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    • 45. 发明授权
    • Imaging surface field reconditioning method and apparatus
    • 成像面场修复方法及装置
    • US06840615B2
    • 2005-01-11
    • US10320828
    • 2002-12-16
    • David H. PanRalph A. MosherJames E. WilliamsRichard J. Blum
    • David H. PanRalph A. MosherJames E. WilliamsRichard J. Blum
    • B41J2/005B41J2/01
    • B41J2/0057B41J2/17593
    • An imaging surface field reconditioning method and apparatus are provided for reconditioning, in the field, a marking material control pattern on an imaging surface of in an image producing machine. The imaging surface field reconditioning apparatus for practicing the method includes (a) an abrading device including an abrasive member having an abrasive surface; (b) a drive assembly for moving the imaging surface of the imaging member along a first plane; (b) a first moving device for moving the abrading surface of the abrading member into contact with the imaging surface for forming a surface reconditioning nip therewith; and (d) at least a second moving device for simultaneously moving the abrading surface along the first plane, and translating the abrading surface back and forth against said imaging surface along a second plane, for reconditioning the marking material control pattern on the imaging surface, thereby preventing marking material drawback during subsequent image formation, and thereby improving imaging quality.
    • 提供了一种成像表面场修复方法和装置,用于在现场修复在图像产生机中的成像表面上的标记材料控制图案。 用于实施该方法的成像表面场修复装置包括(a)研磨装置,其包括具有磨料表面的磨料构件; (b)用于沿第一平面移动成像构件的成像表面的驱动组件; (b)第一移动装置,用于使研磨部件的研磨表面与成像表面接触,用于与其形成表面修复辊隙; 以及(d)至少第二移动装置,用于同时沿着第一平面移动研磨表面,并且使研磨表面沿着第二平面相对于所述成像表面来回地平移,用于重新调整成像表面上的标记材料控制图案, 从而防止在随后的图像形成期间的标记材料缺陷,从而提高成像质量。
    • 46. 发明授权
    • System and method for contact electrostatic printing
    • 接触静电印刷的系统和方法
    • US06775499B2
    • 2004-08-10
    • US10321982
    • 2002-12-17
    • David H. PanChu-heng LiuHenry R. Till
    • David H. PanChu-heng LiuHenry R. Till
    • G03G1510
    • G03G15/104
    • Method and apparatus for transferring a developed image from an image bearing member to a receiver substrate in a Contact Electrostatic Printing (CEP) system may be provided according to the present invention. The developed image is formed of a development material having a mixture of carrier fluid and pigmented polymeric particles, the composition of such mixture being selected for its characteristic behavior at an elevated temperature for transitioning to a substantially single phase. The method includes the steps of developing an image onto an image bearer using the aforementioned development material; concentrating the developed image; heating the developed image to a temperature at which the polymeric particles and the carrier fluid achieve a substantially single phase condition, so as to form a transferable image; and transferring the transferable image to a receiver substrate such as a paper sheet.
    • 可以根据本发明提供用于将显影图像从图像承载部件转移到接触式静电印刷(CEP)系统中的接收器基板的方法和装置。 显影图像由具有载体流体和着色聚合物颗粒的混合物的显影材料形成,这种混合物的组合物在升高的温度下被选择用于转变到基本上单相的特性。 该方法包括以下步骤:使用上述开发材料将图像显影到图像载体上; 集中发达的形象; 将显影的图像加热到聚合物颗粒和载体流体达到基本上单相条件的温度,以形成可转移的图像; 并将可转印图像转印到诸如纸张的接收器基板上。
    • 47. 发明授权
    • Imaging apparatuses and processes thereof containing a marking material with a charge acceptance additive of an aluminum complex
    • 其成像设备及其工艺包含具有铝复合物的电荷接受添加剂的标记材料
    • US06212347B1
    • 2001-04-03
    • US09492429
    • 2000-01-27
    • Weizhong ZhaoDavid H. PanJohn W. SpiewakChristopher M. Knapp
    • Weizhong ZhaoDavid H. PanJohn W. SpiewakChristopher M. Knapp
    • G03G1510
    • G03G15/34G03G9/09783G03G9/1355G03G13/10
    • An imaging apparatus containing an imaging member with an electrostatic latent image formed thereon, the imaging member containing a surface capable of supporting marking material; an imaging device for generating the electrostatic latent image on the imaging member wherein the electrostatic latent image includes image areas defined by a first charge voltage and nonimage areas defined by a second charge voltage distinguishable from the first charge voltage; a marking material supply apparatus for depositing marking material on the surface of the imaging member to form a marking material layer thereon adjacent the electrostatic latent image on the imaging member; a charging source for selectively delivering charges to the marking material layer in an imagewise manner responsive to the electrostatic latent image on the imaging member to form a secondary latent image in the marking material layer containing image and nonimage areas corresponding to the electrostatic latent image on the imaging member; and a separator member for selectively separating portions of the marking material layer in accordance with the secondary latent image in the marking material layer to create a developed image corresponding to the electrostatic latent image formed on the imaging member, and wherein the marking material is comprised of developer containing an optional liquid, resin, colorant, and a charge acceptance additive of an aluminum complex of the formulas, or mixtures thereof wherein R1 is selected from the group consisting of hydrogen and alkyl, and n represents the number of R1 groups, and wherein the charge acceptance additive captures and retains negative ions or positive ions.
    • 一种成像装置,包括其上形成有静电潜像的成像构件,所述成像构件包含能够支撑标记材料的表面;成像装置,用于在所述成像构件上产生静电潜像,其中所述静电潜像包括由 第一充电电压和非图像区域,其由与第一充电电压区分的第二充电电压限定;标记材料供应装置,用于在成像构件的表面上沉积标记材料,以在成像构件上邻近静电潜像形成标记材料层 构件;充电源,用于响应于成像构件上的静电潜像以成像方式选择性地将电荷输送到标记材料层,以在包含对应于静电潜像的图像和非图像区域的标记材料层中形成次级潜像 在想象中 会员 以及分离器构件,用于根据标记材料层中的次级潜像选择性地分离标记材料层的部分,以产生对应于在成像构件上形成的静电潜像的显影图像,并且其中标记材料由显影剂 含有下式的铝络合物或其混合物的任选的液体,树脂,着色剂和电荷接受添加剂,其中R1选自氢和烷基,n表示R1基团的数量,其中电荷 接受添加剂捕获并保留负离子或正离子。