会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Magnetic head with air bearing surface protection film
    • 磁头带空气轴承表面保护膜
    • US07286326B2
    • 2007-10-23
    • US11140557
    • 2005-05-27
    • Nobuto YasuiHiroshi InabaShinji SasakiHiroshi Ishizaki
    • Nobuto YasuiHiroshi InabaShinji SasakiHiroshi Ishizaki
    • G11B5/60
    • G11B5/6005G11B5/40G11B5/56G11B5/6082
    • Embodiments of the invention provide an air bearing surface protection film having good corrosive resistance, electrical insulative property and mechanical wear resistance in the state of an extremely thin film. In one embodiment, an air bearing surface protection film having good corrosive resistance, electrical insulative property and mechanical wear resistance in a state of an extremely thin film is obtained by disposing a thin silicon nitride film having high density, high electric resistance, chemical stability and high adhesion with a substrate as a lowermost air bearing surface protection film and disposing a film comprising tetrahedral amorphous carbon and nitrogen as an uppermost air bearing surface protection film.
    • 本发明的实施例提供一种在极薄膜状态下具有良好的耐腐蚀性,电绝缘性和机械耐磨性的空气轴承表面保护膜。 在一个实施方案中,通过设置具有高密度,高电阻,化学稳定性的薄氮化硅膜和具有高密度,高电阻,化学稳定性的薄氮化硅膜,获得在极薄膜状态下具有良好的耐腐蚀性,电绝缘性和机械耐磨性的空气轴承表面保护膜 作为最低空气轴承表面保护膜与基板的高粘合性,并且将包含四面体非晶碳和氮的膜设置为最上面的空气轴承表面保护膜。
    • 4. 发明授权
    • Lapping tool and method for manufacturing the same
    • 研磨工具及其制造方法
    • US08092560B2
    • 2012-01-10
    • US11594080
    • 2006-11-08
    • Hiroshi InabaHiromu ChibaXudong YangShinji SasakiNobuto Yasui
    • Hiroshi InabaHiromu ChibaXudong YangShinji SasakiNobuto Yasui
    • B24B1/00B24D11/00B05D1/12H05H1/24C23C14/00C23C14/32C25B11/00
    • B24D18/0054B24B37/12
    • Since structural portions of a device made of a plurality of materials are different from one another in mechanical hardness, it is very difficult to uniformly lap the structural portions. This is attributable to generation of machining recessions due to differences in lapped amount when large fixed abrasive grains are used, and generation of lapping marks caused by that the dropped abrasive grains rotate. Accordingly, in order to cope with the disadvantage, it is essential to surely grip abrasive grains of small size to a surface of a surface plate.[Solving Means]Abrasive grains are fixedly forced into a surface of a lapping tool with mechanical pressure and then the surface of the lapping tool including the abrasive grains is subjected to plasma processing, whereby an improvement in adhesion between the abrasive grains and a surface plate and reduction in the number of loose abrasive grains, which are dropped from the surface of the lapping tool, can be achieved, so that it is possible to realize lapping, in which a surface of a device made of a plurality of materials is made very plane.
    • 由于由多种​​材料制成的装置的结构部分在机械硬度上彼此不同,所以很难均匀地研磨结构部分。 这是由于当使用大的固定磨粒时由于研磨量的差异而产生加工凹陷,并且由于下落的磨料颗粒旋转而产生研磨痕迹。 因此,为了应对这个缺点,必须将小尺寸的磨粒牢固地夹在表面板的表面上。 [解决方案]将研磨颗粒以机械压力固定地压入研磨工具的表面,然后对包含磨粒的研磨工具的表面进行等离子体处理,由此改善磨粒与表面板之间的粘合性 并且可以实现从研磨工具的表面落下的松散的磨粒的数量的减少,从而可以实现由多种材料制成的装置的表面非常成型的研磨 飞机
    • 5. 发明申请
    • Lapping tool and method for manufacturing the same
    • 研磨工具及其制造方法
    • US20070122548A1
    • 2007-05-31
    • US11594080
    • 2006-11-08
    • Hiroshi InabaHiromu ChibaXudong YangShinji SasakiNobuto Yasui
    • Hiroshi InabaHiromu ChibaXudong YangShinji SasakiNobuto Yasui
    • H05H1/24B05D1/12
    • B24D18/0054B24B37/12
    • Since structural portions of a device made of a plurality of materials are different from one another in mechanical hardness, it is very difficult to uniformly lap the structural portions. This is attributable to generation of machining recessions due to differences in lapped amount when large fixed abrasive grains are used, and generation of lapping marks caused by that the dropped abrasive grains rotate. Accordingly, in order to cope with the disadvantage, it is essential to surely grip abrasive grains of small size to a surface of a surface plate. [Solving Means]Abrasive grains are fixedly forced into a surface of a lapping tool with mechanical pressure and then the surface of the lapping tool including the abrasive grains is subjected to plasma processing, whereby an improvement in adhesion between the abrasive grains and a surface plate and reduction in the number of loose abrasive grains, which are dropped from the surface of the lapping tool, can be achieved, so that it is possible to realize lapping, in which a surface of a device made of a plurality of materials is made very plane.
