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    • 131. 发明申请
    • Stencil printing machine
    • 模版印刷机
    • US20050217519A1
    • 2005-10-06
    • US11098564
    • 2005-04-05
    • Taku NaitouAkira Nakamura
    • Taku NaitouAkira Nakamura
    • B41L13/18
    • B41L13/18
    • A stencil printing machine, which includes: a drum which is freely rotatable and has an outer peripheral wall formed of an ink impermeable member, in which a stencil sheet is mounted on a surface of the outer peripheral wall; an ink supplying device which has an ink supply port on the outer peripheral wall of the drum and has an ink tank storing an ink, and supplies the ink, which is guided from the ink tank, from the ink supply port to a surface of the outer peripheral wall; an ink recovery device which has an ink recovery port on the outer peripheral wall of the drum, and recovers, from the ink recovery port, an extra ink on the surface of the outer peripheral wall; and a pressure roller which presses a print sheet fed thereto to the outer peripheral wall. The ink recovery device is configured to recover, to the ink tank, the extra ink recovered from the ink recovery port.
    • 一种模版印刷机,其包括:滚筒,其可自由旋转并具有由不透油性部件形成的外周壁,其中,蜡纸安装在所述外周壁的表面上; 一种供墨装置,其在滚筒的外周壁上具有供墨口,并且具有储存墨水的墨盒,并且将从墨盒引导的墨水从墨供给口供给至墨表面 外周壁; 油墨回收装置,其在滚筒的外周壁上具有墨回收口,并从墨回收口回收外周壁表面上的多余油墨; 以及将进给到其的打印片材按压到外周壁的压力辊。 墨水回收装置被配置为从墨水回收从墨水回收口回收的多余墨水。
    • 135. 发明授权
    • Magnetic head device with a short auxiliary member
    • 具有短辅助构件的磁头装置
    • US06859342B1
    • 2005-02-22
    • US09504964
    • 2000-02-16
    • Yasuhiko ShinjoMorio KondoAkira NakamuraToshihiro UeharaNaoto HayashiKazutoshi MutouKenji MachidaJunji Numazawa
    • Yasuhiko ShinjoMorio KondoAkira NakamuraToshihiro UeharaNaoto HayashiKazutoshi MutouKenji MachidaJunji Numazawa
    • G11B5/39G11B5/58G11B5/187
    • G11B5/581
    • A magnetic head device having excellent sliding contact between its slider surface and magnetic tape at the time of scanning is provided. This magnetic head device has a base member, a thin-film magnetic head formed in contact with the base member and accommodated in a non-magnetic layer with the top end of a magnetic gap being exposed, and an auxiliary member which sandwiches the non-magnetic layer between the auxiliary member and the base member. On the top ends of the base member, the non-magnetic layer, and the auxiliary member, a slider surface on which magnetic tape slides is formed in the aligning direction of the base member, the non-magnetic layer, and the auxiliary member, or in a direction inclined at a predetermined angle to the aligning direction. Accordingly, the non-magnetic layer can be made thin, and the area of the non-magnetic layer on the slider surface is small. Thus, the space between the magnetic head device and the magnetic tape can be made small, and the sliding contact of the magnetic head device can be improved.
    • 提供了一种在扫描时其滑块表面和磁带之间具有优异的滑动接触的磁头装置。 该磁头装置具有:基部构件,形成为与基座构件接触并容纳在非磁性层中的薄膜磁头,其中磁隙的顶端被露出;以及辅助构件, 辅助构件和基座构件之间的磁性层。 在基部构件的顶端,非磁性层和辅助构件上,在基座构件,非磁性层和辅助构件的对准方向上形成有磁带滑动的滑块表面, 或者在相对于排列方向以预定角度倾斜的方向上。 因此,可以使非磁性层薄,并且滑块表面上的非磁性层的面积小。 因此,可以使磁头装置和磁带之间的空间小,并且可以提高磁头装置的滑动接触。
    • 136. 发明授权
    • Vehicle motion control device and method
    • 车辆运动控制装置及方法
    • US06659570B2
    • 2003-12-09
    • US09987180
    • 2001-11-13
    • Akira Nakamura
    • Akira Nakamura
    • B60T858
    • B60W40/114B60T8/17552B60T8/1769B60T2201/14B60T2230/02B60T2270/86B60W10/184B60W40/11B60W40/112B60W2050/0028
    • Vehicle motion control devices and methods systematically treat a conditions of each wheel to acquire and maintain the vehicle behavior stability together with anti wheel lock and wheel spin processing, braking forces distribution. Device for controlling a running behavior of a vehicle estimates a road reaction force on each wheel, calculates a yaw moment around a centroid of the vehicle body generated by the road reaction force on each wheel, and controls driving and braking forces on each wheel based upon the yaw moments so as to stabilize a running of the vehicle. Spin and Drift conditions are detected through presently generated yaw moments and critical yaw moments which can be generated by a road reaction force assumed to be maximized. Physical parameters of each wheels, required for detecting and controlling the behavior of the vehicle are estimated with a theoretical tire model.
