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    • 1. 发明申请
    • FLEXIBLE TUBE FOR ENDOSCOPE, AND METHOD FOR MANUFACTURING THE SAME
    • 用于内窥镜的柔性管及其制造方法
    • US20120180896A1
    • 2012-07-19
    • US13498580
    • 2010-09-13
    • Nobuharu Takahashi
    • Nobuharu Takahashi
    • F16L11/00B29C47/06
    • A61B1/0055A61B1/00078A61B1/0011A61B1/0056A61M25/0045G02B23/2476
    • A flexible tube 10 is constituted of a flexible tube material 14 and a covering layer 15 of two-layers of constitution having an inner layer 17 which covers the entire peripheral surface of the flexible tube material 14 and an outer layer 18 which covers the entire peripheral surface of the inner layer 17. The covering layer 15 is two-layer molded to have the inner layer 17 and the outer layer 18, by supplying two kinds of resins into one molding die at the same time, with being overlapped each other. As resins for molding the inner layer 17 and the outer layer 18, a combination of the soft resin and the hard resin is selected to be in conditions that the difference at the 100% modulus value, which is an index of a hardness after molding, is equal to or more than 10 MPa, and that the difference of the melt viscosity in the molding temperature of 150° C. to 200° C., which is an index of the fluidity in the molten state, is equal to or less than 2500 PaS.
    • 柔性管10由柔性管材料14和具有覆盖柔性管材14的整个周面的内层17的两层结构的覆盖层15和覆盖整个周边的外层18构成 内层17的表面。通过将两种树脂同时供给两种树脂彼此重叠,将覆盖层15双层成型为具有内层17和外层18。 作为用于成型内层17和外层18的树脂,软质树脂和硬质树脂的组合选择为在成型后硬度指标为100%模量值的差异, 等于或大于10MPa,并且在作为熔融状态的流动性的指标的150℃至200℃的成型温度下的熔体粘度的差等于或小于 2500 PaS。
    • 2. 发明授权
    • Component fitting structure
    • 组件装配结构
    • US06382168B1
    • 2002-05-07
    • US09584382
    • 2000-05-31
    • Takehiko SayamaNobuharu Takahashi
    • Takehiko SayamaNobuharu Takahashi
    • F16H708
    • F01L1/053F01L1/02F01L1/024F01L1/0532F01L2001/0537F02B75/22F02B2275/06F02B2275/18
    • A component fitting structure includes a component fitting hole (25) formed across mated faces between a cylinder head (4) and chain cover (24), and a collar (26) fitted in the component fitting hole through a liquid gasket, a tensioner unit 21a being engaged with the collar. Because the component fitting portion extends across the mated faces the members themselves can be made smaller in size. Further, since the collar can be attached in advance to one of these members before they are mated together, the fitting portion of the component can be easily observed visually. Further, the component can be removed without separating the two members from each other.
    • 一种部件装配结构包括:一个在气缸盖(4)和链罩(24)之间的配合面上形成的部件装配孔(25)和一个通过液体垫圈安装在零件装配孔中的轴环(26),张紧装置 21a与套环接合。 由于部件配合部分跨越配合面延伸,所以可使构件本身的尺寸更小。 此外,由于可以在将这些构件配合在一起之前将套环预先附接到这些构件中的一个,所以可以容易地观察构件的装配部分。 此外,可以将组件移除而不将两个构件彼此分离。
    • 3. 发明授权
    • Plane array antenna for receiving satellite broadcasting
    • 用于接收卫星广播的平面阵列天线
    • US5519409A
    • 1996-05-21
    • US319527
    • 1994-10-07
    • Masahiro UematsuTakashi OjimaNobuharu TakahashiAtsushi Kaise
    • Masahiro UematsuTakashi OjimaNobuharu TakahashiAtsushi Kaise
    • H01P1/06H01Q1/32H01Q3/04H01Q13/22H01Q21/06H01Q23/00H01Q13/10
    • H01Q21/068H01Q1/3275H01Q3/04
    • This plane array antenna for receiving satellite broadcasts is an optimal combination of the plane array antenna main body having a tilt angle, a converter connected with the antenna main body through the power supply portion, and the rotation mechanism for rotating the antenna main body within almost a horizontal plane for tracking the azimuthal angle direction. The plane array antenna main body has the power supply portion formed at the center of the rotation and the converter includes a dielectric substrate having a microstrip channel formed on the substrate and a casing accommodating the substrate. The converter is fixed downwardly of the antenna main body and supports the antenna main body. The power supply portion includes the power supply probe with an insulation covering, and has its front end portion inserted into a space formed with the antenna body, a central portion extending through the casing of the converter, and the lowest end portion combined with the microstrip channel. The rotation mechanism includes a cylindrical body projecting downwardly from the bottom surface of the antenna main body at the outside of the converter and a driving mechanism for rotating the cylindrical body.
