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    • 2. 发明授权
    • Heat transfer recording process using an intermediate recording sheet
    • 使用中间记录纸的热转印记录处理
    • US5512931A
    • 1996-04-30
    • US071173
    • 1993-06-01
    • Atsushi NakajimaShinji MatsumotoKatsumi MaejimaKoichi NakataniSota KawakamiAi Katsuda
    • Atsushi NakajimaShinji MatsumotoKatsumi MaejimaKoichi NakataniSota KawakamiAi Katsuda
    • B41J2/32B41J2/325B41M5/00B41M5/382B41M5/395B41M5/40B41M5/44B41M5/46B41M5/52
    • B41M5/46B41J2/325B41M5/38257B41M5/395B41M5/44B41M5/5254B41M5/5272
    • A process for image forming by heat transfer method is disclosed. The process comprises the steps of (1) transferring an ink image from an ink layer of an ink sheet, which comprises a support and an ink layer provided on the support, to a surface of an intermediate image receiving layer of an intermediate image receiving sheet, which comprises a support and an image receiving layer provided on the support, by imagewise heating the ink layer, and (2) re-transferring the ink image transferred on the intermediate image receiving layer to a secondary image receiving sheet,In the above process, the ink layer comprises a coloring material and a homopolymer or a copolymer comprising a repeating unit derived from a monomer represented by the following Formula 1 or a phthalic polyester formed by polymerization of phthalic acid and a polyol; ##STR1## wherein R.sub.1 is a hydrogen atom or an alkyl group having 1 to 12 carbon atoms; R.sub.2, R.sub.3 and R.sub.4 are each a hydrogen atom, an alkyl group having 1 to 12 carbon atoms or a --COOR.sub.5 group, R.sub.5 a hydrogen atom or an alkyl group having 1 to 12 carbon atoms.
    • 公开了一种通过传热方法形成图像的方法。 该方法包括以下步骤:(1)将油墨图像从包含支撑体的油墨层和设置在支撑体上的油墨层的油墨图像转印到中间图像接收纸的中间图像接收层的表面上 ,其包括通过对油墨层进行成像加热而设置在支撑体上的支撑体和图像接收层,以及(2)将转印在中间图像接收层上的油墨图像重新转印到二次图像接收纸张上。在上述处理 油墨层包含着色材料和均聚物或包含衍生自下式1所示单体的重复单元或由邻苯二甲酸和多元醇聚合形成的邻苯二甲酸酯的共聚物; (1)其中R1是氢原子或具有1至12个碳原子的烷基; R2,R3和R4各自为氢原子,具有1至12个碳原子的烷基或-COOR5基团,R5为氢原子或具有1至12个碳原子的烷基。
    • 3. 发明授权
    • Presensitized lithographic printing plate and method for preparing
lithographic printing plate
    • 平版印刷版和平版印刷版的制备方法
    • US5858604A
    • 1999-01-12
    • US592325
    • 1996-01-16
    • Katsuyuki TakedaSota KawakamiKatsumi MaejimaKoichi NakataniShinji Matsumoto
    • Katsuyuki TakedaSota KawakamiKatsumi MaejimaKoichi NakataniShinji Matsumoto
    • B41C1/10G03F1/00G03F7/095G03F7/016G03F7/023
    • G03F7/0952B41C1/1033G03F7/202Y10S430/127Y10S430/145
    • Object: A method for preparing a lithographic printing plate directly from digital image signals with the use of a presensitized lithographic printing plate comprising a support having thereon a photosensitive layer and a light-shielding layer which can be removed imagewise with laser light is provided, wherein the light-shielding layer, which can be industrially produced readily at a moderate price can be removed sufficiently during a process of development without the need of removing a masking layer at an unexposed portion and adverse effect on a photosensitive layer.Constitution: A lithographic printing plate can be obtained by making use of a presensitized lithographic printing plate comprising a support having thereon a photosensitive layer containing o-quinonediazide compound, photo-degradable or photo-polymerizable resin and water-soluble resin and a light-shielding layer containing an infrared absorbing material and a material capable of absorbing the photosensitive wavelength of the photosensitive layer and by a process comprising ablating imagewise the light-shielding layer with laser light, overall-exposing with a ray active to the photosensitive layer to cause photochemical change of the photosensitive layer in which the light-shielding layer has been removed by ablation (e.g., making alkali-soluble) and dissolving out the photosensitive layer at a non-imaging area.
