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    • 6. 发明授权
    • Imaging system with electrophotographic patterning of an image definition material and methods therefor
    • 具有图像定义材料的电子照相图案的成像系统及其方法
    • US09551934B2
    • 2017-01-24
    • US15048930
    • 2016-02-19
    • PALO ALTO RESEARCH CENTER INCORPORATEDXEROX CORPORATION
    • Janos VeresDavid K. BiegelsenChu-heng Liu
    • G03F7/20B41F7/24G03G17/02
    • G03F7/20B41F7/24G03G17/02
    • A system comprises an electrophotographic subsystem, a transfer subsystem, an imaging member, and an inking subsystem. The electrophotographic subsystem comprises a photoreceptor, a charging subsystem, an exposure subsystem, and a development subsystem. In operation, the photoreceptor is charged areawise. An exposure pattern is formed by the exposure subsystem on the surface of the charged photoreceptor to thereby write a latent charge image onto the photoreceptor surface. The image is developed with an image definition material, such as a dampening fluid. The image definition material forms a positive pattern of the image to be printed. The image pattern is then transferred to the reimageable surface. The transferred pattern is then developed by selectively applying an ink over regions of image definition material. The inked image may be transferred to a substrate.
    • 系统包括电子照相子系统,传输子系统,成像构件和着墨子系统。 电子照相子系统包括感光体,充电子系统,曝光子系统和开发子系统。 在操作中,感光体面积充电。 通过曝光子系统在带电感光体的表面上形成曝光图案,从而将潜像写入感光体表面。 图像用诸如润版液的图像定义材料显影。 图像定义材料形成要打印的图像的正图案。 然后将图像图案转移到可再成像的表面。 然后通过在图像定义材料的区域上选择性地施加墨水来显影转印图案。 着墨的图像可以被转印到基底上。
    • 7. 发明申请
    • PRINTING PRESS
    • 印刷机
    • US20160059541A1
    • 2016-03-03
    • US14838277
    • 2015-08-27
    • KOMORI CORPORATION
    • Hiroyoshi KamodaTaichi Kawase
    • B41F7/24B41F7/04
    • B41F7/24B41F5/02B41F7/02B41F7/025B41F7/04B41F7/06B41F7/26B41F7/40B41F11/02
    • A printing press includes an impression cylinder, a blanket cylinder, a collecting plate cylinder, a collecting blanket cylinder, a plurality of partial plate cylinders, a plurality of inking devices, and a dampening unit. The impression cylinder holds and transports a sheet. The blanket cylinder is in contact with the impression cylinder. The collecting plate cylinder is in contact with the blanket cylinder, and a lithographic printing plate is mounted on the collecting plate cylinder. The collecting blanket cylinder is in contact with the collecting plate cylinder. The plurality of partial plate cylinders are in contact with the collecting blanket cylinder. The plurality of inking devices supply ink to the plurality of partial plate cylinders, respectively. The dampening unit supplies dampening water to the collecting plate cylinder.
    • 印刷机包括压印滚筒,橡皮布滚筒,收集印版滚筒,收集橡皮布滚筒,多个部分印版滚筒,多个上墨装置和阻尼单元。 压印滚筒保持和传送纸张。 橡皮布滚筒与压印滚筒接触。 收集印版滚筒与橡皮滚筒接触,平版印刷版安装在收集印版滚筒上。 收集橡皮布滚筒与收集印版滚筒接触。 多个部分印版滚筒与收集橡皮布滚筒接触。 多个上墨装置分别向多个部分印版滚筒供应墨水。 润湿单元为收集板气缸供给润湿水。
    • 9. 发明授权
    • Measurement field for determining the smearing limit during printing
    • 用于确定打印期间涂抹极限的测量区域
    • US08037816B2
    • 2011-10-18
    • US12147549
    • 2008-06-27
    • Martin GutfleischAxel Hauck
    • Martin GutfleischAxel Hauck
    • B41F7/24B41F25/00
    • B41F33/0054Y10S101/45Y10S101/46
    • A measurement field allows determining the smearing limit during printing, in particular during lithographic wet offset printing. The measurement field is arranged on a printing form, in particular a printing plate, which has printing, ink-carrying regions and nonprinting, dampening solution-carrying regions on its surface. A dampening solution-carrying property in the region of the measurement field is reduced by a nanoscopic coating (e.g., with amphiphilic molecules) or an unscreened, microscopic coating (e.g., a polymer coating) in comparison with the dampening solution-carrying property in the nonprinting regions of the surface of the printing form. The nanoscopic coating or the microscopic coating advantageously leads to a shifting of the smearing limit, that is to say to a displacement of the starting point of scumming, by the dampening solution requirement which is increased for scum-free printing within the region of the measurement field. Such a measurement field is thus advantageously used for the closed-loop control of a dampening solution supply.
    • 测量领域允许在印刷期间确定涂抹极限,特别是在平版印刷湿胶版印刷期间。 测量区域布置在其表面上具有印刷,墨水携带区域和非印刷,润湿溶液携带区域的印刷形式,特别是印刷版上。 与测量领域中的润湿溶液携带性​​相比,通过纳米镜涂层(例如,具有两亲分子)或未屏蔽的微观涂层(例如,聚合物涂层)来减少测量区域中的润湿溶液携带性​​能 印刷表面的非印刷区域。 纳米尺度涂层或微观涂层有利地导致涂抹极限的移动,即浮渣起始位置的移动,通过在测量区域内无浮渣印刷而增加的阻尼溶液要求 领域。 因此,这样的测量领域有利地用于阻尼溶液供应的闭环控制。