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    • 61. 发明授权
    • Centrifugal barrel finishing method
    • 离心桶整理方法
    • US4665661A
    • 1987-05-19
    • US787785
    • 1985-10-01
    • Hisamine KobayashiAtsushi Kato
    • Hisamine KobayashiAtsushi Kato
    • B24B31/02B24B31/033B24B31/12B24B1/00
    • B24B31/033
    • In the centrifugal barrel finishing machine of the type having X barrel assemblies, in which X is an integer, a method finishing workpieces whereby during a given total finishing time Y of the workpieces, each succeeding assembly containing finished workpieces is to be replaced with another assembly containing unfinished workpieces at the end of each time interval of Y/X. The workpieces in each succeeding assembly are finished X number of times each of which is for a duration of time equal to Y/X. In this way, the workpieces in each succeeding assembly can be replaced with workpieces to be finished as the finishing in the preceding unit has been completed, thereby permitting a continuous finishing process and barrel assembly replacement for each succeeding assembly without the need for exchanging the mass in all the barrel assemblies at the same time.
    • 在其中X为整数的X型筒组件的型式的离心式精整机中,一种整理工件的方法,其中在工件的给定的总精加工时间Y期间,每个后续组装包含成品的工件将被替换为另一组件 在Y / X的每个时间间隔结束时包含未完成的工件。 每个后续组装中的工件完成X次,每次持续时间等于Y / X。 以这种方式,随着在前一单元中的精加工完成,随后的组装中的工件可以被替换为待完成的工件,从而允许对于每个后续组件的连续精加工和桶组件更换而不需要更换质量 在所有的桶组件在同一时间。
    • 62. 发明授权
    • Developing device
    • 开发设备
    • US09046811B2
    • 2015-06-02
    • US13779808
    • 2013-02-28
    • Atsushi Kato
    • Atsushi Kato
    • G03G15/08
    • G03G15/08G03G15/0889
    • A developing device includes: a developing chamber provided with a developing agent-holding body; a first developing agent-accommodating chamber for accommodating a developing agent and arranged below the developing chamber; a first rotating member disposed in the first developing agent-accommodating chamber, elastically deformable and configured to rotate to slidably contact with an inner surface of the first developing agent-accommodating chamber; a second developing agent-accommodating chamber arranged adjacent to the developing chamber and an upper portion of the first developing agent-accommodating chamber, and to which the developing agent in the first developing agent-accommodating chamber is supplied by the first rotating member; and a second rotating member disposed in the second developing agent-accommodating chamber, elastically deformable and configured to rotate to slidably contact with an inner surface of the second developing agent-accommodating chamber and to transport the developing agent in the second developing agent-accommodating chamber toward the developing chamber.
    • 显影装置包括:具有显影剂保持体的显影室; 用于容纳显影剂并布置在显影室下方的第一显影剂容纳室; 第一旋转构件,其设置在第一显影剂容纳室中,弹性变形并且构造成旋转以与第一显影剂容纳室的内表面滑动接触; 靠近显影室设置的第二显影剂容纳室和第一显影剂容纳室的上部,第一显影剂容纳室中的显影剂由第一旋转构件供应到该第一显影剂容纳室; 以及第二旋转构件,其设置在所述第二显影剂容纳室中,所述第二显影剂容纳室可弹性变形并且构造成旋转以与所述第二显影剂容纳室的内表面滑动接触并且将所述显影剂输送到所述第二显影剂容纳室 朝向显影室。
    • 66. 发明申请
    • MAGNETIC HEAD HAVING A THERMAL FLY-HEIGHT CONTROL (TFC) STRUCTURE UNDER A FLAT LOWER SHIELD
    • 具有平坦下降的高温控制(TFC)结构的磁头
    • US20130141813A1
    • 2013-06-06
    • US13310428
    • 2011-12-02
    • Takashi WagatsumaYukimasa OkadaIchiro OodakeAtsushi Kato
    • Takashi WagatsumaYukimasa OkadaIchiro OodakeAtsushi Kato
    • G11B5/02G11B5/127B05D5/12
    • G11B5/607G11B5/3133
    • In one embodiment, a method includes forming a conducting material above an insulating film, applying a mask to portions of the conducting material in a shape of a TFC structure, removing exposed portions of the conducting material to form the TFC structure, depositing an insulating film above the TFC structure, and planarizing the insulating film to form a planar upper surface of the insulating film. In another embodiment, a magnetic head includes a TFC structure positioned between insulating films and a magnetic element positioned above the TFC structure, the TFC structure configured for providing localized thermal protrusion of the magnetic head on a media facing surface thereof, wherein an upper surface of an upper of the insulating films is planar, the magnetic element includes at least one of a main magnetic pole and a read sensor, and the TFC structure is configured for providing thermal protrusion of the magnetic element.
