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    • 31. 发明专利
    • Insert molding method
    • 插入成型方法
    • JP2005161539A
    • 2005-06-23
    • JP2003399610
    • 2003-11-28
    • Mitsubishi Materials Corp三菱マテリアル株式会社
    • YAMAMOTO KUNIOTAKEISHI ATSUSHIWADA MASAHIROKANDA EIKO
    • B29C33/12B29C45/14B29C45/26B29C45/56B29K105/20
    • PROBLEM TO BE SOLVED: To provide an insert molding method capable of manufacturing a composite porous body as an insert molded product with high precision at a low cost.
      SOLUTION: In this insert molding method, a mold assembly 1 for manufacturing the composite porous body wherein a porous body 11 and a resin part are formed integrally is used. This mold assembly 1 is equipped with the positioning means 8 coming into contact with the edge part of the porous body 11 arranged to a movable mold surface 4a to position the porous body 11 in the direction along mold surfaces 3a and 4a. After the porous body 11 is positioned by the positioning means 8, the mold assembly is clamped in a state that the positioning means 8 is brought into contact with the edge part of the porous body 11 to compress the porous body 11 in a mold on-off direction by the mold surfaces 3a and 4a to fix the same and, after a cavity 2 is formed, a molten resin is injected in the cavity 2 and the contact with the edge part of the porous body 11 of the positioning means 8 is released before or at the same time when the molten resin is spread throughout the whole inner region of the cavity 2.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种能够以低成本高精度地制造复合多孔体作为嵌入成型体的嵌入成型方法。 解决方案:在该嵌入成型方法中,使用用于制造多孔体11和树脂部分一体形成的复合多孔体的模具组件1。 该模具组件1配备有定位装置8,该定位装置8与布置在活动模具表面4a上的多孔体11的边缘部分接触,以使多孔体11沿着模具表面3a和4a的方向定位。 在通过定位装置8定位多孔体11之后,模具组件被夹持在定位装置8与多孔体11的边缘部分接触的状态下,以在模具中压缩多孔体11, 通过模具表面3a和4a将其固定,并且在空腔2形成之后,将熔融树脂注入到空腔2中,并且与定位装置8的多孔体11的边缘部分的接触被释放 之前或同时当熔融树脂分散在空腔2的整个内部区域时。(C)2005年,JPO和NCIPI
    • 32. 发明专利
    • Method of producing composite porous body
    • 生产复合多孔体的方法
    • JP2005060748A
    • 2005-03-10
    • JP2003208067
    • 2003-08-20
    • Mitsubishi Materials Corp三菱マテリアル株式会社
    • USUI HIROOHORIKAWA YOSHIHIROWADA MASAHIROKANDA EIKO
    • B01D39/00B01D46/10B22F3/11B22F3/26B22F7/08B29C65/02B29L31/14
    • PROBLEM TO BE SOLVED: To easily and securely produce a composite porous body improved in handleability without sacrificing its effective area. SOLUTION: The method of producing a composite porous body 10 in which a sheetlike porous body 11 having a three-dimensional network structure and a resin part 12 elongated at least from a part of the outer circumferential edge of the porous body 11 to the facial direction are integrally formed comprises an arranging stage wherein a sheetlike member 13 and the porous body 11 are arranged side by side; and a joining stage wherein the resin member 13 is pressurized, and is further heated at the thermal deformation temperature of the resin member 13 or higher, so that the porous body 11 and the resin member 13 are joined while crushing the resin member 13 to form the resin part 12. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了容易且可靠地制造在不牺牲其有效面积的情况下可操作性得到改善的复合多孔体。 解决方案:制造复合多孔体10的方法,其中具有三维网状结构的片状多孔体11和至少从多孔体11的外周边缘的一部分延长的树脂部12至 面部整体形成包括:片状构件13和多孔体11并列配置的配置台; 以及在树脂构件13被加压并在树脂构件13的热变形温度以上进一步加热的接合阶段,使得多孔体11和树脂构件13在破碎树脂构件13的同时接合而形成 树脂部分12.版权所有(C)2005,JPO&NCIPI
    • 33. 发明专利
    • Mold for insert molding and manufacturing method of insert-molded product using it
    • 用于嵌入式模具的模具和使用它的嵌入式模制产品的制造方法
    • JP2005022278A
    • 2005-01-27
    • JP2003190987
    • 2003-07-03
    • Mitsubishi Materials Corp三菱マテリアル株式会社
    • WADA MASAHIROKANDA EIKOKATO MASAAKI
    • B29C45/34B29C45/14
    • PROBLEM TO BE SOLVED: To provide a mold for insert molding capable of obtaining sufficient venting properties when an insert-molded product being a porous body-resin composite is manufactured, and a manufacturing method of the insert-molded product using it.
