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    • 22. 发明申请
    • METHOD FOR BONDING MEA AND GDL OF FUEL CELL STACK
    • 用于连接燃料电池堆的MEA和GDL的方法
    • US20100000679A1
    • 2010-01-07
    • US12352682
    • 2009-01-13
    • Kook Il HanKeun Je LeeSae Hoon KimBo Ki HongByung Ki Ahn
    • Kook Il HanKeun Je LeeSae Hoon KimBo Ki HongByung Ki Ahn
    • C09J163/00
    • H01M8/1004H01M4/881H01M4/8828H01M8/0273Y02P70/56
    • The present invention provides a method for bonding a membrane electrode assembly (MEA) and a gas diffusion layer (GDL) of a fuel cell stack, which facilitates stacking of an electrode catalyst layer of the MEA and the GDL and, at the same time, facilitates the keeping of the stacked layers for mass production of the fuel cell stack.For this purpose, the present invention provides a method for bonding a membrane electrode assembly and a gas diffusion layer of a fuel cell stack, the method including: coating a catalyst layer on a surface of a polymer electrolyte membrane; attaching a sub-gasket on the circumference of the polymer electrolyte membrane; and stacking a gas diffusion layer onto an outer surface of the catalyst layer by bonding all or a portion of an outer surface of the sub-gasket and the circumference of the gas diffusion layer with a bonding means.
    • 本发明提供一种用于接合燃料电池堆的膜电极组件(MEA)和气体扩散层(GDL)的方法,其有利于MEA和GDL的电极催化剂层的堆叠,同时, 有助于保持层叠的层以大量生产燃料电池堆。 为此,本发明提供了一种用于接合燃料电池堆的膜电极组件和气体扩散层的方法,所述方法包括:在聚合物电解质膜的表面上涂覆催化剂层; 在所述高分子电解质膜的圆周上附着副垫圈; 并且通过用接合装置粘合副垫圈的外表面和气体扩散层的圆周的全部或一部分,将气体扩散层层叠在催化剂层的外表面上。
    • 28. 发明申请
    • PINHOLE DETECTION SYSTEM OF FUEL CELL
    • 燃料电池检测系统
    • US20110122991A1
    • 2011-05-26
    • US12815320
    • 2010-06-14
    • Sang Yeoul AhnKeun Je LeeSang Hyun ChoJea Suk ParkSung Keun LeeByung Ki AhnTae Won Lim
    • Sang Yeoul AhnKeun Je LeeSang Hyun ChoJea Suk ParkSung Keun LeeByung Ki AhnTae Won Lim
    • G01N23/04
    • G01N23/046G01N2223/419H01M8/04671
    • The present invention features a pinhole detection system of a fuel cell that preferably includes a stage on which a fuel cell element unit is disposed to be detected, a drive portion that is configured to move the stage so as to rotate the fuel cell element unit, a X-ray source that is disposed at one side of the stage to apply X-ray to the fuel cell element unit that rotates, an image detector that detects X-ray penetrating the fuel cell element unit, and a computer tomography that reconstructs tormogram that is detected by the image detector to a three dimension. Preferably, the fuel cell element unit is rotated on the stage, X-ray is applied to the rotating unit to gain the tomogram thereof, and the tomogram is reconstructed to be a three-dimensional image through a computerized tomography (CT scanning) such that the pinhole formed within the unit can be effectively detected.
    • 本发明的特征在于一种燃料电池的针孔检测系统,其优选地包括:燃料电池元件单元设置在其上以被检测的台;驱动部,其被配置为使所述台移动以使所述燃料电池元件单元旋转, 设置在所述台的一侧以对所述旋转的燃料电池元件单元施加X射线的X射线源,检测穿过所述燃料电池元件单元的X射线的图像检测器,以及重建图形的计算机断层摄影 由图像检测器检测到三维。 优选地,燃料电池元件单元在平台上旋转,将X射线施加到旋转单元以获得其断层图像,并且通过计算机断层摄影(CT扫描)将断层图像重建为三维图像,使得 可以有效地检测在该单元内形成的针孔。