    • PCT No.PCT / JP95 / 01374 Sec。 371日期1996年1月16日 102(e)日期1996年1月16日PCT提交1995年7月11日PCT公布。 出版物WO96 / 02021 日期1996年1月25日目的:一种使用预定平版印刷版从数字图像信号直接制备平版印刷版的方法,所述平版印刷版包括其上具有感光层的支撑体和可以用激光去除图像的遮光层 提供了光,其中可以在显影过程中容易地以适中的价格工业生产的遮光层,而不需要去除未曝光部分的掩模层和对感光层的不利影响。 结构:平版印刷版可以通过使用包含其上具有含有邻醌二叠氮化合物,光可降解或可光聚合树脂和水溶性树脂的光敏层的支持体的预敏化平版印刷版和光屏蔽 含有红外线吸收材料的层和能够吸收感光层的感光波长的材料,以及包括用激光对遮光层进行成像烧蚀的工艺,通过对光敏层的光线进行全面曝光以引起光化学变化 通过烧蚀(例如,使碱溶性)除去遮光层并在非成像区域溶解感光层的感光层。
    • 6. 发明授权
    • Thermal transfer image forming method using laser
    • 使用激光的热转印成像方法
    • US6027850A
    • 2000-02-22
    • US218401
    • 1998-12-22
    • Sota KawakamiKatsumi Maejima
    • Sota KawakamiKatsumi Maejima
    • B41J2/475B41J13/22G03F7/24B65H29/32G01D15/24G03B27/60G03F7/34
    • B41J13/226B41J2/4753
    • A thermal transfer image forming method using a laser is disclosed. The method is comprises the steps ofplacing an image-receiving sheet comprising a substratum and an image receiving layer, on a supporting drum having suction holes to be held thereon so that the surface of the image-receiving layer is faced outside,superposing an ink sheet comprising a substratum and an ink layer, on the image-receiving sheet held on the supporting drum so that the surface of the image receiving-layer contacts with the surface of the ink layer,imagewise irradiation laser light beam to the ink sheet held on the supporting drum which is rotated to transfer an image onto the surface of the image receiving layer, whereinduring imagewise irradiation, the image-receiving sheet and the ink sheet are sucked through the suction holes of the supporting drum to be held thereon,the size of the ink sheet is larger than that of the image receiving sheet in both of longitudinal and lateral directions,the diameters of not less than 95% in number of the suction holes provided in an area covered by the image-receiving sheet are each within a range of from 0.4 mm to 2.5 mm,the opening ratio of the suction holes in the area covered by the image-receiving sheet is not less than 0.1%,the degree of the reduced pressure in the inside of the supporting drum is within a range of from 150 torr to 640 torr,the circumferential length of the supporting drum is not less than 600 mm, andthe thickness of the image-receiving sheet is within a range of from 50 .mu.m to 170 .mu.m.
