Perpendicular Magnetic Recording Media, Production Process Thereof, and Perpendicular Magnetic Recording and Reproducing Apparatus
    41.
    发明申请
    Perpendicular Magnetic Recording Media, Production Process Thereof, and Perpendicular Magnetic Recording and Reproducing Apparatus 有权
    垂直磁记录介质及其制造方法及垂直磁记录再生装置

    公开(公告)号:US20080118781A1

    公开(公告)日:2008-05-22

    申请号:US11795326

    申请日:2006-01-31

    摘要: Perpendicular magnetic recording media enabling high-density recording and reproduction of information, as well as a production process thereof, and a magnetic recording and reproducing apparatus, are provided. Perpendicular magnetic recording media, having at least a soft magnetic underlayer and perpendicular magnetic recording layer on a disc-shaped nonmagnetic substrate, in which the soft magnetic underlayer has at least two soft magnetic layers, and Ru or Re between the two soft magnetic layers, are provided; the easy axis of magnetization of the soft magnetic underlayer has a desired direction; the easy axis of magnetization of the soft magnetic underlayer is substantially distributed in a direction except a radial direction of the nonmagnetic substrate, and, the bias magnetic field of the antiferromagnetic coupling in the direction of the easy axis of magnetization of the soft magnetic underlayer is 10 Oersteds (790 A/m) or greater.

    摘要翻译: 提供了能够进行信息的高密度记录和再现的垂直磁记录介质及其制造过程以及磁记录和再现装置。 垂直磁记录介质,其中软磁性底层具有至少两个软磁性层,以及两个软磁性层之间的Ru或Re,在至少具有软磁性底层和垂直磁记录层的盘形非磁性基板上, 被提供; 软磁性底层的易磁化轴具有期望的方向; 软磁性底层的易磁化轴基本上分布在除非磁性基板的径向以外的方向上,软磁性底层的易磁化轴方向的反铁磁耦合的偏置磁场为 10奥斯特(790 A / m)或更高。

    Magnetic recording medium
    43.
    发明授权
    Magnetic recording medium 失效
    磁记录介质

    公开(公告)号:US06749956B1

    公开(公告)日:2004-06-15

    申请号:US09402017

    申请日:1999-11-26

    IPC分类号: G11B566

    摘要: A magnetic recording medium having a high normalized coercive force of a ferromagnetic metal layer and excellent S/N ration and adaptable to high density recording. The magnetic recording medium comprises a substrate body and a Co-based ferromagnetic metal layer formed thereon via a metallic underlying layer. The oxygen concentrations in the metallic underlying layer and in the ferromagnetic metal layer are not larger that 100 wt ppm. Magnetic in version is used for the recording. The value of 4ΠMs/Hkgrain is the saturation magnetization of the ferromagnetic metal layer and Hkgrain is the anisotropic magnetic field of the individual crystalline particles constituting the ferromagnetic metal layer is 1 or less.

    摘要翻译: 具有强磁性金属层的高归一化矫顽力的磁记录介质,并且具有优异的S / N比,并适用于高密度记录。 磁记录介质包括经由金属底层在其上形成的基底主体和Co基强磁性金属层。 金属底层和强磁性金属层中的氧浓度不大于100重量ppm。 磁性版本用于录制。 4PiMs / Hk 的值是铁磁性金属层的饱和磁化强度,构成铁磁性金属层的各结晶粒子的各向异性磁场为1以下。

    Magnetooptic thin film, magnetoopic record medium
    44.
    发明授权
    Magnetooptic thin film, magnetoopic record medium 失效
    磁光薄膜,磁光记录介质

    公开(公告)号:US06190763B1

    公开(公告)日:2001-02-20

    申请号:US08793871

    申请日:1997-04-15

    申请人: Migaku Takahashi

    发明人: Migaku Takahashi

    IPC分类号: G11B566

    摘要: This invention aims at providing magnetooptic thin film having a high Kerr rotation angle (&thgr;k) in a short wave band, etc., magnetooptic recording medium and a method of providing them. The magnetooptic thin film has an alloy composition is MnxSbyPtz, 45≦x≦56, 40≦y≦48, 2≦z≦15 and x+y+z=100 (where x, y and z are proportions in atomic %), and a ratio &agr;/&bgr; of a diffraction intensity from a (220)-plane of a C1b type crystalline structure of the magnetooptic thin film in X-ray diffraction intensity &bgr; from a (110)-plane of a B81 type crystalline structure in from 0.05 to 1.0. The film thickness of the magnetooptic thin film is from 10 nm to 300 nm. The production method of the magnetooptic thin film is characterized in that the substrate, on which the magnetooptic thin film is to be formed, is heat-treated on a vacuum at most 5×10−6 Torr at a temperature not lower than 100° C. for at least 30 minutes before the thin film is formed.