    • 由于由多种​​材料制成的装置的结构部分在机械硬度上彼此不同,所以很难均匀地研磨结构部分。 这是由于当使用大的固定磨粒时由于研磨量的差异而产生加工凹陷,并且由于下落的磨料颗粒旋转而产生研磨痕迹。 因此,为了应对这个缺点,必须将小尺寸的磨粒牢固地夹在表面板的表面上。 [解决方案]将研磨颗粒以机械压力固定地压入研磨工具的表面,然后对包含磨粒的研磨工具的表面进行等离子体处理,由此改善磨粒与表面板之间的粘合性 并且可以实现从研磨工具的表面落下的松散的磨粒的数量的减少,从而可以实现由多种材料制成的装置的表面非常成型的研磨 飞机
    • 6. 发明申请
    • Magnetic head slider and production method thereof
    • 磁头滑块及其制造方法
    • US20070014050A1
    • 2007-01-18
    • US11486182
    • 2006-07-12
    • Nobuto YasuiHiroshi InabaShinji SasakiKazuhito Miyata
    • Nobuto YasuiHiroshi InabaShinji SasakiKazuhito Miyata
    • G11B5/60
    • G11B5/3169G11B5/102G11B5/3106G11B5/6005G11B21/21Y10T29/49025Y10T29/49027Y10T29/4903Y10T29/49032Y10T29/49046Y10T29/49048
    • A magnetic head slider having an air bearing surface overcoat that has excellent corrosion resistance and wear resistance despite its very small thickness is provided. In one embodiment, a method of producing a magnetic head slider comprises the steps of forming, on the air bearing surface of the slider, an air bearing surface overcoat which is a film stack of an amorphous silicon film and a hard amorphous carbon film, removing the surface region from the hard amorphous carbon film by the irradiation with an ion beam which is tilted with respect to a normal to the air bearing surface, and forming a rail in the air bearing surface on which the air bearing surface overcoat has been formed. The amount of the diamond component in the hard amorphous carbon film must not be smaller than about 45% and, desirably, in a range of about 60% to 85%. A high density and covering performance are obtained when the angle of irradiating the ion beam is not smaller than about 60 degrees from a normal to the air bearing surface of the magnetic head slider and when the acceleration voltage for the ion beam is not higher than about 300 V in the step of removing part of the air bearing surface overcoat.
    • 提供具有空气轴承表面外涂层的磁头滑块,其具有优异的耐腐蚀性和耐磨性,尽管其非常小的厚度。 在一个实施例中,制造磁头滑动器的方法包括以下步骤:在滑块的空气轴承表面上形成空气轴承表面外涂层,其是非晶硅膜和硬质非晶碳膜的膜叠层,去除 通过照射相对于空气轴承表面的法线倾斜的离子束,并且在已经形成有空气轴承表面外涂层的空气轴承表面中形成轨道,来自硬非晶碳膜的表面区域。 硬质无定形碳膜中的金刚石成分的含量不得小于约45%,优选为约60%〜85%的范围。 当照射离子束的角度与磁头滑块的空气轴承表面的法线不小于约60度时,并且当离子束的加速电压不高于约10度时,可获得高密度和覆盖性能 在去除部分空气轴承表面外套的步骤中为300V。