    • 在一个实施例中,一种方法包括在绝缘膜的上方形成导电材料,以TFC结构的形式对导电材料的部分施加掩模,去除导电材料的暴露部分以形成TFC结构,沉积绝缘膜 在TFC结构之上,并且平坦化绝缘膜以形成绝缘膜的平面上表面。 在另一个实施例中,磁头包括定位在绝缘膜和位于TFC结构之上的磁性元件之间的TFC结构,该TFC结构被配置用于在其面向介质的表面上提供磁头的局部热突出,其中, 绝缘膜的上部是平面的,磁性元件包括主磁极和读取传感器中的至少一个,并且TFC结构被配置为提供磁性元件的热突起。
    • 68. 发明授权
    • Fused tricyclic compound having aldose reductase inhibitory activity
    • 具有醛糖还原酶抑制活性的融合三环化合物
    • US08198447B2
    • 2012-06-12
    • US12704051
    • 2010-02-11
    • Naoki ToyookaAtsushi KatoIsao Adachi
    • Naoki ToyookaAtsushi KatoIsao Adachi
    • C07D471/04C07D491/052C07D495/04
    • C07D471/04C07D491/052C07D495/04
    • A fused tricyclic compound having aldose reductase inhibitory activity and shown by the following formula, wherein R1 represents 1 to 3 atoms or substituents selected from a hydrogen atom, a halogen atom, a substituted or unsubstituted alkyl, cycloalkyl, alkylene, or alkoxy group, and a protected or unprotected hydroxyl or carboxyl group, R2 represents a protected or unprotected carboxyl group, R3 represents 1 or 2 atoms or substituents selected from a hydrogen atom, a halogen atom, an oxo group, a substituted or unsubstituted alkyl or alkoxy group, and a protected or unprotected carboxyl group, A represents an alkylene group, and B represents an oxygen atom, a sulfur atom, or a group shown by the following formula, wherein R4 represents an alkyl or aryl group substituted by an aryl, cycloalkyl, or heterocyclic group, and X represents an oxygen atom or a sulfur atom, provided that, when B represents a group shown by the following formula: wherein R4 represents an alkyl or aryl group substituted with an aryl, cycloalkyl, or heterocyclic group, X represents a sulfur atom.
    • 具有醛糖还原酶抑制活性的融合三环化合物,其由下式表示,其中R1表示1-3个原子或选自氢原子,卤素原子,取代或未取代的烷基,环烷基,亚烷基或烷氧基的取代基,和 保护的或未被保护的羟基或羧基,R 2表示被保护或未被保护的羧基,R 3表示1或2个原子或选自氢原子,卤原子,氧代基,取代或未取代的烷基或烷氧基的取代基, 被保护或未被保护的羧基,A表示亚烷基,B表示氧原子,硫原子或下式表示的基团,其中R4表示被芳基,环烷基或杂环取代的烷基或芳基 基团,X表示氧原子或硫原子,条件是当B表示下式所示的基团时:其中R4表示烷基或芳基基团 用芳基,环烷基或杂环基团取代,X表示硫原子。
    • 69. 发明授权
    • Temperature sensor probe
    • 温度传感器探头
    • US08157441B2
    • 2012-04-17
    • US12274480
    • 2008-11-20
    • Seiichiro KinugasaAtsushi Kato
    • Seiichiro KinugasaAtsushi Kato
    • G01K11/20G01K11/32G01J5/08
    • G01K11/3213
    • To provide a temperature sensor probe that can take stable measurements, and a manufacturing method thereof. The temperature sensor probe related to the present invention is a temperature sensor probe for measuring temperature using a fluorescent substance that changes fluorescent characteristics depending on temperature. Then, a powdered fluorescent substance, a guide wave route member that propagates excitation light, which is irradiated on the fluorescent substance, and fluorescent light, which is produced by the fluorescent substance, are provided. Further, the particle size of the powdered fluorescent substance is confined to the range of 60 to 100 μm.
    • 提供可以进行稳定测量的温度传感器探头及其制造方法。 与本发明有关的温度传感器探头是用于使用根据温度改变荧光特性的荧光物质测量温度的温度传感器探针。 然后,提供粉状荧光物质,传播照射在荧光物质上的激发光的引导波道构件和由荧光物质产生的荧光。 此外,粉末状荧光物质的粒径被限制在60〜100μm的范围。
    • 70. 发明授权
    • Temperature sensor probe and manufacturing method of the same
    • 温度传感器探头及其制造方法相同
    • US08123403B2
    • 2012-02-28
    • US12269553
    • 2008-11-12
    • Shunji IchidaSeiichiro KinugasaAtsushi Kato
    • Shunji IchidaSeiichiro KinugasaAtsushi Kato
    • G01K11/00G01J5/00
    • G01K11/3213
    • To provide a temperature sensor probe that can conduct stable measurements, and the manufacturing method of the same. The temperature sensor probe related to the present invention provides: a fluorescent material that is a mixture of a fluorescent substance and a transparent material; a thermosensitive part having a concave part in which the fluorescent material is arranged; a waveguide route rod that propagates excitation light, which is irradiated on the fluorescent material, and fluorescent light, which is produced by the fluorescent substance; and a protective tube that covers the side surfaces of the waveguide route rod. Then, the fluorescent material is affixed to the tip of the waveguide route rod using the transparent material, and the waveguide route rod bites into the fluorescent material.
    • 提供可进行稳定测量的温度传感器探头及其制造方法。 与本发明有关的温度传感器探针提供:作为荧光物质和透明材料的混合物的荧光材料; 具有设置荧光体的凹部的热敏部; 传播照射在荧光材料上的激发光的波导路径棒和由荧光物质产生的荧光; 以及覆盖波导路径棒的侧面的保护管。 然后,使用透明材料将荧光材料固定在波导路径杆的末端,并且波导路线棒咬入荧光材料。