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    • 3. 发明授权
    • Conveying mechanism and recording apparatus including the same
    • 输送机构及包括该输送机构的记录装置
    • US08641184B2
    • 2014-02-04
    • US12946358
    • 2010-11-15
    • Nozomu NishiberiYasufumi TanaamiYasuyuki Hirai
    • Nozomu NishiberiYasufumi TanaamiYasuyuki Hirai
    • B41J2/01B41J11/00
    • B41J11/007
    • Provided is a recording medium conveying mechanism including an endless center conveying belt and endless side conveying belts, the endless center conveying belt and the endless side conveying belts being looped over a driving roller to be driven by a motor, a driven roller and a tension roller. The center conveying belt is positioned in a center in a width direction of a recording medium to be conveyed, and the side conveying belts are positioned on opposite sides in a width direction of the center conveying belt, respectively. The center conveying belt includes a material with a high elastic modulus while the side conveying belts include a material with a low elastic modulus, and a biasing member for providing a tension to the center conveying belt and the side conveying belts is provided on a shaft of the tension roller.
    • 提供了一种包括环形中心输送带和环形侧输送带的记录介质输送机构,环形中心输送带和环形侧输送带环绕在驱动辊上,由驱动辊驱动,从动辊和张紧辊 。 中心输送带位于要输送的记录介质的宽度方向的中心,侧输送带分别位于中心输送带的宽度方向的相对侧。 中心传送带包括具有高弹性模量的材料,而侧传送带包括具有低弹性模量的材料,并且用于向中心传送带和侧传送带提供张力的施力部件设置在 张力辊。
    • 4. 发明申请
    • CONVEYING MECHANISM AND RECORDING APPARATUS INCLUDING THE SAME
    • 输送机械和记录装置,包括它们
    • US20110134201A1
    • 2011-06-09
    • US12946358
    • 2010-11-15
    • Nozomu NishiberiYasufumi TanaamiYasuyuki Hirai
    • Nozomu NishiberiYasufumi TanaamiYasuyuki Hirai
    • B41J2/01B65G37/00
    • B41J11/007
    • Provided is a recording medium conveying mechanism including an endless center conveying belt and endless side conveying belts, the endless center conveying belt and the endless side conveying belts being looped over a driving roller to be driven by a motor, a driven roller and a tension roller. The center conveying belt is positioned in a center in a width direction of a recording medium to be conveyed, and the side conveying belts are positioned on opposite sides in a width direction of the center conveying belt, respectively. The center conveying belt includes a material with a high elastic modulus while the side conveying belts include a material with a low elastic modulus, and a biasing member for providing a tension to the center conveying belt and the side conveying belts is provided on a shaft of the tension roller.
    • 提供了一种包括环形中心输送带和环形侧输送带的记录介质输送机构,环形中心输送带和环形侧输送带环绕在驱动辊上,由驱动辊驱动,从动辊和张紧辊 。 中心输送带位于要输送的记录介质的宽度方向的中心,侧输送带分别位于中心输送带的宽度方向的相对侧上。 中心传送带包括具有高弹性模量的材料,而侧传送带包括具有低弹性模量的材料,并且用于向中心传送带和侧传送带提供张力的施力部件设置在 张力辊。
    • 6. 发明授权
    • Ink container, inkjet printing apparatus and ink supplying method
    • 墨水容器,喷墨打印装置和墨水供应方法
    • US06948803B2
    • 2005-09-27
    • US10632329
    • 2003-08-01
    • Masahito YoshidaNaoji OtsukaHiroyuki InoueTakashi NojimaHitoshi SugimotoShusuke InamuraYasufumi TanaamiTakeshi IwasakiNoriko SatoYasuyuki HiraiTakeshi Yazawa
    • Masahito YoshidaNaoji OtsukaHiroyuki InoueTakashi NojimaHitoshi SugimotoShusuke InamuraYasufumi TanaamiTakeshi IwasakiNoriko SatoYasuyuki HiraiTakeshi Yazawa
    • B41J2/175
    • B41J2/17556B41J2/175B41J2/17509B41J2/17513
    • For eliminating waste of ink and achieving high charging efficiency with a reduced charging time where a printing head is equipped with a second tank for reserving a predetermined amount of ink and a supply system is configured to supply ink from a first tank to the second tank intermittently, the second tank is provided with a variable internal volume. The internal volume is varied to cause the second tank itself to function as an actuator for charging ink and performing a venting process. Specifically, the internal volume is forcibly reduced to cause a reverse flow of a gas residing in the second tank along with ink into the first tank, which makes it possible to generate of waste ink that is released to the outside. A normal charging operation can be completed simply by causing a change in the opposite direction (the direction of increasing the internal volume). Relatedly, the second tank may be provided with a member for holding ink and generating a negative pressure originating from an elastic force. With connection of the first tank and the member, the pressure in the second tank is reduced to cause the member to expand, thereby introducing ink into the same. This introduction is stopped by regulating the expansion with a displaceable unit which expands when the pressure is reduced. The regulation is performed at such a position that the negative pressure generated in the member by canceling regulation is in equilibrium with an ink meniscus-holding ability of the printing head.
    • 为了消除墨水的浪费并且在减少充电时间的情况下实现高的充电效率,其中打印头配备有用于保留预定量的墨水的第二罐,并且供应系统被配置为间歇地将墨水从第一罐供应到第二罐 ,第二罐具有可变的内部容积。 内部容积变化,使得第二罐本身用作用于对油墨进行充气并执行排气过程的致动器。 具体地说,内部体积被强制地减少,导致第二罐中存在的气体与油墨一起反向流入第一罐,这使得可以产生释放到外部的废墨。 可以简单地通过使相反方向(内部容积增加的方向)发生变化来完成正常的充电操作。 相关地,第二罐可以设置有用于保持油墨并产生源自弹性力的负压的构件。 通过第一罐和构件的连接,第二罐中的压力减小,使构件膨胀,从而将油墨引入其中。 通过用可移位单元调节膨胀来停止该介绍,当压力降低时,该位移膨胀。 在通过取消调节而在构件中产生的负压与打印头的墨水弯月面保持能力平衡的位置进行调节。
    • 10. 发明授权
    • Printing medium transferring apparatus
    • 印刷介质转印装置
    • US07575233B2
    • 2009-08-18
    • US11470324
    • 2006-09-06
    • Yasufumi Tanaami
    • Yasufumi Tanaami
    • B65H5/02
    • B41J13/025B41J11/0045B41J11/0095
    • According to detection results obtained by a plurality of printing medium detection device, a printing medium is carried in while controlling an operation of pressing a pinch roller to be in contact with a conveying roller and of separating the pinch roller from the conveying roller and an operation of pressing a spur to be in contact with a eject roller and of separating the spur from the eject roller. Accordingly, it is made possible to carry the printing medium into the apparatus in a proper state even when the printing medium is a nonstandard-sized printing medium. Moreover, while effectively utilizing one driving source, a plurality of mechanism is independently controlled. Hence, accurately controlled flat-pass printing can be realized despite of the relatively small number of components.
    • 根据由多个打印介质检测装置获得的检测结果,在控制压送辊与输送辊接触并将压紧辊与输送辊分离的操作的同时,承载打印介质, 按压与排出辊接触的正齿轮并使排出辊与排出辊分离。 因此,即使当打印介质是非标准尺寸的打印介质时,也可以将打印介质以适当的状态运送到设备中。 此外,在有效地利用一个驱动源的同时,独立地控制多个机构。 因此,尽管组件数量相对较少,但是可以实现精确控制的平面打印。