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    • 1. 发明专利
    • Manufacturing method of single-particle film on non-planar surface, manufacturing method of microstructure using single-particle film etching mask, and microstructure acquired by manufacturing method
    • 非平面表面单颗膜的制造方法,使用单片膜蚀刻掩模的微结构的制造方法以及制造方法获得的微结构
    • JP2012078831A
    • 2012-04-19
    • JP2011215110
    • 2011-09-29
    • Oji Paper Co Ltd王子製紙株式会社
    • SHINOZUKA HIROSHI
    • B01J19/00B29C33/38B29C45/26B29C59/02B82Y40/00G02B1/11G02B1/118H01L21/027
    • PROBLEM TO BE SOLVED: To provide a single-particle film etching mask on a curved surface closely two-dimensionally packed with and highly precisely disposed with respective particles constituting a single-particle film; to provide a manufacturing method of the same; to provide a manufacturing method of a microstructure on the curved surface using the single-particle film etching mask; and to provide a highly precise microstructure on the curved surface acquired by the manufacturing method.SOLUTION: The single-particle film is formed on a substrate whose one part or whole part is formed of a surface having a surface-directional pitch or size of 0.1 μm-10000 μm at a non-planar surface such as a curved face, an inclined surface and a step, the single-particle film being closely two-dimensionally packed with the particles. In the single-particle film, a displacement D (%) of a particle array defined by the following expression (1) is 10% or less. D(%)=|B-A|×100/A...(1) (In the expression (1), A represents an average particle diameter of the particle, and B represents an average pitch between the particles in the single-particle film).
    • 要解决的问题:在与构成单颗粒膜的各个颗粒紧密地二维填充并高精度地设置的弯曲表面上提供单颗粒膜蚀刻掩模; 提供其制造方法; 使用单粒子膜蚀刻掩模提供弯曲表面上的微结构的制造方法; 并且通过制造方法获得的弯曲表面上提供高精度的微结构。 解决方案:单颗粒膜形成在基板上,其一部分或整个部分由非平面表面如弯曲的表面形成具有0.1μm-10000μm的表面方向间距或尺寸的表面 面,倾斜表面和台阶,单颗粒膜紧密地二维填充颗粒。 在单粒子膜中,由下述式(1)定义的粒子阵列的位移D(%)为10%以下。 D(%)=¾B-A¾×100 / A ...(1)(在表达式(1)中,A表示颗粒的平均粒径,B表示单颗粒中的颗粒之间的平均间距 电影)。 版权所有(C)2012,JPO&INPIT
    • 3. 发明专利
    • Light diffusion sheet and backlight unit
    • 光扩散片和背光单元
    • JP2010044146A
    • 2010-02-25
    • JP2008206738
    • 2008-08-11
    • Oji Paper Co Ltd王子製紙株式会社
    • SEGAWA TAKAKOSHINOZUKA HIROSHITACHIBANA HIROYASUMAEDA MASAYO
    • G02B5/02F21S2/00F21Y101/02F21Y103/00G02F1/13357
    • PROBLEM TO BE SOLVED: To provide a light diffusion sheet in which such a problem is remedied that when the light diffusion sheet obtained by performing printing with ink is applied to a backlight unit and the thick printing is performed with ink in order to make the light diffusion properties thereof higher, the light diffusion properties are enhanced but powder of an ink component is scattered, ink is easily exfoliated when rubbed or ink is apt to be exfoliated when the temperature becomes high due to a light source.
