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    • 12. 发明授权
    • Post-printing image development of ink-jet generated transparencies
    • 喷墨打印后的图像开发生成的透明胶片
    • US4914451A
    • 1990-04-03
    • US172946
    • 1988-03-23
    • Peter C. MorrisMark S. Hickman
    • Peter C. MorrisMark S. Hickman
    • B41M5/00B41M5/50B41M5/52B41M7/00C09D11/00
    • B41M5/52C09D11/30B41M5/508B41M5/5254B41M7/0027
    • A method of printing on an ink receptive coating (12) which enhances the density of images printed on non-ink receptive substrates (10) by ink-jet techniques is provided. The substrates, such as transparent polyester films, are coated with a layer of an material to a thickness which promotes controlled latent lateral diffusion of the printed ink dots (14a-c). The lateral diffusion is microscopically observed to begin immediately after printing, eventually ceasing as the vehicle of the ink is sufficiently spread and evaporated by the lateral spreading. The optical density of the image increases as the ink diffuses, reaching a maximum density that is considerably greater than otherwise possible without such an ink-coating system and avoids the undesirable surface coalescence of drops (14) which causes a puddled appearance in films not employing latent spreading. Sheets of such printed imaged media are stored in removable sheet protectors of a vapor permeable, water absorbent material such as cellulose acetate, such that dot spread is controlled within the teachings of the invention.
    • 提供了一种在油墨接收涂层(12)上进行印刷的方法,其通过喷墨技术增强印刷在非油墨接收基材(10)上的图像的密度。 诸如透明聚酯膜之类的基材被涂覆有一层材料,以促进印刷油墨点(14a-c)受控的潜在横向扩散的厚度。 显微镜观察到侧向扩散在印刷后立即开始,最终停止,因为油墨的载体被充分地扩散并通过横向扩展而蒸发。 图像的光密度随着油墨扩散而增加,达到最大密度,其明显大于没有这样的油墨涂覆系统的可能性,而且避免了液滴(14)的不希望的表面聚结,这导致在不使用 潜在传播。 这种印刷的成像介质的片材被储存在可蒸汽渗透的吸水材料如醋酸纤维素的可除去的片材保护器中,使得在本发明的教导内控制点扩散。
    • 14. 发明授权
    • System and method for producing efficient ink drop overlap filled with a pseudo hexagonal grid pattern
    • 用于产生具有伪六边形网格图案的有效墨滴重叠的系统和方法
    • US06659589B2
    • 2003-12-09
    • US09909572
    • 2001-07-20
    • Mark S. HickmanWayne M. RichardJorge CastanoJohn A. UnderwoodXavier Bruch
    • Mark S. HickmanWayne M. RichardJorge CastanoJohn A. UnderwoodXavier Bruch
    • B41J215
    • B41J2/2132
    • The present invention is embodied in a system and method for producing efficient ink drop overlap filled with a pseudo hexagonal grid pattern. In general, the present invention can include an inkjet printhead assembly that incorporates a preprogrammed correction scheme or schemes [1-n] (herein correction scheme will refer to all applications), for correcting systematic ink drop placement errors of the inkjet printhead. The printing system of the present invention uses a unique ink dot pattern, called a pseudo-hexagonal close pack system. The present invention optimizes the addressable grid for dot placement, pseudo hexagonal close pack system, with an efficient geometry for packing circles to fill an area, similar to the hexagonal close pack system. However, the present invention in creating dots on a non-symmetric grid is supported by available software and is not computationally complex.
    • 本发明体现在一种用于产生充满虚拟六边形网格图形的有效墨滴重叠的系统和方法。 通常,本发明可以包括一种喷墨打印头组件,其包含预编程的校正方案或方案[1-n](这里的校正方案将涉及所有应用),用于校正喷墨打印头的系统墨滴位置误差。 本发明的打印系统使用一种独特的墨点图案,称为伪六边形封装系统。 本发明优化了用于点放置的可寻址网格,伪六边形封装系统,具有用于填充圆以填充区域的有效几何形状,类似于六边形封装系统。 然而,本发明在非对称网格上创建点由可用软件支持,并且计算复杂。
    • 15. 发明授权
    • Simultaneously printing with different sections of printheads for
improved print quality
    • 同时打印不同部分的打印头,以提高打印质量
    • US5903290A
    • 1999-05-11
    • US902163
    • 1997-07-29
    • Nicholas Nicoloff, Jr.Mark S. Hickman
    • Nicholas Nicoloff, Jr.Mark S. Hickman
    • B41J2/05B41J2/21G06K15/10H04N1/23B41J2/145B41J2/15
    • G06K15/107B41J2/2132G06K2215/0094
    • In one embodiment of the invention, a scanning carriage in a color inkjet printer houses three identical color pens for printing cyan, magenta, and yellow. A separate array of nozzles is associated with each color ink. The nozzle arrays are such that they scan over the same print area of the medium during a single scan. To prevent the wet ink from one color swath being deposited over or bleeding into the wet ink from another color swath during the same scan, only a section of each nozzle array is used for printing during a single scan such that wet ink of two different colors cannot overlap during a single scan. This technique reduces ink bleed between colors as well as paper cockle. In another embodiment, a single tricolor pen is used where a single nozzle plate contains three nozzle arrays, one for each color. A section of each nozzle array is used during a single scan, as described above, to prevent wet ink of two different colors from overlapping during a single scan.
