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    • 4. 发明专利
    • Decorative resin molding article and method of manufacturing the same
    • 装饰树脂模制品及其制造方法
    • JP2010089399A
    • 2010-04-22
    • JP2008262445
    • 2008-10-09
    • Kojima Press Industry Co Ltd小島プレス工業株式会社
    • NOGUCHI MASUMI
    • B32B15/08B60K37/00B60R13/02C23C14/14C23C14/20
    • PROBLEM TO BE SOLVED: To provide a decorative resin molding article which sufficiently ensures an excellent chemical resistance and a high adhesive property of a metal thin film to a design surface and, in addition, can express the metal surface more realistically. SOLUTION: The molding article is obtained by forming the metal thin film 20 directly on the design surface 18 of a substrate 12 by a physical vapor deposition method or a chemical vapor deposition method to attain a decoration of metal tone, and laminating a first top coat layer 22, comprising a coating of a transparent paint which bridges both a resin and a metal, directly on the metal thin film 20, and further laminating a second top coat layer 23 comprising a transparent coating whose glass transition temperature is 55-120°C directly on the first top coat layer 22. COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:提供充分确保金属薄膜对设计表面的优异的耐化学性和高粘附性的装饰性树脂成型体,并且还可以更真实地表达金属表面。 解决方案:通过物理气相沉积法或化学气相沉积法直接在基片12的设计表面18上形成金属薄膜20以获得金属色调的装饰,并将 第一面漆层22,其包括直接在金属薄膜20上桥接树脂和金属的透明涂料的涂层,并且进一步层压包括玻璃化转变温度为55℃的透明涂层的第二顶涂层23, 120℃直接在第一顶层涂层22上。版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • Lithium ion secondary battery and manufacturing method and manufacturing apparatus therefor
    • 锂离子二次电池及其制造方法及制造方法
    • JP2014026806A
    • 2014-02-06
    • JP2012165442
    • 2012-07-26
    • Kojima Press Industry Co Ltd小島プレス工業株式会社
    • NOGUCHI MASUMI
    • H01M10/0565H01M4/13H01M4/139H01M4/62H01M10/052H01M10/058
    • H01M10/0525H01M4/0421H01M4/139H01M10/0404H01M10/0565H01M10/058Y10T29/49112Y10T29/53135
    • PROBLEM TO BE SOLVED: To provide a compact lithium ion secondary battery of high battery performance having a high output density, which can be manufactured at low cost with excellent productivity.SOLUTION: A laminate 40 where a positive electrode layer 16 consisting of a vapor deposition polymerization film 26 containing a positive electrode active material 24 and lithium ion conductive positive electrode layer side vapor deposition polymerization film layers 36, 37 are laminated integrally on a positive electrode collector layer 12, and a laminate 42 where a negative electrode layer 18 consisting of a vapor deposition polymerization film 30 containing a negative electrode active material 28 and lithium ion conductive negative electrode layer side vapor deposition polymerization film layers 38, 39 are laminated integrally on a negative electrode collector layer 14 are laminated so that the positive electrode layer side vapor deposition polymerization film layers 36, 37 and the negative electrode layer side vapor deposition polymerization film layers 38, 39 overlap each other. A lithium ion secondary battery 10 is configured by forming a solid electrolyte layer 20 of the positive electrode layer side and negative electrode layer side vapor deposition polymerization film layers 36, 37, 38, 39.
