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    • 3. 发明授权
    • Multi-gradation recording method and thermal transfer recording medium used in the method
    • 该方法中使用的多层记录方法和热转印记录介质
    • US06633320B2
    • 2003-10-14
    • US09833723
    • 2001-04-12
    • Jun SogabeFumio UetsujiYoshiyuki AsabeYasutoshi Inoue
    • Jun SogabeFumio UetsujiYoshiyuki AsabeYasutoshi Inoue
    • B41J2355
    • B41J2/325B41J2/36
    • A multi-gradation recording method comprising the steps of: providing a thermal transfer recording medium comprising a substrate, a release layer, a first ink layer and a second ink layer provided in this order on the substrate, and carrying out a gradation recording using the thermal transfer recording medium, the step of carrying out a gradation recording comprising: (a) in the case of recording in a middle density/high density region, carrying out a gradation expression based on an area gradation expression by transferring the first ink layer and the second ink layer together, and (b) in the case of recording in a low density region, carrying out a gradation expression by transferring only the second ink layer by causing a cohesive failure in the second ink layer, thereby changing the area of transferred ink per one dot and the thickness of transferred ink dots.
    • 一种多层次记录方法,包括以下步骤:提供一种热转印记录介质,其包括在基板上依次设置的基板,剥离层,第一墨层和第二墨层,并且使用 热转印记录介质,执行灰度记录的步骤,包括:(a)在中密度/高密度区域记录的情况下,通过转印第一油墨层和基于区域灰度表达式执行灰度表达, 第二油墨层在一起,和(b)在低密度区域记录的情况下,通过在第二油墨层中引起内聚破坏仅转移第二油墨层,从而改变转印区域 墨水每一个点和转印墨点的厚度。
    • 4. 发明授权
    • Color thermal transfer recording medium
    • 彩色热转印记录介质
    • US06623589B2
    • 2003-09-23
    • US09898246
    • 2001-07-03
    • Jun SogabeFumio UetsujiYoshiyuki AsabeYasutoshi Inoue
    • Jun SogabeFumio UetsujiYoshiyuki AsabeYasutoshi Inoue
    • B41M530
    • B41M5/42B41M5/345B41M5/38214B41M5/423
    • A color thermal transfer recording medium for forming a multi-color image by superimposing printing of a plurality of different color inks wherein transfer layers corresponding to a plurality of colors to be superimposed are provided on separate substrates or on a single substrate in a side-by-side relation, the transfer layers each comprising at least a release layer, a color ink layer and an adhesive layer stacked in this order from the substrate side, the release layer comprising a wax material as a main component by weight, the adhesive layer comprising a binder comprising a thermoplastic resin as a main component by weight and particles dispersed in the binder, wherein the thickness d1 of a release layer for a first color; the thickness d2 of a color ink layer for a second color; the thickness d3 of an adhesive layer for a second color; and the average particle size R of the particles contained in the adhesive layer for the second color satisfy the following relation: (d1+d2+d3)×2>R>d1+d3  (I).
    • 一种彩色热转印记录介质,用于通过叠加多种不同颜色油墨的印刷来形成多色图像,其中对应于要重叠的多种颜色的转印层分别设置在分开的基板上或者在单个基板上, 所述转印层各自至少包含剥离层,彩色油墨层和从基材侧依次层叠的粘合剂层,所述剥离层包含作为主要成分的蜡材料,所述粘合剂层包含 包含热塑性树脂作为主要成分的粘合剂和分散在粘合剂中的颗粒,其中第一颜色的剥离层的厚度d1; 第二颜色的彩色油墨层的厚度d2; 用于第二种颜色的粘合剂层的厚度d3; 并且第二颜色的粘合剂层中包含的颗粒的平均粒径R满足以下关系:
    • 5. 发明授权
    • Metallic thermal transfer recording medium
    • 金属热转印记录介质
    • US06562442B2
    • 2003-05-13
    • US09761607
    • 2001-01-16
    • Jun SogabeYuuichi MiyakusaYoshiyuki AsabeYasutoshi Inoue
    • Jun SogabeYuuichi MiyakusaYoshiyuki AsabeYasutoshi Inoue
    • B32B300
    • B41M5/44B41M5/38214
    • A thermal transfer recording medium for forming a printed image with metallic luster of high level with superior transferability according to a thermal transfer mechanism is disclosed which comprises a foundation, and provided on one side of the foundation, a laminate transfer layer comprising at least a release layer, a heat-resistant layer for metal deposition, a metal deposition layer and an adhesive layer in this order from the foundation side, the release layer having a thickness of 0.05 to 0.50 &mgr;m and a softening point not lower than 100° C., the release layer being a substantially transparent layer consisting essentially of a resin, and the peel strength of the laminate transfer layer from the foundation according to T-mode peeling being not larger than 50 gf/12.7 mm.