    • 在本发明的一个实施例中,彩色喷墨打印机中的扫描托架容纳三张相同的彩色笔,用于印刷青色,品红色和黄色。 单独的喷嘴阵列与每个彩色墨水相关联。 喷嘴阵列使得它们在单次扫描期间扫描介质的相同印刷区域。 为了防止在同一扫描过程中,一条彩色条纹的湿油墨沉积在另一种颜色条纹上或渗透到湿油墨中,在单次扫描期间仅使用每个喷嘴阵列的一部分进行打印,以使两种不同颜色的湿油墨 在单次扫描期间不能重叠。 这种技术可以减少颜色之间的墨水渗漏以及纸cock。 在另一个实施例中,使用单个三色笔,其中单个喷嘴板包含三个喷嘴阵列,每个颜色一个。 如上所述,在单次扫描期间使用每个喷嘴阵列的一部分,以防止两次不同颜色的湿墨在单次扫描期间重叠。
    • 17. 发明授权
    • Trap door spittoon for inkjet aerosol mist control
    • 用于喷雾气雾剂控制的陷阱门痰盂
    • US5742303A
    • 1998-04-21
    • US449164
    • 1995-05-24
    • Bret K. TaylorMark S. Hickman
    • Bret K. TaylorMark S. Hickman
    • B41J2/165B41J2/17
    • B41J2/1721B41J2/16508B41J2002/1728B41J2002/1742
    • A trap door spittoon system confines airborne ink aerosol satellites generated while purging an inkjet printhead. This systems prevent stray ink aerosol from clinging to undesired surfaces in an inkjet printing mechanism. The printing mechanism has an inkjet printhead that selectively ejects ink during both printing and when purging the printhead by a process known as "spitting." This ink ejection generates as a by-product airborne ink aerosol satellites, which float about the mechanism, often landing in undesirable locations. To confine the ink aerosol generated during purging, the printing mechanism has a spittoon with a mouth that is covered by a trap door mechanism immediately following spitting to capture the stray aerosol within the spittoon. Various pivoting and sliding door embodiments are shown, along with a method of operating an inkjet printing mechanism to confine the wandering inkjet aerosol.
    • 陷阱门痰盂系统限制在清洗喷墨打印头时产生的机载墨水气溶胶卫星。 该系统防止杂散墨水气溶胶粘附在喷墨打印机构中的不期望的表面。 打印机构具有喷墨打印头,其在打印期间和通过称为“吐痰”的过程清洗打印头时,可选择性地喷射墨水。 这种喷墨产生作为副产品机载墨水气溶胶卫星,其在机构周围浮动,经常着陆在不期望的位置。 为了限制在清洗过程中产生的墨水气溶胶,打印机构具有一个痰盂,其口部被紧挨着的吐槽门机构覆盖,以捕获痰盂内的杂散气溶胶。 示出了各种枢转和滑动门实施例以及操作喷墨打印机构以限制漫游喷墨气溶胶的方法。
    • 18. 发明授权
    • Simultaneously printing with different sections of printheads for
improved print quality
    • 同时打印不同部分的打印头,以提高打印质量
    • US5654744A
    • 1997-08-05
    • US399401
    • 1995-03-06
    • Nicholas Nicoloff, Jr.Mark S. Hickman
    • Nicholas Nicoloff, Jr.Mark S. Hickman
    • B41J2/05B41J2/21G06K15/10H04N1/23B41J2/145B41J2/15
    • G06K15/107B41J2/2132G06K2215/0094
    • In one embodiment of the invention, a scanning carriage in a color inkjet printer houses three identical color pens for printing cyan, magenta, and yellow. A separate array of nozzles is associated with each color ink. The nozzle arrays are such that they scan over the same print area of the medium during a single scan. To prevent the wet ink from one color swath being deposited over or bleeding into the wet ink from another color swath during the same scan, only a section of each nozzle array is used for printing during a single scan such that wet ink of two different colors cannot overlap during a single scan. This technique reduces ink bleed between colors as well as paper cockle. In another embodiment, a single tricolor pen is used where a single nozzle plate contains three nozzle arrays, one for each color. A section of each nozzle array is used during a single scan, as described above, to prevent wet ink of two different colors from overlapping during a single scan.
    • 在本发明的一个实施例中,彩色喷墨打印机中的扫描托架容纳三张相同的彩色笔,用于印刷青色,品红色和黄色。 单独的喷嘴阵列与每个彩色墨水相关联。 喷嘴阵列使得它们在单次扫描期间扫描介质的相同印刷区域。 为了防止在同一扫描过程中,一条彩色条纹的湿油墨沉积在另一种颜色条纹上或渗透到湿油墨中,在单次扫描期间仅使用每个喷嘴阵列的一部分进行打印,以使两种不同颜色的湿油墨 在单次扫描期间不能重叠。 这种技术可以减少颜色之间的墨水渗漏以及纸cock。 在另一个实施例中,使用单个三色笔,其中单个喷嘴板包含三个喷嘴阵列,每个颜色一个。 如上所述,在单次扫描期间使用每个喷嘴阵列的一部分,以防止两次不同颜色的湿墨在单次扫描期间重叠。