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    • 1. 发明专利
    • Microlens ornamental body
    • 微生物体内
    • JP2011224818A
    • 2011-11-10
    • JP2010094910
    • 2010-04-16
    • Toppan Printing Co Ltd凸版印刷株式会社
    • YOSHIMOTO HISASHI
    • B44F1/02B32B3/30B32B33/00B65D65/40G02B3/00
    • PROBLEM TO BE SOLVED: To variously change a visual effect by changing color or transparency of a visual expression pattern by change of oxygen concentration in a gas in a location arranged with an ornamental body, change of an ultraviolet light quantity or change of temperature in addition of a variable visual effect developing due to movement of a visual line.SOLUTION: This microlens ornamental body is composed by laminating, in the following order, a visual expression pattern layer 2 composed of a group of pixels arranged at predetermined pixel pitches on a base material layer 1 and formed of ink sensing any of oxygen concentration, an ultraviolet ray and temperature, and a microlens array 4 composed of a group of micro convex lenses of a transparent gloss varnish arranged and formed by being partitioned by a varnish layer 3 having liquid repellent property at pitches different from the pixel pitches.
    • 要解决的问题:为了通过改变在装饰体中排列的位置中的气体中的氧浓度的变化来改变视觉表达模式的颜色或透明度来不同地改变视觉效果,紫外光量的变化或变化 另外由于视线的移动而产生可变的视觉效果。 解决方案:该微透镜装饰体由以下顺序层叠由基材层1上以规定的像素间距配置的像素组构成的视觉表现图案层2构成,并由感应氧中的任意一个的墨 浓度,紫外线和温度,以及由透明光泽清漆的一组微凸透镜组成的微透镜阵列4,其由具有不同于像素间距的间距的具有疏液性的清漆层3分隔和形成。 版权所有(C)2012,JPO&INPIT
    • 2. 发明专利
    • Packaging container with microlens
    • 用MICROLENS包装容器
    • JP2010260561A
    • 2010-11-18
    • JP2009110680
    • 2009-04-30
    • Toppan Printing Co Ltd凸版印刷株式会社
    • YOSHIMOTO HISASHIARIMOTO SACHIKO
    • B65D25/20B65D5/42B65D25/36
    • PROBLEM TO BE SOLVED: To form irregularities on an arbitrary part of a packaging container base material printed with a visually expressed pattern to keep the distance between a lens and the pattern at a necessary constant distance.
      SOLUTION: The surface of a structural base layer 1 of a packaging container is provided with a pair of projecting banks 2 separated in opposition from each other or a pair of projecting banks 2 of lateral U-shapes or encircling annular patterns or a recessed portion 8, and with a pixel layer 3 that lies inside the projecting banks 2 or the recessed portion 8 to exert a visual effect. A microlens sheet 4 is mounted to the surface of the structural base layer 1 or/and the projecting banks 2 to extend across the projecting banks 2 or the recessed portion 8 and the pixel layer 3 in such a way that a given gap 7 (air layer) is formed between the pixel layer 3 and the microlens sheet 4.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:在以可视表示的图案印刷的包装容器基材的任意部分上形成凹凸,以将透镜和图案之间的距离保持在必要的恒定距离。 解决方案:包装容器的结构基层1的表面设置有彼此分离的一对突出组2或一对侧向U形或环形环形图案的一对突出组2或 凹部8,以及位于突出部2或凹部8内的像素层3,以发挥视觉效果。 微透镜片4安装到结构基底层1或/和突出堤岸2的表面,以延伸穿过突出堤岸2或凹陷部分8和像素层3,使得给定的间隙7(空气 层)形成在像素层3和微透镜片4之间。版权所有(C)2011,JPO&INPIT
    • 3. 发明专利
    • Container treatment device by plasma cvd
    • 通过等离子体CVD进行集装箱处理装置
    • JP2008106333A
    • 2008-05-08
    • JP2006292343
    • 2006-10-27
    • Toppan Printing Co Ltd凸版印刷株式会社
    • YOSHIMOTO HISASHI
    • C23C16/511
    • PROBLEM TO BE SOLVED: To obtain a container treatment device by plasma CVD (chemical vapor deposition) where, at the introduction port of a waveguide for microwaves to a metal cavernous enclosure, the reflection quantity of microwaves is reduced.