      SOLUTION: In a case that porous body parts 2, etc. are inserted in a cavity 13 as insert parts and a molten resin is injected in the cavity 13 so as to continue to the porous body parts 2, etc. to perform insert molding, a venting part is provided to the cavity 13 so as to come into contact with the porous body parts 2, etc. to be inserted. The venting part is constituted of the gas passages, 17 etc. coming into contact with the porous body parts 2, etc. inserted in the cavity 13.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种用于当制造作为多孔体树脂复合材料的嵌入成型产品时能够获得足够的通气性的插入成型模具,以及使用它的嵌入成型产品的制造方法。 解决方案:在将多孔体部件2等作为插入部件插入空腔13并将熔融树脂注入空腔13中以继续进行多孔体部件2等的情况下, 插入成型时,将通气部设置到空腔13,以与要插入的多孔体部件2等接触。 通气部分由与插入空腔13中的多孔体部分2等接触的气体通道17等构成。(C)2005,JPO&NCIPI
    • 34. 发明专利
    • Gas diffusion member for solid polymer fuel cell and manufacturing method of the same
    • 固体聚合物燃料电池用气体扩散部件及其制造方法
    • JP2005011741A
    • 2005-01-13
    • JP2003176363
    • 2003-06-20
    • Mitsubishi Materials Corp三菱マテリアル株式会社
    • WADA MASAHIROKANDA EIKOKATO MASAAKI
    • H01M4/86H01M8/02H01M8/10
    • Y02P70/56
    • PROBLEM TO BE SOLVED: To provide a fuel cell with a simple structure, capable of reducing the size, easy to manufacture, and capable of efficiently providing electric power. SOLUTION: The gas diffusion member 10 has a gas diffusion electrode 11 made of a sheet-shaped conductive porous material having a three-dimensional mesh structure, of which one surface serves as an oxygen supplying surface 11a and the other surface serves as an electrode surface. An external frame part 12 made of a non-conductive material is arranged at at least two side parts 11c of the gas diffusion electrode 11, and a lattice-shaped frame part 13 having opening parts 13a where the oxygen supplying surface 11a is exposed to the outside is arranged on the oxygen supplying surface 11a side of the gas diffusion electrode 11. Further, the external frame part 12 and the lattice-shaped frame part 13 are connected to each other, and integrated with the gas diffusion electrode 11. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种具有简单结构的燃料电池,能够减小尺寸,易于制造并且能够有效地提供电力。 解决方案:气体扩散构件10具有由具有三维网状结构的片状导电性多孔质材料制成的气体扩散电极11,其中一个表面用作供氧表面11a,另一个表面用作 电极表面。 在气体扩散电极11的至少两个侧部11c上设置由非导电材料制成的外部框架部分12和具有开口部分13a的格子状框架部分13,其中供氧表面11a暴露于 外部配置在气体扩散电极11的氧供给面11a侧。此外,外框部12和格子状框部13相互连接,与气体扩散电极11一体化。 版权所有(C)2005,JPO&NCIPI