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    • 1. 发明专利
    • Improvement of super oil repellency through multiscale roughness by ald/cvd technique in inkjet applications and decrease of adhesiveness
    • 通过ALD / CVD技术在喷墨应用和粘合降解中通过多重粗糙度改进超级油墨
    • JP2012240418A
    • 2012-12-10
    • JP2012097470
    • 2012-04-23
    • Xerox Corpゼロックス コーポレイションXerox Corporation
    • LAW KOCK-YEEZHAO HONG
    • B41J2/135
    • B41J2/1606B41J2/14
    • PROBLEM TO BE SOLVED: To provide in various embodiments a device having a super oil repellent surface of multiscale and a method such that a fine-particle composite layer including metal-containing fine particles can form a device to be formed on a surface of a semiconductor layer with a roughness of microns or submicrons so that the layer may provide the device with a rough surface of multiscale and further can use the device.SOLUTION: The super oil repellent device 100C includes the semiconductor layer 130 which has a rough surface and can be formed with one or more of a column structure, a groove structure, and a combination thereof each of which is arranged covering a substrate 110, and further includes a suitable fine particle composite layer which is arranged on a rough surface and has a plurality of fine particles containing metal. Furthermore, the super oil repellent device includes a suitable oil repellent coating which is arranged in the suitable fine particle composite layer in order to provide the device with the super oil repellent surface of multiscale.
    • 要解决的问题:为了在各种实施方案中提供具有多尺度超疏油表面的装置,以及包括含金属微粒的细粒复合层可以形成在表面上形成的装置的方法 的半导体层,其粗糙度为微米或亚微米,使得该层可以为器件提供多尺度的粗糙表面,并且还可以使用该器件。 解决方案:超级斥油装置100C包括具有粗糙表面的半导体层130,并且可以形成有一个或多个列结构,槽结构及其组合,其中每个被布置成覆盖基板 并且还包括布置在粗糙表面上并且具有多个含有金属的细颗粒的合适的细颗粒复合层。 此外,超级防油装置包括适当的防油涂层,其被布置在合适的细颗粒复合层中,以便为该装置提供多尺度的超级拒油表面。 版权所有(C)2013,JPO&INPIT
    • 3. 发明专利
    • Image marking system, image forming method, and ink image forming method
    • 图像标记系统,图像形成方法和图像形成方法
    • JP2010277090A
    • 2010-12-09
    • JP2010124026
    • 2010-05-31
    • Xerox Corpゼロックス コーポレイションXerox Corporation
    • ZHOU JINGLAW KOCK-YEE
    • G03G15/20B41J2/32
    • G03G15/2014B41M7/009
    • PROBLEM TO BE SOLVED: To provide heating elements incorporating arrays of transistor micro-heaters for printing and image marking applications. SOLUTION: The image forming method comprises: forming a toner or ink image on an imaging member; and providing a fixing subsystem comprising one or more digital heating elements. The digital heating element comprises a micro-heater array having thermally isolated and individually addressable transistor micro-heaters. The image is formed by selectively heating one or more transistor micro-heaters that correspond to the toner or ink image to a temperature in the range of approximately 20°C to approximately 200°C in a few milliseconds, and feeding the media via the fixing subsystem to fix the toner or ink image on the media via the fixing subsystem. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供结合用于印刷和图像标记应用的晶体管微加热器阵列的加热元件。 图像形成方法包括:在成像构件上形成调色剂或油墨图像; 以及提供包括一个或多个数字加热元件的固定子系统。 数字加热元件包括具有热隔离且可单独寻址的晶体管微加热器的微加热器阵列。 通过在几毫秒内选择性地将对应于调色剂或油墨图像的一个或多个晶体管微加热器加热到约20℃至约200℃范围内的温度来形成图像,并且通过固定 子系统通过固定子系统将墨粉或墨水图像固定在介质上。 版权所有(C)2011,JPO&INPIT
    • 6. 发明专利
    • Thermally stable oleophobic low adhesion coating for inkjet printhead front face
    • 用于INKJET PRINTHEAD FONT FACE的耐热稳定的低粘度涂料
    • JP2012040876A
    • 2012-03-01
    • JP2011175541
    • 2011-08-11
    • Xerox Corpゼロックス コーポレイションXerox Corporation
    • SAMBHY VARUNLAW KOCK-YEEZHAO HONGCHUGH SAMARTH
    • B41J2/135
    • B41J2/162B41J2/1606C08G18/5015C09D175/04
    • PROBLEM TO BE SOLVED: To solve the problem with a conventional oleophobic low adhesion coating for an inkjet printhead front face, wherein the surface characteristics of the coating are degraded to a state insufficient for reducing stain of the inkjet printhead front face as much as possible, when heated to a typical temperature added during printhead fabrication.SOLUTION: When the oleophobic low adhesion coating is disposed on an inkjet printhead front face surface, jetted drops of ultra-violet gel ink or jetted drops of solid ink exhibit a contact angle greater than 45° and a low sliding angle of less than about 30°. In embodiments, the oleophobic low adhesion coating is thermally stable wherein the surface contact angle and sliding angle show little degradation after the coating is subjected to high temperatures in a range between 180° and 320° or thereabout and high pressures in a range between 100 psi and 400 psi or thereabout during printhead fabrication and manufacturing.
    • 要解决的问题:为了解决用于喷墨打印头正面的常规疏油性低粘附性涂层的问题,其中涂层的表面特性降低到不足以减少喷墨打印头正面的污点的状态, 当被加热到在打印头制造期间添加的典型温度时。 解决方案:当疏油性低粘附性涂层设置在喷墨打印头前表面上时,喷射的紫外线凝胶油墨滴或固体油墨的喷射液滴呈现大于45°的接触角和较小的滑动角度 大约30°。 在实施方案中,疏油性低粘附性涂层是热稳定的,其中在涂层经受180°至320°之间或高于100psi的范围内的高温下,表面接触角和滑动角度几乎不发生降解 并且在打印头制造和制造期间为400psi。 版权所有(C)2012,JPO&INPIT