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    • 21. 发明授权
    • Method of operating an ink jet to achieve high print quality and high
print rate
    • 操作喷墨以实现高打印质量和高打印率的方法
    • US5170177A
    • 1992-12-08
    • US807777
    • 1991-12-10
    • Douglas M. StanleyJoy RoySusan C. SchoeningJeffrey J. Anderson
    • Douglas M. StanleyJoy RoySusan C. SchoeningJeffrey J. Anderson
    • B41J2/015B41J2/045B41J2/21
    • B41J2/04516B41J2/04581B41J2/04588B41J2/2128B41J2002/14387
    • A drop-on-demand ink jet has an ink chamber coupled to a source of ink, and an ink drop orifice with an outlet. An acoustic driver produces a pressure wave in the ink and causes the ink to pass outwardly through the ink drop orifice and outlet. The driver is driven with bipolar drive pulses having a refill pulse component and an eject pulse component of a polarity which is opposite to the refull pulse component. The refill and eject pulse components are separated by a wait period. The drive pulses may be adjusted to minimize their energy content at a frequency corresponding to the dominant acoustic resonance frequency of the ink jet. This will accelerate drop breakoff, optimize drop shape and minimize drop speed variations over the range of drop printing rates. The ink jet printer of the present invention may be used to print with a wide variety of inks, including phase change inks to achieve high print quality at high print rates.
    • 按需喷墨喷墨具有联接到墨源的墨室和具有出口的墨滴孔。 声学驱动器在油墨中产生压力波,并使油墨通过墨滴孔和出口向外通过。 驱动器由具有与补偿脉冲成分相反的极性的补充脉冲成分和弹出脉冲成分的双极驱动脉冲驱动。 补充和排出脉冲组件在等待期间分开。 可以调节驱动脉冲以在与喷墨的主要声共振频率相对应的频率下最小化其能量含量。 这将加速掉落分离,优化液滴形状并最大限度地降低液滴速度的变化范围。 本发明的喷墨打印机可用于使用各种各样的油墨进行打印,包括相变油墨以在高打印速率下实现高打印质量。
    • 24. 发明授权
    • Self-cleaning wet wipe method and apparatus for cleaning orifices in an AIP type printhead
    • 自清洁湿擦拭方法和AIP型打印头清洗孔的设备
    • US06336699B1
    • 2002-01-08
    • US09448008
    • 1999-11-23
    • Shahin SarkissianJoy Roy
    • Shahin SarkissianJoy Roy
    • B41J2165
    • B41J2/16538B41J2/16552
    • In order to clean a dirty printhead, the dirty printhead is first capped and the ink pressure in the printhead increased significantly to allow ink to escape through the orifices and completely fill a small gap inside the cap portion. After letting the orifices soak for a predetermined time to dissolve the dried ink and loosen dust debris which may be found on the printheads, the cap drainhole is opened to drain the ink while keeping the ink pressure inside the head at an intermediate higher level. Dirty ink remaining inside the orifice bore is removed using a self cleaning wiping station in separate steps. During a first step, the wiping element is pressed into contact with the orifices. The dirty ink, because of the high pressure inside the printhead, is unable to reenter the printhead and is absorbed by the wiping element. In a second step, the pressure inside the printhead is decreased significantly below operating pressures to enable the menisci to retreat inside an orifice lip. Then the orifices are again wiped with another portion of the wiping element to remove any remaining ink and to assist in drying the printhead. Once the printhead has been cleaned, the wiping station is moved out of engagement with the printhead and the wiping station automatically cleans the wiping element by passing the wiping element through the washing fluid and the squeegee element until absorbed ink is removed from the wiping element.
    • 为了清洁脏的打印头,脏的打印头首先被盖住,并且打印头中的墨水压力显着增加,从而允许墨水通过孔排出并完全填充盖部分内的小间隙。 在使孔口浸泡预定时间以溶解干燥的油墨并松开打印头上可能发现的灰尘碎屑之后,打开帽排水孔以排出油墨,同时将头部内的油墨压力保持在较高水平。 在单独的步骤中使用自清洁擦拭站去除留在孔口内的脏墨。 在第一步骤中,擦拭元件被压接与孔口接触。 由于打印头内部的高压,脏的墨水不能重新进入打印头并被擦拭元件吸收。 在第二步骤中,打印头内部的压力明显地降低到工作压力以下,以使得弯液面能够在孔唇口内退缩。 然后再次用擦拭元件的另一部分擦拭孔口以除去任何剩余的油墨并有助于干燥打印头。 一旦打印头被清洁,擦拭站就脱离与打印头的接合,并且擦拭站通过使擦拭元件通过洗涤流体和刮板元件自动清洁擦拭元件,直到从擦拭元件移除吸收的墨。