      SOLUTION: The light diffusion sheet is provided with: a base material; and a pattern-printed part which is formed by printing a predetermined pattern with the ink on (at least) one surface of the base material. A resin layer is formed only on least the upper part of the pattern-printed part. A light diffusing agent can be incorporated in the resin layer.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供一种光漫射片,其中补救了这样的问题:当通过用油墨进行打印而获得的光扩散片被施加到背光单元上并且用墨水进行厚打印以便 使光扩散性能提高,光扩散性能提高,但墨粉成分的粉末分散,当由于光源导致的温度变高时,摩擦时油墨容易剥离或油墨容易剥离。 光散射片设置有:基材; 以及通过在基材的(至少)一个表面上的油墨印刷预定图案而形成的图案印刷部分。 仅在图案印刷部的至少上部形成树脂层。 可以在树脂层中引入光漫射剂。 版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • Optical sheet and method for manufacturing the same
    • 光学片及其制造方法
    • JP2010145427A
    • 2010-07-01
    • JP2008319043
    • 2008-12-16
    • Oji Paper Co Ltd王子製紙株式会社
    • OKAWA AKANESHINOZUKA HIROSHIYAMAMURA NORIONAKADA MASAHIROTANAKA HIROKI
    • G02B5/02F21V3/00F21V3/04G02F1/13357G09F13/04
    • PROBLEM TO BE SOLVED: To provide an optical sheet which is free, in a backlight unit, from exfoliation caused by the friction between the optical sheet itself and other sheets or the imperfect fixation of a printing ink when printing is executed, since the optical sheet made by using a printing ink causes exfoliation.
      SOLUTION: The optical sheet diffuses light made incident from one side of a transparent base material and emits the light from the other side of the transparent base material. In addition, an ink having light-diffusing properties is printed in a prescribed pattern to form a light-diffusing part, and fine concave-convex structures are formed on the whole printing surface. Furthermore, the pitches and aspect ratios in the structures are 30-380 nm and 0.5-10.0, respectively. The fine concave-convex structures are conical, pyramidal, pseudo-conical or pseudo-pyramidal in shape.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供一种在背光单元中由于光学片本身和其它片材之间的摩擦而引起的剥离或在执行打印时印刷油墨的不完美固定的光学片,因为 通过使用印刷油墨制成的光学片导致剥离。 解决方案:光学片将从透明基材的一侧入射的光漫射,并从透明基材的另一侧发射光。 此外,具有光扩散性的油墨以规定的图案印刷以形成光扩散部分,并且在整个打印表面上形成微细的凹凸结构。 此外,结构中的间距和纵横比分别为30-380nm和0.5-10.0。 精细的凹凸结构是圆锥形,金字塔形,假锥形或假金字塔形。 版权所有(C)2010,JPO&INPIT
    • 6. 发明专利
    • Plasmonic crystal plane light emitting body, image display device, and lighting apparatus
    • 等离子体水晶平面发光体,图像显示装置和照明装置
    • JP2009158478A
    • 2009-07-16
    • JP2008293969
    • 2008-11-18
    • Oji Paper Co Ltd王子製紙株式会社
    • SHINOZUKA HIROSHI
    • H05B33/02H01L51/50
    • PROBLEM TO BE SOLVED: To provide a technology in which, in an organic light emitting diode (organic EL, OLED) used for a display and lighting or the like, an extracting efficiency of energy in a wide range from infrared including a visible light region to an ultraviolet region is improved by a surface plasmon resonance.
      SOLUTION: The plasmonic crystal plane light-emitting body is provided with an organic light emitting diode element composed of at least a positive pole conductive layer, a light emitting layer and a negative pole conductive layer laminated on a substrate in this order, in which a substrate having a periodic lattice structure of a regular concavo-convex shape manufactured by a dry etching method in which a second dimensional crystal body made of a particle single layer is used as an etching mask is used, and an extracting efficiency of light energy is improved by using a surface plasmon resonance on a negative pole surface having the regular concavo-convex shape.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 解决的问题:提供一种技术,其中在用于显示器和照明等的有机发光二极管(有机EL,OLED)中,从包括以下的红外线的宽范围内的能量的提取效率 通过表面等离子体共振改善了紫外线区域的可见光区域。 解决方案:等离子体晶体平面发光体依次具有至少层叠在基板上的正极导电层,发光层和负极导电层构成的有机发光二极管元件, 使用其中使用由使用由粒子单层制成的二维晶体作为蚀刻掩模的通过干蚀刻法制造的具有规则凹凸形状的周期性晶格结构的基板,并且提供光的提取效率 通过在具有规则凹凸形状的负极表面上使用表面等离子体共振来提高能量。 版权所有(C)2009,JPO&INPIT
    • 7. 发明专利
    • Pressure sensitive adhesive sheet for electrophotographic printing and method for producing same
    • 电动印刷用压敏粘合片及其制造方法
    • JP2007248591A
    • 2007-09-27
    • JP2006069012
    • 2006-03-14
    • Oji Paper Co Ltd王子製紙株式会社
    • FUJIKI YASUTAKESHINOZUKA HIROSHI
    • G03G7/00B42D15/02C09J7/02C09J11/06C09J103/02C09J191/00C09J201/00
    • PROBLEM TO BE SOLVED: To provide a method for producing a pressure sensitive adhesive sheet for electrophotographic printing which has an excellent release effect on a turn bar and avoids adhesion of dirt to a metal roll in a process of producing base paper of confidential postcards, the impression cylinder of a form printing machine in a printing process, the impression cylinder of a dry sealer in a pressure bonding process, etc.