    摘要翻译: 本发明的目的在于提供一种在短波段等中具有高克耳旋转角(磁铁)的磁光薄膜,磁光记录介质及其提供方法。 磁光薄膜的合金组成为Mn x S比值,45 <= x <= 56,40 <= y = 48,2 x = z = 15,x + y + z = 100(其中x,y和z为 来自(110)面的X射线衍射强度β的来自磁光薄膜的C1b型晶体结构的(220)面的衍射强度的比例α/β B81型晶体结构为0.05〜1.0。 磁光薄膜的膜厚为10nm〜300nm。 磁光薄膜的制造方法的特征在于,要在其上形成磁光薄膜的基板在不低于100℃的温度下在最多5×10 -6乇的真空下进行热处理, 在薄膜形成之前至少30分钟。

    Magnetic recording medium and method of manufacturing the same
    45.
    发明授权
    Magnetic recording medium and method of manufacturing the same 失效
    磁记录介质及其制造方法

    公开(公告)号:US6042939A

    公开(公告)日:2000-03-28

    申请号:US913032

    申请日:1997-10-20

    申请人: Migaku Takahashi

    发明人: Migaku Takahashi

    摘要: A magnetic recording medium having a large coercive force independent of the material of the substrate body by employing an .alpha.-rich layer and a .beta.-rich layer. The magnetic recording medium, using magnetic inversion, comprises a substrate body and a ferromagnetic Co-alloy layer on the surface of the substrate body. Between the substrate body and the magnetic layer may be interposed a Cr-containing metallic base layer. The base layer and/or the ferromagnetic alloy layer has an oxygen concentration of not more than 100 wt ppm. An .alpha.-rich layer of nickel, phosphorus, and the oxides thereof, and a .beta.-rich layer containing an ester group are provided between the substrate body and the base layer or the ferromagnetic alloy layer. In the manufacturing process according to the present invention, the .alpha.-rich layer, a .beta.-rich layer, metal base layer, and ferromagnetic metallic layer are formed at pressure below the order of 10.sup.-9 Torr.

    摘要翻译: PCT No.PCT / JP95 / 00381 Sec。 371日期:1997年10月20日 102(e)日期1997年10月20日PCT 1995年3月8日PCT PCT。 公开号WO96 / 27878 日期1996年9月12日一种磁记录介质,通过采用富α层和富含β-的层,具有独立于基体的材料的矫顽力。 使用磁性反转的磁记录介质包括基板主体和在基板主体的表面上的铁磁Co合金层。 在基板主体和磁性层之间可以插入含Cr的金属基层。 基底层和/或铁磁性合金层的氧浓度不大于100重量ppm。 在基体和基底层或铁磁性合金层之间设置镍,磷及其氧化物的富Al层,含有酯基的富含β-的层。 在根据本发明的制造方法中,在10 -9乇以下的压力下形成富Al层,富含β-的层,金属基层和强磁性金属层。

    PROCESS FOR PRODUCING FERROMAGNETIC PARTICLES, ANISOTROPIC MAGNET, BONDED MAGNET AND COMPACTED MAGNET
    46.
    发明申请
    PROCESS FOR PRODUCING FERROMAGNETIC PARTICLES, ANISOTROPIC MAGNET, BONDED MAGNET AND COMPACTED MAGNET 审中-公开
    生产无机颗粒,异相磁铁,粘结磁体和压电磁铁的方法

    公开(公告)号:US20140085023A1

    公开(公告)日:2014-03-27

    申请号:US14113711

    申请日:2012-04-26

    IPC分类号: H01F1/01 H01F41/02

    摘要: The present invention relates to ferromagnetic particles capable of exhibiting a high purity and excellent magnetic properties from the industrial viewpoints and a process for producing the ferromagnetic particles, and also provides an anisotropic magnet, a bonded magnet and a compacted magnet which are obtained by using the ferromagnetic particles. The ferromagnetic particles comprising an Fe16N2 compound phase in an amount of not less than 80% as measured by Mössbauer spectrum and each having an outer shell in which FeO is present in the form of a layer having a thickness of not more than 5 nm according to the present invention can be produced by subjecting aggregated particles of an iron compound as a starting material whose primary particles have a ratio of [(average deviation of major axis lengths of particles)/(average major axis length of particles)] of not more than 50%, Uc of not more than 1.55, Cg of not less than 0.95, Cg2 of not less than 0.40, an average major axis length of 40 to 5000 nm, and an aspect ratio (major axis diameter/minor axis diameter) of 1 to 200, to dispersing treatment; then subjecting the iron compound particles passed through a mesh screen to reducing treatment at a temperature of 160 to 420° C.; and subjecting the resulting particles to nitridation treatment at a temperature of 130 to 170° C.

