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    • 1. 发明授权
    • Perpendicular magnetic recording disc
    • 垂直磁记录盘
    • US09349404B2
    • 2016-05-24
    • US13149613
    • 2011-05-31
    • Teiichiro UmezawaKazuaki Sakamoto
    • Teiichiro UmezawaKazuaki Sakamoto
    • G11B5/66G11B5/73
    • G11B5/7325
    • [Problem] A perpendicular magnetic disk with an improved SNR and an increased recording density by further improving crystal orientation of a preliminary ground layer formed of an Ni-base alloy is provided.[Solution] A typical structure of the perpendicular magnetic disk according to the present invention includes, on a base 110, a soft magnetic layer 130, a Ta alloy layer 140 provided on the soft magnetic layer 130, an Ni alloy layer 142 provided on the Ta alloy layer 140, a ground layer 150 provided on the Ni alloy layer 142 and having Ru as a main component, and a granular magnetic layer 160 provided on the ground layer 150. The Ta alloy layer 140 is a layer containing 10 atomic percent or more and 45 atomic percent or less Ta and having amorphous and soft magnetic properties.
    • [问题]提供了通过进一步改善由Ni基合金形成的预备接地层的晶体取向而具有改善的SNR和增加的记录密度的垂直磁盘。 [解决方案]根据本发明的垂直磁盘的典型结构在基底110上包括软磁层130,设置在软磁层130上的Ta合金层140,设置在软磁层130上的Ni合金层142 Ta合金层140,设置在Ni合金层142上并具有Ru作为主要成分的接地层150和设置在接地层150上的粒状磁性层160.Ta合金层140是含有10原子%或 多于45原子%或更少的Ta,并具有无定形和软磁性能。
    • 4. 发明授权
    • Evaluation method of magnetic disk, manufacturing method of magnetic disk, and magnetic disk
    • 磁盘的评价方法,磁盘的制造方法和磁盘
    • US08908315B2
    • 2014-12-09
    • US13074369
    • 2011-03-29
    • Tsuyoshi Ozawa
    • Tsuyoshi Ozawa
    • G11B21/02G11B5/31G11B5/84G11B5/455
    • G11B5/455G11B5/3136G11B5/607G11B5/8408Y10T29/49764
    • An evaluation method that can easily evaluate properties of a carbon protective film and a lubricant on a magnetic-disk surface or particularly, an evaluation method of a magnetic disk in which the properties of the magnetic-disk surface can be evaluated accurately so that a strict demand for interactions between the magnetic-disk surface and a head can be met is provided. In a state in which an element portion of the magnetic head provided with the head element portion that projects by thermal expansion is projected, after being brought into contact with a predetermined radial position on the surface of the rotating magnetic disk, the head is further made to perform seeking in a state in which the element portion is projected by a specified amount, whereby the properties of the carbon film or the lubricant formed on the magnetic-disk surface is evaluated.
    • 可以容易地评价磁性保护膜和润滑剂在磁盘表面上的性能的评价方法,特别是可以精确地评价磁盘表面的性质的磁盘的评价方法,使得严格 提供了磁盘表面和头部之间的相互作用的需求。 在设置有通过热膨胀突出的头元件部分的磁头的元件部分被突出的状态下,在与旋转磁盘的表面上的预定径向位置接触之后,头进一步制成 在要素部分投影规定量的状态下进行寻找,由此评价形成在磁盘表面上的碳膜或润滑剂的性质。
    • 5. 发明授权
    • Method of producing a perpendicular magnetic recording medium
    • 制造垂直磁记录介质的方法
    • US08883249B2
    • 2014-11-11
    • US12980062
    • 2010-12-28
    • Toshiaki TachibanaTakahiro OnoueKeiichi Kajita
    • Toshiaki TachibanaTakahiro OnoueKeiichi Kajita
    • G11B5/66H01F1/06G11B5/84C23C14/58G11B5/65
    • G11B5/66C23C14/5806G11B5/65G11B5/84H01F1/06
    • By improving sliding durability while ensuring a high SNR, an improvement in reliability and a further increase in recording density are to be achieved.The structure of a method of manufacturing a perpendicular magnetic recording medium according to the present invention includes: a main recording layer forming step of forming, on a substrate, at least a main recording layer formed of magnetic particles having a CoCrPt alloy as a main component and a non-magnetic grain boundary part having an oxide as a main component; a split layer forming step of forming a split layer having a Ru alloy or a Co alloy as a main component on the main recording layer; a first heating step of performing a heat treatment on the substrate after the split layer forming step; an auxiliary recording layer forming step of forming an auxiliary recording layer formed of a material having CoCrPt as a main component after the first heating step; a second heating step of performing a heat treatment on the substrate after the auxiliary recording layer forming step; and a protective layer forming step of forming a protective layer having carbon as a main component by CVD after the second heating step.
    • 通过提高滑动耐久性同时确保高SNR,可以实现可靠性的提高和记录密度的进一步提高。 根据本发明的垂直磁记录介质的制造方法的结构包括:主记录层形成步骤,在基板上至少形成由具有CoCrPt合金作为主要成分的磁性颗粒形成的主记录层 和具有氧化物作为主要成分的非磁性晶界部分; 在主记录层上形成具有Ru合金或Co合金作为主要成分的分割层的分割层形成步骤; 第一加热步骤,在所述分裂层形成步骤之后对所述基板进行热处理; 在第一加热步骤之后形成由具有CoCrPt作为主要成分的材料形成的辅助记录层的辅助记录层形成步骤; 在辅助记录层形成步骤之后对衬底进行热处理的第二加热步骤; 以及保护层形成步骤,在第二加热步骤之后通过CVD形成以碳为主要成分的保护层。
    • 9. 发明授权
    • Magnetic disk and method of manufacturing the same
    • 磁盘及其制造方法
    • US08551627B2
    • 2013-10-08
    • US12666552
    • 2008-09-24
    • Akira ShimadaIto Nakamura
    • Akira ShimadaIto Nakamura
    • G11B5/66
    • G11B5/72G11B5/8408
    • This invention provides a magnetic disk which can satisfactorily suppress the elution of internal components from an end face of a magnetic disk, and corrosion damage. The magnetic disk comprises a disk substrate, and a thin film including a magnetic layer, a carbon-based protective layer, and a lubricating layer provided in that order on the disk substrate. The main surface and the end face of the magnetic disk are covered with the carbonaceous protective layer. The carbon-based protective layer contains nitrogen at a part adjacent to the lubricating layer. The content of nitrogen atoms relative to the content of carbon atoms in the protective layer formed on the end face is equal to or more than the content of nitrogen atoms relative to the content of carbon atoms in the protective layer formed on the main surface.
    • 本发明提供一种可以令人满意地抑制内部部件从磁盘的端面的洗脱以及腐蚀损坏的磁盘。 磁盘包括盘基片和在盘基片上依次设置有磁性层,碳基保护层和润滑层的薄膜。 磁盘的主表面和端面被碳质保护层覆盖。 碳基保护层在与润滑层相邻的部分含有氮。 氮原子相对于形成在端面上的保护层中的碳原子含量相对于主表面上形成的保护层中的碳原子含量为氮原子数以上。