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    • 5. 发明授权
    • Developing device, visible image forming device, and image forming apparatus
    • 显影装置,可见图像形成装置和图像形成装置
    • US08676094B2
    • 2014-03-18
    • US13298976
    • 2011-11-17
    • Yoshitaka NakajimaShigeru InabaShota ObaTakashi OchiAkihisa MaruyamaToshihiro Kanematsu
    • Yoshitaka NakajimaShigeru InabaShota ObaTakashi OchiAkihisa MaruyamaToshihiro Kanematsu
    • G03G15/08
    • G03G15/081G03G15/09
    • A developing device includes a developer container; a developer holding body including a magnet member and a substantially cylindrical member; a transport member including a rotating shaft and a substantially spiral transport blade; a layer-thickness regulating member; and an interrupting member that is arranged between the developer holding body and the transport member, that intersects with a first virtual plane passing through a facing position between the regulating member and the developer holding body and being adjacent to a rotation locus of a radial-direction outer edge of the transport blade at a position at which a speed in a circumferential direction of the transport blade has a speed component toward the regulating member, and a second virtual plane passing through rotation centers of the developer holding body and transport member, and that interrupts movement of the developer pushed and moving in the radial direction of the transport blade.
    • 显影装置包括显影剂容器; 显影剂保持体,包括磁体构件和大致圆筒形构件; 传送构件,包括旋转轴和基本螺旋形的传送叶片; 层厚调节构件; 以及布置在显影剂保持体和传送构件之间的中断构件,其与通过调节构件和显影剂保持体之间的相对位置的第一虚拟平面相交并且与径向方向的旋转轨迹相邻 输送叶片的周向方向上的速度朝向限制部件的速度分量的位置处的输送叶片的外缘,以及通过显影剂保持体和输送部件的旋转中心的第二虚拟平面, 阻止显影剂在运输叶片的径向方向上推动和移动的运动。
    • 7. 发明授权
    • Liquid droplet flight device and image forming apparatus with electrowetting drive electrode
    • 液滴飞行装置和具有电润湿驱动电极的成像装置
    • US08373732B2
    • 2013-02-12
    • US12194107
    • 2008-08-19
    • Hiroshi TakahashiIchiro KadotaToshihiro KanematsuMasaaki Yamada
    • Hiroshi TakahashiIchiro KadotaToshihiro KanematsuMasaaki Yamada
    • B41J2/405
    • B41J2/06B41J2/15B41J2002/14395B41J2002/14459
    • A liquid droplet flight device is provided that moves an ink or the like using a comparatively low voltage and stably causes flight of even a high viscosity ink or the like. When causing droplets of a liquid inside a liquid retaining section to fly onto a medium transported between liquid droplet discharge means and an opposing electrode in the liquid droplet flight device, a high voltage is applied to the flight electrode from a bias power source to generate an electric field between the flight electrode and the opposing electrode. On/off control of flight control means is performed in this state to apply a drive voltage of a low voltage to an EW drive electrode from a drive power source such that the liquid inside a slit moves to a leading end portion of the flight electrode due to an electrowetting phenomenon, and the liquid that has moved to the leading end portion of the flight electrode flies toward the opposing electrode through the electric field such that a liquid droplet lands on the medium.
    • 提供了使用较低电压移动墨水等的液滴飞行装置,并且稳定地引起甚至高粘度墨水等的飞行。 当使液体保持部分内的液滴液滴飞溅到在液滴排出装置中的液滴排出装置和相对电极之间运送的介质上时,高压从偏压电源施加到飞行电极,以产生 飞行电极与对置电极之间的电场。 在该状态下执行飞行控制装置的开/关控制,以从驱动动力源向EW驱动电极施加低电压的驱动电压,使得狭缝内的液体移动到飞行电极的前端部,由此 并且已经移动到飞行电极的前端部的液体通过电场朝向相对电极飞行,使得液滴落在介质上。
    • 8. 发明授权
    • Method of manufacturing hollow structural member, substrate for hollow structural member production, and apparatus for manufacturing hollow structural member
    • 中空构件的制造方法,中空构造体的制造用基板,中空构造体的制造装置
    • US08202469B2
    • 2012-06-19
    • US12920554
    • 2009-03-10
    • Toshihiro KanematsuShin-ya Seno
    • Toshihiro KanematsuShin-ya Seno
    • B29C49/00
    • B29C44/3403B29C44/3492B29C44/583B29D11/00365
    • There is provided a method of manufacturing a hollow structural member suitable for precisely manufacturing a hollow structural member whose pitch space of the hollows is below 30 μm. The method of manufacturing a hollow structural member of this invention is to encapsulate, by using a gas-permeable material in part of a material that constitutes the substrate (5) for manufacturing the hollow structural member, a high-pressure gas by injection in advance, under high-pressure conditions, into the gas-permeable material; to form a plastic deformation film (10) on a surface under reduced-pressure conditions; and to expand and draw the plastic deformation film (10), while preventing the plastic deformation material from entering the recesses (5b), by discharging the high-pressure gas that is encapsulated in the gas-permeable material into each of the recesses (5b), whereby the hollow structural member is manufactured.
    • 提供了一种制造中空结构件的方法,该中空结构件适于精密制造中空结构件,其中空间的间距小于30μm。 制造本发明的中空结构件的方法是通过在构成用于制造中空结构件的基板(5)的材料的一部分中使用透气材料来封装预先注入的高压气体 在高压条件下进入透气材料; 在减压条件下在表面上形成塑性变形膜(10); 并且通过将封装在透气材料中的高压气体排出到每个凹部5b(5b)中,同时防止塑性变形材料进入凹部(5b)而膨胀并拉伸塑性变形膜(10) ),由此制造中空结构构件。
    • 10. 发明申请
    • SURFACE TEXTURE MEASURING INSTRUMENT AND MEASURING METHOD
    • 表面纹理测量仪器和测量方法
    • US20100018298A1
    • 2010-01-28
    • US12510401
    • 2009-07-28
    • Toshihiro KanematsuHideki MishimaNobuyuki Hama
    • Toshihiro KanematsuHideki MishimaNobuyuki Hama
    • G01B21/30G01N19/00G01B5/00
    • G01B5/0004G01B5/20G01B5/28
    • A surface texture measuring instrument includes: a measuring device that includes a detector for detecting surface texture of a workpiece and an X-axis movement mechanism for moving the detector in a measurement direction; an elevation inclination adjuster capable of adjusting an elevation position and an inclination angle of a table on which the measuring device is mounted; a stage on which the workpiece is mounted; and a controller that controls the measuring device and the elevation inclination adjuster. The controller includes: a measurement controller that controls the X-axis movement mechanism to conduct a preliminary measurement and main measurement of the workpiece; a computing unit that acquires a result of the preliminary measurement from the detector and obtains an inclination angle of the workpiece at which the workpiece is inclined to the measurement direction; and a positioning controller for adjusting the inclination angle of the table based on the obtained inclination angle.
    • 表面纹理测量仪器包括:测量装置,其包括用于检测工件的表面纹理的检测器和用于在测量方向上移动检测器的X轴移动机构; 能够调节安装有测量装置的工作台的仰角位置和倾斜角的仰角倾斜调节器; 安装工件的阶段; 以及控制测量装置和仰角倾斜调节器的控制器。 控制器包括:测量控制器,控制X轴移动机构进行工件的初步测量和主要测量; 计算单元,其从所述检测器获取所述初步测量结果,并获得所述工件在所述测量方向上倾斜的工件的倾斜角度; 以及基于获得的倾斜角度来调整台的倾斜角度的定位控制器。