      SOLUTION: A waveguide is joined with the side face of a cylindrical metal cavernous enclosure having an axis to a direction orthogonal to the axial direction, and a slit is formed at the joined face between the waveguide and the metal cavernous enclosure to a direction orthogonal to the axis of the metal cavernous enclosure, so as to combine the waveguide and the metal cavernous enclosure with the slit, and the slit is clogged with a dielectric ring going around the circumference of the axis of the metal cavernous enclosure along the inner wall of the metal cavernous enclosure. A gas introduction tube having electrical conductivity is installed in parallel with the axis of the cylinder of the metal cavernous enclosure, and a planar electrical contact part vertical to the gas introduction part and having electrical conductivity is installed in the lower part of a hollow container. The electrical contact part is electrically connected with the gas introduction tube and the metal cavernous enclosure, and the height of the slit from the electrical contact part is controlled to the integral multiple of λ/2±λ/8. The gas introduction tube is inserted from the opening part, and the hollow container is installed in the metal cavernous enclosure.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题为了通过等离子体CVD(化学气相沉积)获得容器处理装置,其中在用于微波的波导的导入口到金属海绵状外壳的情况下,微波的反射量减小。 解决方案:波导与具有与轴向方向正交的轴线的圆柱形金属海绵体外壳的侧面接合,并且在波导和金属海绵状外壳之间的接合面处形成狭缝以形成 方向与金属海绵状外壳的轴线正交,以便将波导和金属海绵状外壳与狭缝组合,并且狭缝被围绕金属海绵状外壳的轴线的圆周沿着内部的介质环堵塞 金属海绵状外壳的墙壁。 具有导电性的气体导入管与金属海绵状外壳的圆筒的轴线平行地安装,并且在中空容器的下部安装有与气体导入部垂直的导电性的平面的电接触部。 电接触部分与气体导入管和金属海绵状外壳电连接,并且将电接触部分的狭缝的高度控制为λ/ 2±λ/ 8的整数倍。 气体导入管从开口部插入,中空容器安装在金属海绵体外壳中。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Laminate of gas barrier film
    • 气体阻隔膜层压板
    • JP2006051751A
    • 2006-02-23
    • JP2004236382
    • 2004-08-16
    • Toppan Printing Co Ltd凸版印刷株式会社
    • YOSHINAGA MASANOBUOYA MASAHITOYOSHIMOTO HISASHI
    • B32B7/12C09D183/04C09D185/00C09D201/00C09J163/00
    • PROBLEM TO BE SOLVED: To provide a laminate of gas barrier films for which the conventional dry or non-solvent laminating method can be used as it is by giving consideration to the adhesive agent composition and which does not cause foaming/whitening due to the effect of moisture even if base materials having gas barrier property are mutually laminated.
      SOLUTION: In the laminate comprising the base materials having gas barrier property or two or more layers of the base materials having gas barrier property, the laminate of gas barrier films is formed by gluing the base materials having gas barrier property together by the dry laminating method or non-solvent laminating method, wherein the adhesive for the above dry or non-solvent laminating method is the one that hardens through the reaction between a compound having an amino group, an imino group, or a protected group thereof by an aldehyde group, a ketone group or the like, and a compound having an epoxy group.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供通过考虑到粘合剂组合物并且不引起发泡/增白的常规干燥或非溶剂层压方法可以原样使用的阻气膜层压体 即使具有阻气性的基材相互层压,也具有湿气的作用。 解决方案:在包含具有阻气性的基础材料或具有阻气性的两种或更多种基材的层压体中,阻气膜的层压体通过将具有阻气性的基材粘合在一起而形成 干层压法或非溶剂层压法,其中用于上述干法或非溶剂层压法的粘合剂是通过具有氨基,亚氨基或其保护基的化合物与 醛基,酮基等,以及具有环氧基的化合物。 版权所有(C)2006,JPO&NCIPI
    • 5. 发明专利
    • Oxygen indicator packaging material
    • 氧气指示器包装材料
    • JP2005321250A
    • 2005-11-17
    • JP2004138184
    • 2004-05-07
    • Toppan Printing Co Ltd凸版印刷株式会社
    • YOSHIMOTO HISASHIOYA MASAHITOOCHIAI SHINYAYOSHINAGA MASANOBU
    • G01N31/00B65D81/26B65D81/30G01N21/78G01N31/22
    • PROBLEM TO BE SOLVED: To suppress a deterioration of an oxygen indicator by light without increasing a work process in the oxygen indicator packaging material constituted by laminating the oxygen indicator 1 having an oxygen detecting function on one side of a base material 31.