    • 公开了一种使用激光的热转印成像方法。 该方法包括以下步骤:将包含基底和图像接收层的图像接收片材放置在具有要保持在其上的吸孔的支撑鼓上,使得图像接收层的表面面向外部,将墨水叠加 包含基底和油墨层的片材保持在支撑鼓上的图像​​接收片上,使得图像接收层的表面与油墨层的表面接触,成像照射激光束保持在油墨片上 所述支撑滚筒被旋转以将图像转印到图像接收层的表面上,其中在图像照射期间,图像接收纸张和油墨纸通过待保持在其上的支撑滚筒的抽吸孔被吸入, 在纵向和横向上均大于图像接收片的尺寸,其中设置的吸入孔数量的直径不小于95% 由图像接收片覆盖的区域各自在0.4mm至2.5mm的范围内,由图像接收片覆盖的区域中的吸孔的开口率不小于0.1%, 支撑滚筒内部的减压压力在150托至640托的范围内,支承滚筒的圆周长度不小于600毫米,图象接收片的厚度在 50亩至170亩。
    • 7. 发明授权
    • Ink sheet, recording medium and recording method for laser thermal transfer recording
    • 油墨片,记录介质和激光热转印记录的记录方法
    • US06749981B2
    • 2004-06-15
    • US10104182
    • 2002-03-22
    • Atsushi NakajimaKatsumi Maejima
    • Atsushi NakajimaKatsumi Maejima
    • B41M530
    • B41M5/392B41M5/395B41M5/52Y10S430/146
    • A laser thermal transfer recording method is disclosed. The method employs an ink sheet having a light-heat conversion layer an a laser thermal transfer image receiving sheet having an image receiving layer in which Vicat softening point of the resin composing the thermoplastic layer of the image receiving layer is less than 80° C., and one of the image receiving layer and the ink layer contains a matting agent having a particle diameter larger than the thickness of the layer containing matting agent, the projection height of the matting agent is less than 3.5 &mgr;m and the frequency of the projections is from 400/mm2 to 4,000/mm2, and the peeling angle of the ink sheet and the image receiving sheet is controlled at an angle less than 30°.
    • 公开了一种激光热转印记录方法。 该方法采用具有光热转换层的油墨片,具有图像接收层的激光热转印图像接收片,其中构成图像接收层的热塑性层的树脂的维卡软化点小于80℃。 ,并且图像接收层和墨层中的一个包含具有比含有消光剂的层的厚度大的粒径的消光剂,消光剂的突出高度小于3.5μm,并且突起的频率为 从400 / mm 2至4,000 / mm 2,油墨片和图像接收片的剥离角度被控制在小于30°的角度。
    • 9. 发明申请
    • Antireflection film, production method of the same, polarizing plate and display
    • 防反射膜,其制作方法,偏光板及显示屏
    • US20100304020A1
    • 2010-12-02
    • US12661441
    • 2010-03-17
    • Yoshikazu OjimaKatsumi MaejimaToshiyuki Ikeda
    • Yoshikazu OjimaKatsumi MaejimaToshiyuki Ikeda
    • B05D5/06
    • G02B1/111
    • An antireflection film comprising a transparent substrate film having thereon a hard coat, a high refractive index layer and a low refractive index layer, wherein: (i) the high refractive index layer is formed by applying a coating solution containing the following (a) to (c); (ii) the low refractive index layer is formed by applying a coating solution containing the following (d) and (e); (iii) the antireflection film is heat treated, wherein (a) metal oxide particles having an average primary particle diameter of 10 to 200 nm; (b) a metal compound; (c) an ionizing radiation curable resin; (d) an organosilicon compound having a prescribed structure, a hydrolyzed compound of the organosilicon compound, a decomposed compound of the organosilicon compound or a polycondensed compound of the organosilicon compound; and (e) hollow silica particles each having an outer shell, and a void or a porous portion in the inside.
    • 1.一种防反射膜,其特征在于,具备透明基材膜,其上具有硬质被膜,高折射率层和低折射率层,其中:(i)通过将含有下列(a)的涂布溶液 (C); (ii)通过涂布含有下述(d)和(e)的涂布溶液来形成低折射率层; (iii)对所述抗反射膜进行热处理,其中(a)平均一次粒径为10〜200nm的金属氧化物粒子; (b)金属化合物; (c)电离辐射固化树脂; (d)具有规定结构的有机硅化合物,有机硅化合物的水解化合物,有机硅化合物的分解化合物或有机硅化合物的缩聚化合物; 和(e)中空二氧化硅颗粒,每个中空二氧化硅颗粒具有外壳,内部为空隙或多孔部分。