    • 公开了一种用于根据热转印机构形成具有高水平的具有优异转印性的金属光泽的印刷图像的热转印记录介质,其包括基底,并且设置在基底的一侧上,层压转印层至少包含释放 层,用于金属沉积的耐热层,金属沉积层和粘合剂层,从基底侧开始,剥离层的厚度为0.05至0.50μm,软化点不低于100℃。 剥离层是基本上由树脂组成的基本上透明的层,并且根据T模剥离的层压转印层的剥离强度不大于50gf / 12.7mm。
    • 6. 发明申请
    • LIGHT EMITTING DEVICE
    • 发光装置
    • US20070120119A1
    • 2007-05-31
    • US11565428
    • 2006-11-30
    • Yoshiyuki Asabe
    • Yoshiyuki Asabe
    • H01L29/08
    • H01L51/5203
    • A light emitting device includes a laminate of a lower electrode layer, an organic light-emitting layer, and an upper transparent electrode layer. In the light emitting device, an auxiliary electrode layer is formed of colloidal nano-sized particles of a conductive metal between the lower electrode layer and the organic light-emitting layer. The auxiliary electrode layer causes the lower electrode layer to be flat and the light emitting efficient to be improved. A light emitting device having a structure in which a transparent electrode layer is formed as the lower electrode layer, and an organic light-emitting layer, an auxiliary electrode layer, and an upper electrode layer are sequentially formed thereon has the same effects. When glass is produced by a sol-gel method using metal alkoxide and the light emitting device is sealed by the glass, it is possible to extend the light emitting period.
    • 发光器件包括下电极层,有机发光层和上透明电极层的叠层体。 在发光装置中,辅助电极层由下部电极层和有机发光层之间的导电性金属的胶体状纳米尺寸粒子形成。 辅助电极层使下电极层平坦,发光效率得到提高。 在其上顺序地形成具有其中形成有透明电极层的结构的发光器件以及有机发光层,辅助电极层和上电极层,具有相同的效果。 当通过使用金属醇盐的溶胶 - 凝胶法制造玻璃并且发光器件被玻璃密封时,可以延长发光周期。
    • 8. 发明授权
    • Light emitting device
    • 发光装置
    • US07633082B2
    • 2009-12-15
    • US11565428
    • 2006-11-30
    • Yoshiyuki Asabe
    • Yoshiyuki Asabe
    • H01L29/08
    • H01L51/5203
    • A light emitting device includes a laminate of a lower electrode layer, an organic light-emitting layer, and an upper transparent electrode layer. In the light emitting device, an auxiliary electrode layer is formed of colloidal nano-sized particles of a conductive metal between the lower electrode layer and the organic light-emitting layer. The auxiliary electrode layer causes the lower electrode layer to be flat and the light emitting efficient to be improved. A light emitting device having a structure in which a transparent electrode layer is formed as the lower electrode layer, and an organic light-emitting layer, an auxiliary electrode layer, and an upper electrode layer are sequentially formed thereon has the same effects. When glass is produced by a sol-gel method using metal alkoxide and the light emitting device is sealed by the glass, it is possible to extend the light emitting period.
    • 发光器件包括下电极层,有机发光层和上透明电极层的叠层体。 在发光装置中,辅助电极层由下部电极层和有机发光层之间的导电性金属的胶体状纳米尺寸粒子形成。 辅助电极层使下电极层平坦,发光效率得到提高。 在其上顺序地形成具有其中形成有透明电极层的结构的发光器件以及有机发光层,辅助电极层和上电极层,具有相同的效果。 当通过使用金属醇盐的溶胶 - 凝胶法制造玻璃并且发光器件被玻璃密封时,可以延长发光周期。
    • 9. 发明申请
    • LIGHT EMITTING DEVICE
    • 发光装置
    • US20080213931A1
    • 2008-09-04
    • US12115236
    • 2008-05-05
    • Yoshiyuki Asabe
    • Yoshiyuki Asabe
    • H01L51/56
    • H01L51/5203H01L51/5253
    • A light emitting device includes a laminate of a lower electrode layer, an organic light-emitting layer, and an upper transparent electrode layer. In the light emitting device, an auxiliary electrode layer is formed of colloidal nano-sized particles of a conductive metal between the lower electrode layer and the organic light-emitting layer. The auxiliary electrode layer causes the lower electrode layer to be flat and the light emitting efficient to be improved. A light emitting device having a structure in which a transparent electrode layer is formed as the lower electrode layer, and an organic light-emitting layer, an auxiliary electrode layer, and an upper electrode layer are sequentially formed thereon has the same effects. When glass is produced by a sol-gel method using metal alkoxide and the light emitting device is sealed by the glass, it is possible to extend the light emitting period.
    • 发光器件包括下电极层,有机发光层和上透明电极层的叠层体。 在发光装置中,辅助电极层由下部电极层和有机发光层之间的导电性金属的胶体状纳米尺寸粒子形成。 辅助电极层使下电极层平坦,发光效率得到提高。 在其上顺序地形成具有其中形成有透明电极层的结构的发光器件以及有机发光层,辅助电极层和上电极层,具有相同的效果。 当通过使用金属醇盐的溶胶 - 凝胶法制造玻璃并且发光器件被玻璃密封时,可以延长发光周期。