      SOLUTION: The laminating surface of the oxygen indicator 1 is laid with at least one layer of a base material 32 to provide an ultraviolet cutting-off function to an adhesive layer 21 on which the base material 32 is bonded. Alternatively, the surface opposite to the laminating surface of the oxygen indicator 1 is overlaid with at least one layer of a base material 33 to provide an ultraviolet cutting-off function to the adhesive layer 21 to which the base material 33 is bonded.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 解决的问题:通过在基材31的一侧层叠具有氧检测功能的氧指示器1构成的氧指示剂包装材料,不增加氧指示剂的劣化来抑制氧指示剂的劣化。 解决方案:氧指示器1的层压表面铺设有至少一层基材32,以对粘合基材32的粘合层21提供紫外线切断功能。 或者,与氧指示器1的层叠表面相对的表面与至少一层基材33重叠,以向粘接基材33的粘合层21提供紫外线截止功能。 版权所有(C)2006,JPO&NCIPI
    • 6. 发明专利
    • Laser marking laminate
    • 激光标记层压板
    • JP2005144784A
    • 2005-06-09
    • JP2003383422
    • 2003-11-13
    • Toppan Printing Co Ltd凸版印刷株式会社
    • UMEYAMA HIROSHIYOSHIMOTO HISASHI
    • B41M5/28B41M5/26B41M5/30B41M5/337B41M5/46
    • PROBLEM TO BE SOLVED: To provide a laser marking laminate, in which no printed letter is defaced even under the condition that a printing part is worm and, at the same time, neither pinhole nor surface unevenness nor the like develops centering around the printing part under the condition that a thermoplastic resin is employed as a base material. SOLUTION: The laminate consists of a surface layer 10, a resin layer 12 mixed with a laser marking agent by kneading and a resin molding 20. In a laser marking laminated molding 2, which develops color through the irradiation of laser beam from the surface layer 10 side, the resin layer 12 mixed with the laser marking agent by kneading and the surface layer 10 are made of a thermoplastic resin. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供一种即使在打印部件是蜗杆的情况下也没有印刷字母被污染的激光标记层压板,并且同时,针孔和表面不均匀等都不会围绕 在使用热塑性树脂作为基材的条件下,印刷部分。 解决方案:层压体由表面层10,通过捏合与激光打标剂混合的树脂层12和树脂模制件20组成。在激光标记层压模制件2中,其通过照射来自 表面层10侧,通过捏合与激光打标剂混合的树脂层12和表面层10由热塑性树脂制成。 版权所有(C)2005,JPO&NCIPI
    • 7. 发明专利
    • Micro lens decorative body
    • MICRO LENS装饰品
    • JP2012091446A
    • 2012-05-17
    • JP2010242200
    • 2010-10-28
    • Toppan Printing Co Ltd凸版印刷株式会社
    • YOSHIMOTO HISASHI
    • B44F1/04B32B7/02B32B33/00
    • PROBLEM TO BE SOLVED: To provide a micro lens decorative body which can freely give expressions with no interference therebetween even when any other pattern layer or a gradation pattern layer is provided between a reflecting layer and a lower pattern in the decorative body which has a constitution of substrate, reflecting layer, lower pattern, and micro lens and in which fine micro lenses are precisely formed and arranged, their directional properties are accurately controlled, and an enlarged pattern of the lower pattern is expressed by a visual sense effect.SOLUTION: The micro lens decorative body includes on the substrate the reflecting layer, a pattern layer, visual expression patterns formed in patterns at a pitch A, liquid repellant patterns formed in cut-out patterns at a pitch B by using a varnish with a liquid repellency, and the micro lens formed in the cut-out pattern part by applying a transparent varnish on the liquid repellent pattern such that each interference pattern with an enlarged visual expression pattern is displayed at an equal pitch and is visualized three dimensionally by making the pitch A and the pitch B into different pitches. In this decorative body, the pattern layer is shaded by an FM screen.
    • 要解决的问题:提供一种微透镜装饰体,即使在装饰体中的反射层与下图案之间设置任何其它图案层或渐变图案层时,也可以自由地形成表现而不产生干涉的微透镜装饰体, 具有基板,反射层,下图案和微透镜的结构,其中精细地形成和布置精细微透镜,其方向性能被精确地控制,并且通过视觉效果来表现下图案的放大图案。 解决方案:微透镜装饰体在基板上包括反射层,图案层,以间距A形成的图案的视觉表现图案,通过使用清漆以间距B形成为切口图案的疏液图案 通过在疏液图案上涂布透明清漆,形成在切出图案部分中的微透镜,使得以相等间距显示具有放大视觉表现图案的每个干涉图案,并且通过 使音调A和音高B变成不同的音高。 在这个装饰体中,图案层被FM屏幕遮蔽。 版权所有(C)2012,JPO&INPIT
    • 9. 发明专利
    • Container treatment device by plasma cvd
    • 通过等离子体CVD进行集装箱处理装置
    • JP2008106332A
    • 2008-05-08
    • JP2006292342
    • 2006-10-27
    • Toppan Printing Co Ltd凸版印刷株式会社
    • YOSHIMOTO HISASHI
    • C23C16/511B65D25/14
    • PROBLEM TO BE SOLVED: To obtain a container treatment device by plasma CVD (chemical vapor deposition) where the uniformity of film deposition treatment to a hollow container caused by the bias of the intensity of plasma generated in a metal cavernous enclosure is solved, and film deposition treatment with variation of film thickness and film quality reduced is performed.