    • 要解决的问题:提供具有高输出密度的高电池性能的紧凑型锂离子二次电池,其可以以低成本和优异的生产率制造。解决方案:层压体40,其中由气相沉积 含有正极活性物质24和锂离子传导性正电极层侧蒸镀聚合膜层36,37的聚合膜26一体地层叠在正极集电体层12上,层叠体42由负极层18构成, 将含有负极活性物质28和锂离子传导性负极层侧蒸镀聚合膜层38,39的气相沉积聚合膜30一体层叠在负极集电层14上,使得正极层侧蒸镀聚合 膜层36,37和阴性 e电极层侧蒸镀聚合膜层38,39彼此重叠。 锂离子二次电池10通过形成正极层侧和负极层侧蒸镀聚合膜层36,37,38,39的固体电解质层20而构成。
    • 7. 发明专利
    • Method and apparatus for forming organic polymer thin film
    • 用于形成有机聚合物薄膜的方法和装置
    • JP2011084773A
    • 2011-04-28
    • JP2009238179
    • 2009-10-15
    • Kojima Press Industry Co LtdUlvac Japan Ltd小島プレス工業株式会社株式会社アルバック
    • NOGUCHI MASUMIMOMONO TAKESHIIRIKURA HAGANE
    • C23C14/12
    • C23C14/12C23C14/246
    • PROBLEM TO BE SOLVED: To provide the technology capable of consistently depositing an organic polymer thin film on a surface of a base body with high film deposition efficiency and excellent reproducibility. SOLUTION: When repeatedly performing the vacuum vapor deposition polymerizing operation of depositing an organic polymer thin film on a surface of a base body 12 by introducing a plurality of kinds of raw materials monomer evaporated in a plurality of evaporation source vessels 32a, 32b in a vacuum state into a film deposition chamber 10 in a vacuum state, and polymerizing the raw material monomer on the surface of the base body 12 arranged in the film deposition chamber 10, the raw material monomer of the predetermined amount is present in a liquid state in the evaporation source vessels 32a, 32b when starting the evaporation operation of the raw material monomer each time. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供能够以高膜沉积效率和优异的再现性在基体表面上一贯地沉积有机聚合物薄膜的技术。 解决方案:通过引入多种蒸发源容器32a,32b中蒸发的多种原料,反复进行在基体12的表面上沉积有机聚合物薄膜的真空蒸镀聚合操作 在真空状态下进入成膜室10,并且将原料单体聚合在设置在成膜室10中的基体12的表面上,预定量的原料单体存在于液体 在每次开始原料单体的蒸发操作时,在蒸发源容器32a,32b中的状态。 版权所有(C)2011,JPO&INPIT
    • 10. 发明专利
    • Method of forming organic polymer thin film and forming apparatus
    • 形成有机聚合物薄膜和成型装置的方法
    • JP2014025152A
    • 2014-02-06
    • JP2013229004
    • 2013-11-05
    • Kojima Press Industry Co Ltd小島プレス工業株式会社Ulvac Japan Ltd株式会社アルバック
    • NOGUCHI MASUMIMOMONO TAKESHIIRIKURA HAGANE
    • C23C14/24C23C14/12
    • PROBLEM TO BE SOLVED: To provide a technology for forming an organic polymer thin film on a surface of a substrate at high efficiency, high reproducibility and high stability.SOLUTION: On performing vacuum deposition polymerization operation to form an organic polymer thin film on a surface of a substrate 12 by introducing a plurality of kinds of raw material monomers evaporated in a plurality of vacuum evaporation source containers 32a, 32b to a vacuum film deposition chamber 10 and polymerizing on the surface of the substrate 12 located in the film deposition chamber 10, the amounts of the raw material monomers in liquid form in the evaporation source containers 32a, 32b is fixed when starting an evaporation operation of the raw material monomers every time and the vapor pressures of the raw material monomers in the evaporation source containers 32a, 32b are regulated to be always higher than the pressure in the film deposition chamber 10 when starting and performing an operation for forming the organic polymer thin film so that the vapor of the raw material monomers are introduced in the film deposition chamber 10 based on the difference in the pressures between the evaporation source containers 32a, 32b and the film deposition chamber 10.
    • 要解决的问题:提供一种在基板表面上以高效率,高再现性和高稳定性形成有机聚合物薄膜的技术。解决方案:在进行真空沉积聚合操作以在表面上形成有机聚合物薄膜 通过将在多个真空蒸发源容器32a,32b中蒸发的多种原料单体引入真空成膜室10并在位于成膜室10中的基板12的表面上聚合的基板12, 蒸发源容器32a,32b中液态原料单体的数量在每次开始原料单体的蒸发操作和蒸发源容器32a,32b中的原料单体的蒸气压为 被调节为总是高于成膜室10中的启动和执行操作时的压力 形成有机聚合物薄膜,使得原料单体的蒸气基于蒸发源容器32a,32b和成膜室10之间的压力差而导入成膜室10。