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    • 1. 发明申请
    • IMAGE FORMING METHOD AND IMAGE FORMING APPARATUS
    • 图像形成方法和图像形成装置
    • US20090213201A1
    • 2009-08-27
    • US12235726
    • 2008-09-23
    • Manabu NumataHiroshi IkedaSatoshi MohriKunichi YamashitaMasatoshi ArakiMasashi Hiratsuka
    • Manabu NumataHiroshi IkedaSatoshi MohriKunichi YamashitaMasatoshi ArakiMasashi Hiratsuka
    • B41J2/01
    • B41J2/0057B41J11/002
    • An image forming method including: forming a liquid receiving particle layer on an intermediate transfer member using a liquid receiving particle that is capable of receiving a recording liquid including a recording material; forming an image of the recording material on a surface of the liquid receiving particle layer by applying a liquid droplet of the recording liquid to the liquid receiving particle layer on the basis of image data and holding the recording material on the surface of the liquid receiving particle layer on the intermediate transfer member; applying a transfer auxiliary liquid in at least a portion of a formation range of the image; and transferring the liquid receiving particle layer to which the recording liquid is applied to a transfer receiving member from the intermediate transfer member, such that the image is interposed between the transfer receiving member and the liquid receiving particle layer is provided.
    • 一种图像形成方法,包括:使用能够接收包括记录材料的记录液体的液体接收颗粒在中间转印部件上形成液体接收颗粒层; 通过基于图像数据将记录液体的液滴施加到液体接收颗粒层,并将记录材料保持在液体接收颗粒的表面上,从而在液体接收颗粒层的表面上形成记录材料的图像 中间转印部件上的层; 在所述图像的形成范围的至少一部分中施加转移辅助液体; 并且将设置有记录液体的液体接收颗粒层从中间转印部件转印到转印接收部件上,使得图像介于转印接收部件和液体接收颗粒层之间。
    • 2. 发明授权
    • Image forming method and image forming apparatus
    • 图像形成方法和图像形成装置
    • US08029090B2
    • 2011-10-04
    • US12235726
    • 2008-09-23
    • Manabu NumataHiroshi IkedaSatoshi MohriKunichi YamashitaMasatoshi ArakiMasashi Hiratsuka
    • Manabu NumataHiroshi IkedaSatoshi MohriKunichi YamashitaMasatoshi ArakiMasashi Hiratsuka
    • B41J2/01
    • B41J2/0057B41J11/002
    • An image forming method including: forming a liquid receiving particle layer on an intermediate transfer member using a liquid receiving particle that is capable of receiving a recording liquid including a recording material; forming an image of the recording material on a surface of the liquid receiving particle layer by applying a liquid droplet of the recording liquid to the liquid receiving particle layer on the basis of image data and holding the recording material on the surface of the liquid receiving particle layer on the intermediate transfer member; applying a transfer auxiliary liquid in at least a portion of a formation range of the image; and transferring the liquid receiving particle layer to which the recording liquid is applied to a transfer receiving member from the intermediate transfer member, such that the image is interposed between the transfer receiving member and the liquid receiving particle layer is provided.
    • 一种图像形成方法,包括:使用能够接收包括记录材料的记录液体的液体接收颗粒在中间转印部件上形成液体接收颗粒层; 通过基于图像数据将记录液体的液滴施加到液体接收颗粒层,并将记录材料保持在液体接收颗粒的表面上,从而在液体接收颗粒层的表面上形成记录材料的图像 中间转印部件上的层; 在所述图像的形成范围的至少一部分中施加转移辅助液体; 并且将设置有记录液体的液体接收颗粒层从中间转印部件转印到转印接收部件上,使得图像介于转印接收部件和液体接收颗粒层之间。
    • 6. 发明授权
    • Ink jet printer and ink jet printing method
    • 喷墨打印机和喷墨打印方法
    • US06312077B1
    • 2001-11-06
    • US09448218
    • 1999-11-23
    • Masatoshi Araki
    • Masatoshi Araki
    • B41J2938
    • B41J2/04541B41J2/04581B41J2/04588B41J2/04593
    • In the ink jet printer, a pressure generation chamber 11 is expanded in a stepped manner, which enables a high speed discharge of a very small ink droplet. Prior to the ink discharge, the pressure generation chamber is contracted so as to enable a high-accuracy gradation printing with a wide range of ink droplet size. A control unit 20 generates: a first contraction signal for contracting the pressure generation chamber 11 without discharging any ink droplet 17; a first expansion signal for expanding the pressure generation chamber 11 to discharge the ink droplet 17; and a second expansion signal to further expand the pressure generation chamber 11 so as to break off an ink column discharged from a nozzle 12 and pull an unnecessary portion of the ink back into the nozzle 12.
