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    • 4. 发明授权
    • Actinic energy radiation curable ink-jet ink, ink-jet recording method, and printed matter
    • 光化学能量辐射固化喷墨油墨,喷墨记录方法和印刷品
    • US08349916B2
    • 2013-01-08
    • US12640104
    • 2009-12-17
    • Kouki KawashimaMasaki NakamuraAtsushi NakajimaYusuke Takaku
    • Kouki KawashimaMasaki NakamuraAtsushi NakajimaYusuke Takaku
    • C09D11/00
    • C09D11/30C09D11/101Y10T428/24802
    • The present invention provides an actinic energy radiation curable ink-jet ink exhibiting excellent ink storage stability, nozzle ink repellency, and ejection stability, and also exhibiting excellent curability, anti-abrasion properties, solvent resistance, flexibility, weather resistance, and substrate adhesion properties even under various ambience factors and irradiation conditions, as well as an ink-jet recording method and printed matter using the same. In an actinic energy radiation curable ink-jet ink containing a cationically polymerizable compound and a photo-cationic polymerization initiator, an actinic energy radiation curable ink-jet ink wherein a cationically polymerizable compound having a vinyl ether group as a reactive group is contained at 50.0% by mass or more and the halogen ion content is 1.0 μg/g of the ink-100 μg/g of the ink.
    • 本发明提供了具有优异的储墨稳定性,喷墨油墨拒斥性和喷射稳定性的光化性能量辐射固化型喷墨油墨,并且还具有优异的固化性,抗磨损性,耐溶剂性,柔韧性,耐候性和基材粘合性 即使在各种环境因素和照射条件下,以及喷墨记录方法和使用其的印刷品也是如此。 在含有阳离子聚合性化合物和光阳离子聚合引发剂的光化性能量射线固化型喷墨油墨中,含有乙烯基醚基作为反应性基团的阳离子聚合性化合物的光化性能量射线固化性喷墨油墨为50.0 质量%以上,卤素离子含量为油墨-1.0μg/ g,油墨为100μg/ g。
    • 9. 发明授权
    • Ink-jet image recording method
    • 喷墨图像记录方法
    • US06746115B2
    • 2004-06-08
    • US10365936
    • 2003-02-13
    • Atsushi TomotakeHidetaka NinomiyaMasaki Nakamura
    • Atsushi TomotakeHidetaka NinomiyaMasaki Nakamura
    • G01D1100
    • C09D11/40
    • An ink-jet image recording method is disclosed. In the method an aqueous ink containing a colored particles comprising a colorant and a resin is employed, and following Formula 1 is satisfied; 15≦w≦150  Formula 1 wherein, w is a parameter expressed by following Formula 2; w=[(dm+ds)/{(NV×vd)/r3}]×10,000  Formula 2 wherein, ds is a recording density in dpi in a moving direction of the recording medium and dm is a recording density in dpi in a direction perpendicular to the moving direction of the recording medium, NV is the colored particle content in the ink in weight percent, vd is a volume average radius in meter of the colored particles and r is radius in meter of the ink droplet.
    • 公开了一种喷墨图像记录方法。 在该方法中,使用包含着色剂和树脂的着色颗粒的水性油墨,并且满足以下式1:其中w是由下式2表示的参数;其中,ds是移动中的记录密度(dpi) 记录介质的方向,dm是在与记录介质的移动方向垂直的方向上的dpi的记录密度,NV是油墨中的着色颗粒含量,以重量百分比表示,vd是彩色 颗粒和r是墨滴的米的半径。