    • 用于接收卫星广播的该平面阵天线是具有倾斜角的平面阵天线主体,通过电源部与天线主体连接的转换器和用于使天线主体几乎旋转的旋转机构的最佳组合 用于跟踪方位角方向的水平面。 平面阵天线主体具有形成在旋转中心的电源部分,并且转换器包括具有形成在基板上的微带通道的电介质基板和容纳基板的壳体。 转换器固定在天线主体的下方并支撑天线主体。 电源部分包括具有绝缘覆盖层的电源探针,并且其前端部分插入到形成有天线体的空间中,延伸穿过转换器壳体的中心部分和与微带结合的最低端部分 渠道。 旋转机构包括从转换器外侧的天线主体的底面向下突出的圆筒体,以及用于旋转圆筒体的驱动机构。
    • 4. 发明授权
    • Flexible tube for endoscope, and method for manufacturing the same
    • 内窥镜柔性管及其制造方法
    • US09044139B2
    • 2015-06-02
    • US13498580
    • 2010-09-13
    • Nobuharu Takahashi
    • Nobuharu Takahashi
    • F16L11/00A61B1/005A61B1/00G02B23/24A61M25/00
    • A61B1/0055A61B1/00078A61B1/0011A61B1/0056A61M25/0045G02B23/2476
    • A flexible tube 10 is constituted of a flexible tube material 14 and a covering layer 15 of two-layers of constitution having an inner layer 17 which covers the entire peripheral surface of the flexible tube material 14 and an outer layer 18 which covers the entire peripheral surface of the inner layer 17. The covering layer 15 is two-layer molded to have the inner layer 17 and the outer layer 18, by supplying two kinds of resins into one molding die at the same time, with being overlapped each other. As resins for molding the inner layer 17 and the outer layer 18, a combination of the soft resin and the hard resin is selected to be in conditions that the difference at the 100% modulus value, which is an index of a hardness after molding, is equal to or more than 10 MPa, and that the difference of the melt viscosity in the molding temperature of 150° C. to 200° C., which is an index of the fluidity in the molten state, is equal to or less than 2500 PaS.