      SOLUTION: The side face of a waveguide for feeding microwaves is connected with the side face of a cylindrical metal cavernous enclosure having an axis to a direction orthogonal to the axial direction of the waveguide, and a slit in the axial direction of the waveguide is formed at the joined face between the waveguide and the metal cavernous enclosure; thus the space in the waveguide and the space in the metal cavernous enclosure are combined. A waveguide for microwaves by a dielectric ring parallel to the slit, clogging the slit and going around the inside of the metal cavernous enclosure along the inner wall is installed from the side of the metal cavernous enclosure; a gas introduction tube having electrical conductivity is installed in parallel with the axis of the cylinder of the metal cavernous enclosure; a planar electrical contact part vertical to the gas introduction tube and having electrical conductivity is installed in the lower part of a hollow container and is electrically connected with the gas introduction tube and the metal cavernous enclosure, and the gas introduction tube is inserted from the opening part, and the hollow container is installed in the metal cavernous enclosure.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 解决方案:通过等离子体CVD(化学气相沉积)获得容器处理装置,其中解决了由在金属海绵状外壳中产生的等离子体的强度偏差导致的对中空容器的成膜处理的均匀性 进行膜厚变化,膜质量降低的成膜处理。 解决方案:用于馈送微波的波导管的侧面与具有轴线的圆柱形金属海绵体外壳的侧面连接到与波导的轴向方向正交的方向,并且在轴向方向上的狭缝 波导形成在波导和金属海绵体外壳之间的接合面上; 因此波导中的空间和金属海绵体的空间被组合。 用于通过平行于狭缝的介电环的微波的波导,从金属海绵状外壳的一侧安装沿着内壁堵塞狭缝并绕金属海绵状外壳的内部环绕的波导, 具有导电性的气体导入管与金属海绵状外壳的圆筒的轴线平行地安装; 垂直于导气管并具有导电性的平面电接触部分安装在中空容器的下部,并与气体导入管和金属海绵状外壳电连接,气体导入管从开口 部分,并且中空容器安装在金属海绵状外壳中。 版权所有(C)2008,JPO&INPIT
    • 10. 发明专利
    • Vessel treatment device using plasma
    • 使用等离子体的船舶处理装置
    • JP2007204773A
    • 2007-08-16
    • JP2006022053
    • 2006-01-31
    • Toppan Printing Co Ltd凸版印刷株式会社
    • YOSHIMOTO HISASHIMORIMOTO ISAOKAKEMURA TOSHIAKI
    • C23C16/511C23C16/455
    • PROBLEM TO BE SOLVED: To provide a vessel treatment device using plasma for performing microwave plasma CVD (chemical vapor deposition) coating onto the surface of a three-dimensional hollow vessel such as a plastic bottle and a paper vessel using plastics and paper as raw materials.
      SOLUTION: The vessel treatment device using plasma in which the side face of a metal hollow enclosure (1) for performing plasma treatment is joined to a conductor face of a waveguide (2) for feeding microwaves is characterized in that the electromagnetic field energies of the metal hollow enclosure (1) and the waveguide (2) are bonded through at least two or more slits formed so as to be bored in the joining face.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 解决方案:提供一种使用等离子体进行微波等离子体CVD(化学气相沉积)的涂布装置的容器处理装置,该容器处理装置使用塑料和纸张涂覆到诸如塑料瓶和纸容器的三维中空容器的表面上 作为原料。 解决方案:使用等离子体的容器处理装置,其中用于进行等离子体处理的金属中空壳体(1)的侧面与用于馈送微波的波导管(2)的导体面接合,其特征在于,电磁场 金属中空外壳(1)和波导(2)的能量通过形成为在接合面中钻孔的至少两个或更多个狭缝结合。 版权所有(C)2007,JPO&INPIT