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    • 41. 发明专利
    • Image receiving sheet and image forming method
    • 图像接收片和图像形成方法
    • JP2005043475A
    • 2005-02-17
    • JP2003200608
    • 2003-07-23
    • Fuji Photo Film Co Ltd富士写真フイルム株式会社
    • TANI YOSHIOMIYAKE KAZUHITOKOBAYASHI MASAMICHI
    • B41J2/01B41M5/00B41M5/382B41M5/40B41M5/50B41M5/52G03G7/00B41M5/38
    • PROBLEM TO BE SOLVED: To provide an image receiving sheet which is improved in offset resistance, adhesion resistance and cracking prevention when bent, and provides a high quality and high gloss image, and to provide an image forming method using the image receiving sheet. SOLUTION: The image receiving sheet is provided with at least a supporting body and an image receiving layer and a releasing layer, in this order, on the supporting body. The releasing layer contains at least one of water soluble polymer or water dispersing polymer and fluorine compound. The image receiving layer contains one of water soluble polymer or water dispersing polymer. It is preferable in a mode that glass transition temperature (Tg) of either the water soluble polymer or the water dispersing polymer in the releasing layer is ≥45°, in a mode that plasticizer is a polyalkyleneoxide polyol compound and the image receiving layer contains cross-linking reaction compound. COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:提供一种图像接收片材,其在弯曲时耐偏移性,耐附着性和防止裂纹性提高,并且提供高质量和高光泽图像,并且提供使用图像接收的图像形成方法 片。 解决方案:图像接收片材至少在支撑体上设置有至少支撑体和图像接收层和释放层。 释放层含有水溶性聚合物或水分散性聚合物和氟化合物中的至少一种。 图像接收层包含水溶性聚合物或水分散性聚合物之一。 在增塑剂为聚亚烷基氧化物多元醇化合物,图像接收层含有交叉的模式中,优选在剥离层中的水溶性聚合物或水分散性聚合物的玻璃化转变温度(Tg)≥45°的模式 连接反应化合物。 版权所有(C)2005,JPO&NCIPI
    • 46. 发明专利
    • Electrophotographic image receiving sheet
    • 电子图像接收片
    • JP2003322991A
    • 2003-11-14
    • JP2002132577
    • 2002-05-08
    • Fuji Photo Film Co Ltd富士写真フイルム株式会社
    • TANI YOSHIO
    • G03G7/00
    • PROBLEM TO BE SOLVED: To provide an electrophotographic image receiving sheet which can form an image with high gloss, high picture quality, no crack and excellent offset resistance.
      SOLUTION: The electrophotographic image receiving sheet has a supporting body, an image receiving layer, and an intermediate layer containing a binder having low elastic modulus and organic particles having low thermal conductivity. Such embodiments are preferable that the ratio of contents (mass ratio) of the binder having low elastic modulus and the organic particles having low thermal conductivity (binder having low elastic modulus/organic particles having low thermal conductivity) in the intermediate layer is 0.25 to 9, and the compressive elastic modulus of the binder having low elastic modulus is ≤1×10
      4 (kg/cm
      2 ).
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种可以形成具有高光泽,高图像质量,无裂纹和优异抗偏移性的图像的电子照相图像接收片。 解决方案:电子照相图像接收片材具有支撑体,图像接收层和含有低弹性模量的粘合剂的中间层和具有低热导率的有机颗粒。 这样的实施方式,优选中间层中具有低弹性模量的粘合剂的含量(质量比)与导热性低的有机颗粒(具有低热导率的粘合剂的粘合剂的热导率低)的比率为0.25〜9 ,弹性模量低的粘合剂的压缩弹性模量为≤1×10 4 (kg / cm 2)。 版权所有(C)2004,JPO
    • 49. 发明专利
    • ELECTROPHOTOGRAPHIC TRANSFER FILM AND COLOR IMAGE FORMING METHOD
    • JPH1184707A
    • 1999-03-30
    • JP16467298
    • 1998-06-12
    • FUJI PHOTO FILM CO LTD
    • TAKEHANA TADASHIKOSEKI KEISUKETANI YOSHIO
    • G03G15/01G03G7/00
    • PROBLEM TO BE SOLVED: To obtain an electrophotographic transfer film excellent in running performance, not causing offsetting and ensuring satisfactory image quality, by forming an electrically conductive undercoat layer consisting of fine particles of an electrically conductive metal oxide and a resin material and an image receiving layer consisting of electrically conductive particles, which protrude partially from the surface of the layer and a thermoplastic resin on at least one face of a substrate. SOLUTION: An electrically conductive undercoat layer 12 consisting of fine particles of an electrically conductive metal oxide and a resin material is formed on at least one face of a substrate 11 and an image receiving layer 13 consisting of electrically conductive particles 14 and a thermoplastic resin is formed on the undercoat layer 12. In the image receiving layer 13, 20-5,000 electrically conductive particles per 1 cm protrude from the surface of the layer 13. The electrically conductive particles 14 are polymer particles surface-coated with a metal, the average particle diameter is preferably 1.1-10 times the thickness of the image receiving layer 13 and the particles 14 are preferably contained in the layer 13 by 0.005-0.55 wt.%. The thickness of the layer 13 is preferably 1-8 μm.