    • 在喷墨打印机中,压力产生室11以阶梯式方式膨胀,这使得能够高速排出非常小的墨滴。 在排墨之前,压力产生室收缩,以便能够实现具有宽范围墨滴尺寸的高精度等级打印。 控制单元20产生用于收缩压力产生室11而不排出任何墨滴17的第一收缩信号; 用于使压力产生室11膨胀以排出墨滴17的第一膨胀信号; 以及第二膨胀信号,以进一步膨胀压力产生室11,以便断开从喷嘴12排出的墨柱,并将不需要的墨水部分拉回到喷嘴12中。
    • 7. 发明授权
    • Method for machining printed circuit board
    • 印刷电路板加工方法
    • US5347462A
    • 1994-09-13
    • US28883
    • 1993-03-10
    • Kiyoshi OkudaMasatoshi Araki
    • Kiyoshi OkudaMasatoshi Araki
    • B23B49/04B23Q17/24G01B11/26H05K3/00G06F15/46
    • H05K3/0008H05K2201/09918H05K3/0047Y10T408/21
    • In order to enable the determination of a center precisely and automatically, a reference mark on a printed circuit board is image-recognized to determine tone transition points, thereby to determine an interim center and diameter of the mark by a four-points searching method. Next, a preset minute value .alpha. is added to the interim mark diameter to determine a standard circle diameter, thereby to set a standard circle having the interim center as its center. Then, image processing is performed in that standard circle and the mark is separated into a plurality of sections. The center of the mark is detected by determining the center of the section of the tone indicating the mark. Machining operations such as the perforations are carried out on the basis of the detected center.
    • 为了能够精确自动地确定中心,印刷电路板上的参考标记被图像识别以确定色调转变点,从而通过四点搜索方法确定标记的临时中心和直径。 接下来,将预设的分钟值α添加到临时标记直径以确定标准圆直径,从而设定以中间中心为中心的标准圆。 然后,在该标准圆中进行图像处理,将标记分割为多个部分。 通过确定指示标记的音调的部分的中心来检测标记的中心。 基于检测到的中心进行诸如穿孔的加工操作。
    • 8. 发明授权
    • Print control apparatus
    • 打印控制装置
    • US08444244B2
    • 2013-05-21
    • US12056391
    • 2008-03-27
    • Masatoshi ArakiKoichi Saitoh
    • Masatoshi ArakiKoichi Saitoh
    • B41J29/393
    • B41J29/393
    • A print control apparatus includes: an operation state storing section that stores operation information relating to operation states of a plurality of printing elements arranged in a printing head; and a drawing controlling section that causes the plurality of printing elements to draw a test image for checking the operation states of the plurality of printing elements, wherein the test image includes a set of a predetermined number of lines that are drawn in parallel with one another in a predetermined direction, and the drawing controlling section causes a printing element placed in the vicinity of a printing element determined as a malfunction on the basis of the operation information, to draw a check line having a predetermined length and thickness in the test image.
    • 打印控制装置包括:操作状态存储部,存储与布置在打印头中的多个打印元件的操作状态有关的操作信息; 以及绘图控制部分,其使所述多个打印元件绘制用于检查所述多个打印元件的操作状态的测试图像,其中所述测试图像包括彼此平行绘制的预定数量的线的集合 在预定方向上,并且绘图控制部分使得放置在基于操作信息确定为故障的打印元素附近的打印元件在测试图像中画出具有预定长度和厚度的支线。
    • 10. 发明授权
    • Nozzle check pattern and liquid droplet ejection apparatus
    • 喷嘴检查图案和液滴喷射装置
    • US07571976B2
    • 2009-08-11
    • US11471860
    • 2006-06-21
    • Masatoshi Araki
    • Masatoshi Araki
    • B41J29/393
    • B41J29/393B41J2/2142B41J11/007
    • A nozzle check pattern is formed by ejecting liquid droplets onto a recording medium from a nozzle row formed in a liquid droplet ejection head. The nozzle check pattern includes: a first pattern formed by assigning consecutive numbers in order to the nozzles in the nozzle row, dividing the nozzle row into plural first nozzle groups, and ejecting predetermined dots onto the recording medium in order from the nozzle with the smallest number to the nozzle with the largest number in each of the first nozzle groups; and a second pattern formed by dividing the nozzle row into second nozzle groups whose number is larger than that of the first nozzle groups and ejecting predetermined dots onto the recording medium in order from the nozzle with the smallest number to the nozzle with the largest number in each of the second nozzle groups.
    • 通过从形成在液滴喷射头中的喷嘴列将液滴喷射到记录介质上形成喷嘴检查图案。 喷嘴检查图案包括:通过为喷嘴列中的喷嘴分配连续的数字形成的第一图案,将喷嘴列分成多个第一喷嘴组,并且从具有最小的喷嘴的顺序排列预定的点到记录介质上 在每个第一喷嘴组中具有最大数量的喷嘴的数量; 以及第二图案,其通过将喷嘴列分割成数量大于第一喷嘴组的第二喷嘴组,并且从最小数量的喷嘴到具有最大数量的喷嘴的顺序从记录介质上排出预定点 每个第二喷嘴组。