    • 车辆运动控制装置和方法系统地处理每个车轮的状况以获得和维持车辆行为稳定性以及防轮锁和车轮旋转处理,制动力分布。 用于控制车辆行驶行为的装置估计每个车轮上的道路反作用力,计算由每个车轮上的道路反作用力产生的车身重心周围的横摆力矩,并且基于每个车轮上的驾驶和制动力 偏转力矩,以便稳定车辆的行驶。 通过目前产生的横摆力矩和临时偏转力矩来检测旋转和漂移条件,这些偏转力矩可以由假定为最大化的道路反作用力产生。 使用理论轮胎模型估计每个车轮的物理参数,用于检测和控制车辆的行为。
    • 138. 发明授权
    • Projection apparatus
    • 投影仪
    • US06565213B1
    • 2003-05-20
    • US09629723
    • 2000-07-31
    • Makoto YamaguchiSusumu YamadaAkira Nakamura
    • Makoto YamaguchiSusumu YamadaAkira Nakamura
    • G03B2100
    • G03B33/12H04N9/3105H04N9/3141
    • A projection apparatus includes a prism holder for holding a synthesizing prism, the prism holder including a first positioning portion and being positioned and fixed to one end plane and the other end plane of the synthesizing prism opposite to each other, except for incidence planes of the synthesizing prism on which respective color light beams are incident and an outgoing plane of the synthesizing prism for outputting a synthesized light flux to the side of a projection optical unit, and a lens holder for holding the prism holder and a projection lens, the lens holder including a second positioning portion which is fitted to the first positioning portion of the prism holder to make positioning and fixing. Thus, assembling can be made with accuracy and without fail while positioning is made to the optical modulation element, the synthesizing prism, and the projection lens.
    • 投影装置包括用于保持合成棱镜的棱镜保持器,所述棱镜保持器包括第一定位部分,并且被定位并固定在合成棱镜的一个端面和另一个端面彼此相反的位置,除了 各个彩色光束入射的合成棱镜和用于将合成光束输出到投影光学单元一侧的合成棱镜的出射面,以及用于保持棱镜支架和投影透镜的透镜保持架, 包括安装在棱镜支架的第一定位部分上以进行定位和固定的第二定位部分。 因此,可以在对光调制元件,合成棱镜和投影透镜进行定位的同时,精确地进行组装。
    • 139. 发明授权
    • Powder detecting capacitance-type sensor
    • 粉末检测电容型传感器
    • US06520011B2
    • 2003-02-18
    • US09865617
    • 2001-05-29
    • Akira Nakamura
    • Akira Nakamura
    • G01F2326
    • G01F23/261
    • A powder detecting capacitance-type sensor having a protection cover disposed inside of a powder tank so as to cover a sensor body. The protection cover is made of porous material to permit compressed air to communicate from an inner surface to an outer surface of the protection cover. The protection cover is made of half-sinter of e.g. polyethylene. Also, a space, which is enclosed by the protection cover, the cover guide and the sensor body, is in communication with an air inlet. Thus, compressed air can be introduced into the air inlet and blown outside through the protection cover to prevent powder from attaching or depositing on the protection cover.
    • 一种粉末检测电容式传感器,其具有设置在粉末箱内部以覆盖传感器主体的保护盖。 保护盖由多孔材料制成,以允许压缩空气从保护盖的内表面到外表面连通。 保护盖由例如半烧结体制成。 聚乙烯 此外,由保护盖,盖引导件和传感器主体包围的空间与进气口连通。 因此,可以将压缩空气引入空气入口并通过保护盖向外吹出,以防止粉末附着或沉积在保护盖上。