over a substrate, a soft magnetic layer, the magnetic recording layer having a granular structure, and a continuous layer having a high perpendicular magnetic anisotropy.[Solution] A perpendicular magnetic recording medium manufacturing method according to this invention is characterized by including a soft magnetic layer forming step of forming a soft magnetic layer over a substrate, a magnetic recording layer forming step of forming a magnetic recording layer having a granular structure as an upper layer of the soft magnetic layer, a continuous layer forming step of forming a continuous layer having a perpendicular magnetic anisotropy as an upper layer or a lower layer of the magnetic recording layer, and a heating step of heating a medium, obtained by forming the continuous layer in the continuous layer forming step, for improving a value of a reversed domain nucleation magnetic field.
    • 本发明提供一种能够容易地增强磁性记录层的反磁畴成核磁场的制造方法,该垂直磁记录介质在基板上具有软磁性层,具有粒状结构的磁记录层,以及 具有高垂直磁各向异性的连续层。 [解决方案]根据本发明的垂直磁记录介质制造方法的特征在于包括在基板上形成软磁性层的软磁性层形成步骤,形成具有粒状结构的磁记录层的磁记录层形成步骤 作为软磁性层的上层,形成具有垂直磁各向异性的连续层作为磁记录层的上层或下层的连续层形成步骤和加热介质的加热步骤,其通过 在连续层形成步骤中形成连续层,以改善反向畴状成核磁场的值。
    • 5. 发明申请
    • PERPENDICULAR MAGNETIC RECORDING DISK AND METHOD OF MANUFACTURING THE SAME
    • 全磁性记录磁盘及其制造方法
    • US20090311557A1
    • 2009-12-17
    • US12295562
    • 2007-03-31
    • Takahiro OnoueKong KimYoshiaki SonobeChikara Takasu
    • Takahiro OnoueKong KimYoshiaki SonobeChikara Takasu
    • G11B5/66G11B5/33B05D5/12
    • G11B5/667G11B5/65G11B5/66G11B5/7325
    • [Object] To achieve a high coercive force (Hc) and low-noise characteristics (high S/N ratio) through realization of both segregation of SiO2 and high perpendicular magnetic anisotropy by providing a two-layer structure having magnetic recording layers with different properties.[Solution] A magnetic disk for use in perpendicular magnetic recording, having at least an underlayer 5, a first magnetic recording layer 6, and a second magnetic recording layer 7 on a substrate in this order. The first magnetic recording layer 6 and the second magnetic recording layer 7 are each a ferromagnetic layer of a granular structure containing a nonmagnetic substance forming grain boundary portions between crystal grains containing at least Co (cobalt). Given that the content of the nonmagnetic substance in the first magnetic recording layer 6 is A mol % and the content of the nonmagnetic substance in the second magnetic recording layer 7 is B mol %, A>B.
    • [目的]通过提供具有不同性质的磁记录层的双层结构,通过实现SiO 2的偏析和高垂直磁各向异性来实现高矫顽力(Hc)和低噪声特性(高S / N比) 。 [解决方案]用于垂直磁记录的磁盘,其依次在基板上至少具有底层5,第一磁记录层6和第二磁记录层7。 第一磁记录层6和第二磁记录层7分别是包含在至少包含Co(钴)的晶粒之间形成晶界部分的非磁性物质的粒状结构的铁磁层。 假设第一磁记录层6中的非磁性物质的含量为A摩尔%,第二磁记录层7中的非磁性物质的含量为B摩尔%,则A> B。