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    • 91. 发明申请
    • Cigarette box and blank set for same
    • 香烟盒和空白套相同
    • US20080164162A1
    • 2008-07-10
    • US12073527
    • 2008-03-06
    • Akira MiyazawaTetsuya NakamuraShunsuke Tawada
    • Akira MiyazawaTetsuya NakamuraShunsuke Tawada
    • B65D85/10B65D85/00B65D43/16
    • B65D85/1054B65D85/1009
    • A cigarette box includes an inner case (2) enclosing a bundle of cigarettes, an outer case (8) enclosing the inner case (2) in a manner allowing the inner case (2) to be moved up and down, and having a hinged lid (12) forming a part of a top wall thereof and a window (10) formed in a side wall to partly expose the inner case (2), and a link (20) connecting the inner case (2) and the hinged lid (12). When the inner case (2) is pushed up through the window (10) of the outer case (8), the link (20) urges the hinged lid (12) upward so that hinged lid (12) is opened. In an open position, the hinged lid (12) provides an access opening (16) projecting from the plane of the top wall of the outer case (8) and facing sideways of the outer case (8).
    • 香烟盒包括包围一束香烟的内壳体(2),以允许内壳体(2)上下移动的方式包围内壳体(2)的外壳体(8),并具有铰链 形成其顶壁的一部分的盖(12)和形成在侧壁中以部分地暴露内壳(2)的窗(10)和连接内壳(2)和铰接盖 (12)。 当内壳(2)被推向外壳(8)的窗(10)时,连杆(20)向上推动铰接盖(12),从而打开铰接盖(12)。 在打开位置,铰接盖(12)提供从外壳(8)的顶壁的平面突出并面向外壳(8)的侧面的进入开口(16)。
    • 93. 发明申请
    • Drive apparatus of liquid crystal panel and liquid crystal display apparatus
    • 液晶面板驱动装置及液晶显示装置
    • US20060007209A1
    • 2006-01-12
    • US11106525
    • 2005-04-15
    • Tetsuya NakamuraSeiji Kawaguchi
    • Tetsuya NakamuraSeiji Kawaguchi
    • G09G5/00
    • G09G3/3648G09G3/3655G09G2300/0491G09G2310/0245G09G2320/0252G09G2320/0257G09G2320/041G09G2330/027
    • [Object]To provide a liquid-crystal display using liquid crystal having splay alignment and bend alignment, which prevents irregularity of a display screen after power off and quickly transfers the liquid-crystal layer of a liquid-crystal panel to bend alignment. [Solving Means]A liquid-crystal panel drive 100 including an output system 102 of selectively outputting one voltage from a video signal voltage Vcom, a reset voltage Vsc, and transfer voltage of transferring the liquid-crystal panel from splay alignment to bend alignment, and control means 103, wherein the reset voltage is applied before applying the video signal voltage Vcom in the power-on state and thereafter the transfer voltage is applied, the transfer voltage is applied to the liquid-crystal panel in the power-off state, and then the reset voltage is applied and thereafter supply of a voltage to the liquid-crystal panel is stopped.
    • 本发明提供使用具有喷射取向和弯曲取向的液晶的液晶显示装置,能够防止断电后的显示画面的不规则,并迅速地将液晶面板的液晶层转印到弯曲取向。 [解决方案]一种液晶面板驱动器100,其包括从视频信号电压Vcom选择性地输出一个电压的输出系统102,复位电压Vsc以及将液晶面板从喷射取向转移到弯曲取向的转印电压, 以及控制装置103,其中在施加电源电压Vcom之前施加复位电压,之后施加转印电压,在断电状态下将转印电压施加到液晶面板, 然后施加复位电压,此后停止向液晶面板供给电压。
    • 96. 发明授权
    • Method of manufacturing ribbed structure by using biodegradable mold
    • 通过生物降解模具制造肋结构的方法
    • US06666941B2
    • 2003-12-23
    • US09994172
    • 2001-11-26
    • Tetsuya Nakamura
    • Tetsuya Nakamura
    • B29C3352
    • B29C33/52B29C53/822B29C70/30B29L2022/00Y10S425/012Y10T156/1043
    • Method of manufacturing a ribbed structure with fiber-reinforced composite material is provided. A mold for the structure is prepared having a mold surface. Non-hardened resin containing reinforcing fibers are placed on the mold surface of the structure mold. A mold for a rib is formed by using a material containing biodegradable polymers. Non-hardened resin containing reinforcing fibers are laminated on the rib mold, and then the rib mold is placed in a predetermined position on the non-hardened resin containing the reinforcing fibers tin the mold surface of the structure mold. The non-hardened resins are hardened and the rib mold is biochemically degraded wherein in the hardening of the resins, the resin hardened on the rib mold and the resin hardened on the mold surface of the structure mold are united with each other.
    • 提供了用纤维增强复合材料制造带肋结构的方法。 制备具有模具表面的用于该结构的模具。 含有增强纤维的非硬化树脂被放置在结构模具的模具表面上。 通过使用含有可生物降解的聚合物的材料形成肋的模具。 含有增强纤维的非硬化树脂层压在肋模上,然后将肋模放置在包含结构模具的模具表面的增强纤维的非硬化树脂上的预定位置。 非硬化树脂被硬化,并且肋模具被生物化学降解,其中在树脂的硬化中,在肋模上硬化的树脂和在结构模具的模具表面上硬化的树脂彼此结合。