    摘要翻译: 本发明涉及从工业观点出发具有高纯度和优异磁特性的铁磁性颗粒以及制造铁磁性颗粒的方法,并且还提供了各向异性磁体,粘结磁体和压实磁体,它们通过使用 铁磁颗粒。 铁磁性颗粒包含通过Mössbauer光谱测量的不小于80%的Fe 16 N 2化合物相,并且每个具有外壳,其中FeO以厚度不大于5nm的层的形式存在,根据 本发明可以通过使铁化合物的凝集颗粒作为起始材料,其一次颗粒具有[(颗粒的长轴长度的平均偏差)/(颗粒的平均长轴长度)]的比例不大于 50%,Uc为1.55以下,Cg为0.95以上,Cg2为0.40以上,平均长轴长为40〜5000nm,纵横比(长轴径/短轴直径)为1 至200,分散处理; 然后使经过筛网的铁化合物粒子在160〜420℃的温度下进行还原处理。 并在130-170℃的温度下对所得颗粒进行氮化处理。

    Perpendicular magnetic recording media, production process thereof, and perpendicular magnetic recording and reproducing apparatus
    49.
    发明授权
    Perpendicular magnetic recording media, production process thereof, and perpendicular magnetic recording and reproducing apparatus 有权
    垂直磁记录介质及其制造方法以及垂直磁记录再生装置

    公开(公告)号:US07943248B2

    公开(公告)日:2011-05-17

    申请号:US11795326

    申请日:2006-01-31

    IPC分类号: G11B5/66

    摘要: Perpendicular magnetic recording media enabling high-density recording and reproduction of information, as well as a production process thereof, and a magnetic recording and reproducing apparatus, are provided. Perpendicular magnetic recording media, having at least a soft magnetic underlayer and perpendicular magnetic recording layer on a disc-shaped nonmagnetic substrate, in which the soft magnetic underlayer has at least two soft magnetic layers, and Ru or Re between the two soft magnetic layers, are provided; the easy axis of magnetization of the soft magnetic underlayer has a desired direction; the easy axis of magnetization of the soft magnetic underlayer is substantially distributed in a direction except a radial direction of the nonmagnetic substrate, and, the bias magnetic field of the antiferromagnetic coupling in the direction of the easy axis of magnetization of the soft magnetic underlayer is 10 Oersteds (790 A/m) or greater.

    摘要翻译: 提供了能够进行信息的高密度记录和再现的垂直磁记录介质及其制造过程以及磁记录和再现装置。 垂直磁记录介质,其中软磁性底层具有至少两个软磁性层,以及两个软磁性层之间的Ru或Re,在至少具有软磁性底层和垂直磁记录层的盘形非磁性基板上, 被提供; 软磁性底层的易磁化轴具有期望的方向; 软磁性底层的易磁化轴基本上分布在除非磁性基板的径向以外的方向上,软磁性底层的易磁化轴方向的反铁磁耦合的偏置磁场为 10奥斯特(790 A / m)或更高。

    METHOD FOR MANUFACTURING MAGNETIC RECORDING MEDIUM, MAGNETIC RECORDING MEDIUM, AND MAGNETIC RECORDING AND REPRODUCING APPARATUS
    50.
    发明申请
    METHOD FOR MANUFACTURING MAGNETIC RECORDING MEDIUM, MAGNETIC RECORDING MEDIUM, AND MAGNETIC RECORDING AND REPRODUCING APPARATUS 有权
    用于制造磁记录介质,磁记录介质和磁记录和再现装置的方法

    公开(公告)号:US20100188772A1

    公开(公告)日:2010-07-29

    申请号:US12692354

    申请日:2010-01-22

    IPC分类号: G11B21/02 C23C14/34 G11B5/66

    摘要: There are provided a method for manufacturing a magnetic recording medium which is excellent in terms of both the recording and reproduction characteristics and the thermal fluctuation characteristics without reducing the density and hardness of the perpendicular magnetic layer; a magnetic recording medium; and a magnetic recording and reproducing apparatus with which an excellent recording density is achieved,wherein, in the method for manufacturing the magnetic recording medium,at least a portion of the perpendicular magnetic layer 4 is formed as a magnetic layer having a granular structure that contains Co as a major component and also contains an oxide of at least one nonmagnetic metal selected from the group consisting of Cr, Si, Ta, Al, Ti, W and Mg;a target for forming the perpendicular magnetic layer 4 by the sputtering process is prepared so as to include an oxide of Co and a compound of Co and at least one nonmagnetic metal selected from the group consisting of Cr, Si, Ta, Al, Ti, W and Mg, and to make the proportion of oxygen contained in the target higher than the proportion of oxygen contained in the perpendicular magnetic layer 4; anda sputtering gas pressure at the time of forming the perpendicular magnetic layer is set to 1 Pa or less.

    摘要翻译: 提供了一种在不降低垂直磁性层的密度和硬度的情况下,在记录和再现特性以及热波动特性方面优异的磁记录介质的制造方法; 磁记录介质; 以及实现了良好的记录密度的磁记录和重放装置,其中在磁记录介质的制造方法中,垂直磁性层4的至少一部分形成为具有粒状结构的磁性层, Co作为主要成分,还含有选自Cr,Si,Ta,Al,Ti,W和Mg中的至少一种非磁性金属的氧化物; 制备通过溅射法形成垂直磁性层4的目标,以便包括Co的氧化物和Co的化合物和选自Cr,Si,Ta,Al,Ti的至少一种非磁性金属, W和Mg,并使靶中含有的氧的比例高于垂直磁性层4中所含的氧的比例; 在形成垂直磁性层时的溅射气体压力设定为1Pa以下。