    • 柔性管10由柔性管材料14和具有覆盖柔性管材14的整个周面的内层17的两层结构的覆盖层15和覆盖整个周边的外层18构成 内层17的表面。通过将两种树脂同时供给两种树脂彼此重叠,将覆盖层15双层成型为具有内层17和外层18。 作为用于成型内层17和外层18的树脂,软质树脂和硬质树脂的组合选择为在成型后硬度指标为100%模量值的差异, 等于或大于10MPa,并且在作为熔融状态的流动性的指标的150℃至200℃的成型温度下的熔体粘度的差等于或小于 2500 PaS。
    • 6. 发明授权
    • Machine provided with pulsating oil pressure reducing device
    • 机器配有脉动油减压装置
    • US07392780B2
    • 2008-07-01
    • US11717176
    • 2007-03-13
    • Tatsunori TsurutaNoriaki KawaiChihiro NishikawaNobuharu Takahashi
    • Tatsunori TsurutaNoriaki KawaiChihiro NishikawaNobuharu Takahashi
    • F01M1/16F01M1/04
    • F01M1/16F01M11/02
    • A pulsating oil pressure reducing device 40 for an internal combustion engine has an oil chamber 41 for reducing pulsating oil pressure in a discharge passage 30 for carrying oil discharged from an oil pump 20. The oil chamber 41 communicates with the discharge passage 30 by way of a connecting port 41a1 and makes the oil stagnate therein. The oil chamber 41 is connected to the discharge passage 30 by an air vent passage 45 through which air is discharged from the oil chamber 41 into the discharge passage 30. The air vent passage 45 has an inlet port 45a opening into a top part 41a of the oil chamber 41 and a discharge port 45b opening into the oil passage 30 at a level above the inlet port 45a. Since the pulsating oil pressure reducing device 40 having the air vent passage separately from the connecting port, air can be efficiently discharged from the oil chamber and the degree of freedom of placement of the oil passage and the oil chamber is increased.
    • 用于内燃机的脉动油减压装置40具有油室41,用于减少用于承载从油泵20排出的油的排出通道30中的脉动油压。 油室41通过连接口41a1与排出通道30连通,并使油滞留在其中。 油室41通过排气通道45连接到排出通道30,空气从油室41排出到排放通道30中。 排气通道45具有通向油室41的顶部41a的入口45和在入口端口45a上方的通向油通道30的排出口45b。 由于具有与连接口分开的排气通道的脉动油减压装置40,因此能够从油室高效地排出空气,并且油路和油室的配置自由度增大。
    • 9. 发明授权
    • Slotted leaky waveguide array antenna
    • 开槽泄漏波导阵列天线
    • US5579019A
    • 1996-11-26
    • US580787
    • 1995-12-29
    • Masahiro UematsuTakashi OjimaNobuharu TakahashiNaohisa GotoJiro HirokawaMakoto Ando
    • Masahiro UematsuTakashi OjimaNobuharu TakahashiNaohisa GotoJiro HirokawaMakoto Ando
    • H01Q3/04H01P5/12H01Q1/32H01Q13/10H01Q13/20H01Q13/22H01Q21/00H01Q21/06H01Q21/29H01A13/10
    • H01Q21/005H01Q21/068
    • A slotted leaky waveguide array antenna of a one-axis tracking type wherein a feed section including a feed probe is kept in a stationary state to thereby keep a converter in a stationary state and a desired beam width is set in a tilt direction, includes a plurality of radiation waveguides arranged adjacent and parallel to each other, each of which has a plurality of slots arranged in a waveguide axial direction, and a feed waveguide for distributing to the respective radiation waveguides electromagnetic waves received through a feed section from a converter, and the antenna rotates in a substantially horizontal plane to track an azimuth direction, wherein the feed waveguide has a first section extended along one ends of the radiation waveguides and a second section extended from the feed section provided in the rotary center of the slotted leaky waveguide array antenna to the center of the first section, and wherein the radiation waveguides are formed with crossed slots having an identical offset, and the number of the crossed slots is preferably selected between 13 and 17.
    • 一种单轴跟踪型的开槽泄漏波导阵列天线,其中包括进给探针的进给部分保持在静止状态,从而保持转换器处于静止状态并且将所需的波束宽度设置在倾斜方向,包括 多个彼此相邻并平行布置的辐射波导,每个辐射波导具有布置在波导轴向方向上的多个狭槽,以及馈送波导,用于分配到各个辐射波导,通过来自转换器的馈送部分接收的电磁波,以及 天线在基本上水平的平面中旋转以跟踪方位方向,其中馈电波导具有沿着辐射波导的一端延伸的第一部分和从设置在开槽的漏波导阵列的旋转中心的馈电部分延伸的第二部分 天线到第一部分的中心,并且其中辐射波导形成有具有ide的交叉槽 并且交叉槽的数量优选在13和17之间选择。