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    • 2. 发明授权
    • Anilox metering system for electrographic printing
    • 用于电印的网纹计量系统
    • US08869695B2
    • 2014-10-28
    • US12566518
    • 2009-09-24
    • Eugene M. ChowJing ZhouGerald A. DomotoGrace T. Brewington
    • Eugene M. ChowJing ZhouGerald A. DomotoGrace T. Brewington
    • B41F9/10B41F31/04B41M1/42G03G15/10
    • G03G15/104
    • An embodiment is a method and apparatus to meter ink for electrographic printing. An ink loading mechanism having an anilox roller fills ink from an ink supply into cells in the anilox roller having a plurality of valleys and lands that form the cells. The ink loading mechanism causes the valleys to be full or nearly full with the ink. The anilox roller rotates in a first direction. A blanket roller rotationally engaged with the anilox roller pulls the ink out of the cells and causes the valleys to be partially filled. The blanket roller rotates in a second direction. A first cleaning blade cleans tops of the lands of the cells.Another embodiment is a method and apparatus to meter ink for electrographic printing. An ink loading mechanism having an anilox roller fills ink from an ink supply into cells in the anilox roller having a plurality of valleys and lands forming the cells. The ink loading mechanism causes the valleys to be full or nearly full with the ink. The anilox roller rotates in a first direction. A soft blade positioned slightly below surface of the lands removes ink from the cells and causes the valleys the partially filled as the anilox roller rotates. A hard blade positioned at the surface of the lands to clean residue of ink on the surface of the lands as the anilox roller rotates.
    • 一个实施例是一种用于电印印刷墨水的方法和装置。 具有网纹辊的墨水装载机构将油墨从墨水供给装入具有形成该单元的多个谷和平台的网纹辊中的单元中。 墨水装载机构使墨水充满或接近满。 网纹辊沿第一方向旋转。 与网纹辊旋转地接合的橡皮布辊将墨水从电池中拉出并导致谷部分地被填充。 橡皮布滚筒沿第二个方向旋转。 第一清洁刀片清洁细胞的脊部的顶部。 另一个实施例是一种计量油墨用于电印印刷的方法和装置。 具有网纹辊的墨水装载机构将油墨从墨水供给装入具有形成单元的多个谷底的网纹辊中的单元中。 墨水装载机构使墨水充满或接近满。 网纹辊沿第一方向旋转。 稍微位于焊盘表面下方的软刀片从电池中取出墨水,并使网纹辊旋转时部分填充的谷物。 位于平台表面的硬刀片,以在网纹辊旋转时清洁焊盘表面上的油墨残留物。
    • 3. 发明授权
    • Electrostatically addressable microvalves
    • 静电寻址微型阀
    • US08561963B2
    • 2013-10-22
    • US11959778
    • 2007-12-19
    • Ashish PattekarEugene M ChowEric Peeters
    • Ashish PattekarEugene M ChowEric Peeters
    • F16K31/128
    • F16K99/0001B01L3/502738B01L2200/12B01L2300/0819B01L2300/0887B01L2400/0655F16K99/0026Y10T137/0318Y10T137/0391Y10T137/87249
    • An improved microvalve is described. The microvalve includes a corresponding actuation aperture in an actuation aperture layer. A control fluid flows through the actuation aperture. The flow of the control fluid is controlled by an electric field typically applied via a charge distribution near an actuation aperture layer. In one embodiment, the electric field may adjust the opening and closing of the actuation aperture thereby controlling the flow of the control fluid. In a second embodiment, the control fluid is an electrorheological fluid where the electric field controls the viscosity of the ER fluid thereby controlling fluid flow through the actuation aperture. In both embodiments the flow of the control fluid controls stretching of a flexible membrane formed along the wall of a conduit through which a fluid to be controlled flows. The stretching of the flexible membrane controlling the flow of the main fluid to be controlled.
    • 描述了改进的微型阀。 微型阀包括致动孔层中相应的致动孔。 控制流体流过致动孔。 控制流体的流动由通常通过致动孔层附近的电荷分布施加的电场来控制。 在一个实施例中,电场可以调节致动孔的打开和关闭,从而控制控制流体的流动。 在第二实施例中,控制流体是电流变流体,其中电场控制ER流体的粘度,从而控制通过致动孔的流体流动。 在两个实施例中,控制流体的流动控制沿导管的壁形成的柔性膜的拉伸,待控制的流体通过该壁流动。 柔性膜的拉伸控制要控制的主流体的流动。