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    • 1. 发明授权
    • Ink jet printing apparatus, method of manufacturing ink absorber, and ink absorber
    • 喷墨打印装置,墨吸收器的制造方法和墨吸收器
    • US07699431B2
    • 2010-04-20
    • US10581092
    • 2005-11-18
    • Koichiro NakazawaNobuhito YamaguchiTakuei Ishikawa
    • Koichiro NakazawaNobuhito YamaguchiTakuei Ishikawa
    • B41J2/165
    • B41J2/1721B41J11/0065B41J11/06
    • An ink jet printing apparatus is provided in which ink absorbers, capable of performing their function to the fullest extent to quickly absorb an ink that tends to coagulate, are installed to prevent an interior of the printing apparatus and the back of a print medium from being contaminated. To this end, the printing apparatus has an ink absorber that contains a coagulation inhibitor capable of inhibiting the coagulation of colorant contained in the ink. This arrangement inhibits the coagulation of the colorant on the surface or in the interior of the absorber, allowing the colorant to be absorbed quickly and uniformly into the interior of the absorber. Therefore, problems caused by a deposition of the colorant on the surface of the absorber or by a degraded absorbing capability can be alleviated, thus keeping the image output in good condition.
    • 提供一种喷墨打印设备,其中安装能够最大程度地发挥其功能以快速吸收趋于凝结的墨水的墨水吸收器,以防止打印设备的内部和打印介质的背面 污染。 为此,印刷装置具有含有可抑制油墨中所含着色剂凝结的凝结抑制剂的吸墨体。 这种布置抑制着色剂在吸收体的表面或内部的凝结,允许着色剂被快速且均匀地吸收到吸收体的内部。 因此,可以减轻由于着色剂在吸收体的表面上的沉积或降低的吸收能力引起的问题,从而保持图像输出状态良好。
    • 2. 发明申请
    • Ink jet printing apparatus, method of manufacturing ink absorber, and ink absorber
    • 喷墨打印装置,墨吸收器的制造方法和墨吸收器
    • US20070109346A1
    • 2007-05-17
    • US10581092
    • 2005-11-18
    • Koichiro NakazawaNobuhito YamaguchiTakuei Ishikawa
    • Koichiro NakazawaNobuhito YamaguchiTakuei Ishikawa
    • B41J2/165
    • B41J2/1721B41J11/0065B41J11/06
    • An ink jet printing apparatus is provided in which ink absorbers, capable of performing their function to the fullest extent to quickly absorb an ink that tends to coagulate, are installed to prevent an interior of the printing apparatus and the back of a print medium from being contaminated. To this end, the printing apparatus has an ink absorber that contains a coagulation inhibitor capable of inhibiting the coagulation of colorant contained in the ink. This arrangement inhibits the coagulation of the colorant on the surface or in the interior of the absorber, allowing the colorant to be absorbed quickly and uniformly into the interior of the absorber. Therefore, problems caused by a deposition of the colorant on the surface of the absorber or by a degraded absorbing capability can be alleviated, thus keeping the image output in good condition.
    • 提供一种喷墨打印设备,其中安装能够最大程度地发挥其功能以快速吸收趋于凝结的墨水的墨水吸收器,以防止打印设备的内部和打印介质的背面 污染。 为此,印刷装置具有含有可抑制油墨中所含着色剂凝结的凝结抑制剂的吸墨体。 这种布置抑制着色剂在吸收体的表面或内部的凝结,允许着色剂被快速且均匀地吸收到吸收体的内部。 因此,可以减轻由于着色剂在吸收体的表面上的沉积或降低的吸收能力引起的问题,从而保持图像输出状态良好。
    • 9. 发明授权
    • Ink-jet recording process
    • US07226157B2
    • 2007-06-05
    • US10765037
    • 2004-01-28
    • Koichiro NakazawaTakuei Ishikawa
    • Koichiro NakazawaTakuei Ishikawa
    • B41J2/01
    • B41M7/0018B41M5/0017C09D11/30C09D11/54
    • Disclosed herein is an ink-jet recording process for conducting recording by ejecting a pigment ink and a reaction liquid containing a polyvalent metal salt from a recording section, in which a plurality of nozzles for ejecting the pigment ink and the reaction liquid are arranged, to a recording medium while relatively scanning the recording section to the recording medium, comprising the steps of ejecting the pigment ink having a surface tension lower than that of the reaction liquid to the reaction liquid ejected on the surface of the recording medium; and forming a filmy aggregate by gathering of agglomerates at an interface where the reaction liquid has come into contact with the pigment ink, wherein conditions for ejecting the reaction liquid to a prescribed area on the recording medium when at least the print duty of the ink in the prescribed area is 100% satisfy the relationship of 55 × 0.85 × 10 6 × Vd ⁡ ( pl ) - 0.61 Rx ⁡ ( dpi ) ⁢ Ry ⁡ ( dpi ) ≤ duty ⁡ ( % ) ≤ 125 × 0.85 × 10 6 × Vd ⁡ ( pl ) - 0.61 Rx ⁡ ( dpi ) ⁢ Ry ⁡ ( dpi ) wherein Vd(pl) is an ejection volume per dot of the reaction liquid, Rx(dpi) is a print resolution in the direction of the relative scanning, Ry(dpi) is a print resolution in the arrangement direction of the nozzles, and duty(%) is a print duty of the reaction liquid.