      SOLUTION: The method for producing the pressure sensitive adhesive sheet for electrophotographic printing comprises forming a redetachable adhesive layer on at least one surface of a base sheet with an adhesive composition comprising an adhesive, particles of at least one selected from fatty acids and fatty acid metal salts and starch particles. The adhesive layer exhibits no adhesive property under normal conditions, and when pressure is applied to such adhesive layers in an opposed state, the adhesive layers can be bonded together, and the bonded adhesive layers can be detached from each other.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种用于制造电子照相印刷用压敏粘合片的方法,其在转杆上具有优异的剥离效果,并且在生产保密的原纸的过程中避免了粘附到金属辊上的污垢 明信片,印刷方法中的印刷机的压印滚筒,压接工艺中的干燥封口机的压印滚筒等。解决方案:用于制造电子照相压敏粘合片的方法包括: 在具有粘合剂的粘合剂组合物的基片的至少一个表面上的可再剥离粘合剂层,至少一种选自脂肪酸和脂肪酸金属盐和淀粉颗粒的颗粒。 粘合剂层在正常条件下不具有粘合性,并且当以相反的状态对这种粘合剂层施加压力时,可以将粘合剂层粘合在一起,并且粘合的粘合剂层可以彼此分离。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • Manufacturing process of double width nanoimprint roll for roll type imprint apparatus
    • 滚筒式印刷装置的双宽度纳米薄膜滚筒的制造工艺
    • JP2007203576A
    • 2007-08-16
    • JP2006024463
    • 2006-02-01
    • Oji Paper Co Ltd王子製紙株式会社
    • SHINOZUKA HIROSHIOKAYASU TOSHIKI
    • B29C59/04B29C33/38B29K83/00B29L31/32G02B1/11
    • PROBLEM TO BE SOLVED: To provide a manufacturing process of an imprint roll for a double-width roll type nanoimprint apparatus for manufacturing, in the state enlarged to much larger area than an original edition, a structure having a minute pattern below the wave length (380 nm) of a visible light.
      SOLUTION: In the manufacturing method of the double width nanoimprint roll for the roll type imprint apparatus which comprises enlarging a transferred area offset surface product by repeating a transfer operation by a transfer medium having a pattern transfer layer of a small area original edition in which a positive (or negative) pattern of a sub wave length structure is formed, to a compatible transfer medium; after the direct pressure transfer of the positive (or negative) pattern surface of the original edition is carried out at the polysiloxane layer of an ultraviolet curing nature or electron beam curing nature, as the above-mentioned transfer medium, a small width nanoimprint roll formed in a roll surface in which a compatible curing polysiloxane layer about the negative (or positive) pattern of a sub wave length structure currently formed by irradiating ultraviolet rays or electron ray, is acted.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供一种用于制造双辊宽度辊型纳米压印装置的压印辊的制造方法,在比原始版本扩大到大得多的面积的状态下,具有在 波长(380nm)的可见光。 解决方案:在用于辊型压印设备的双宽度纳米压印辊的制造方法中,其包括通过用具有小面积原版的图案转印层的转印介质重复转印操作来扩大转印区域偏移表面积 其中形成了亚波长结构的正(或负)图案到兼容的转印介质; 在原版的正(或负)图案表面的直接压力转印在紫外线固化性质或电子束固化性质的聚硅氧烷层上进行,作为上述转印介质,形成小宽度的纳米压印辊 在其中通过照射紫外线或电子射线而形成有通过亚波长结构的负(或正)图案的相容的固化聚硅氧烷层的辊表面。 版权所有(C)2007,JPO&INPIT