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    • 3. 发明授权
    • Proton exchange membrane fuel cell external manifold seal
    • 质子交换膜燃料电池外部歧管密封
    • US06660422B2
    • 2003-12-09
    • US09882750
    • 2001-06-15
    • Myron KrasijBryan F. DufnerRonald G. Martin
    • Myron KrasijBryan F. DufnerRonald G. Martin
    • H01M802
    • H01M8/2485H01M8/0271H01M2300/0082Y10T29/4911
    • A sealant system 13 for a manifold 10 of a proton exchange membrane fuel cell includes low temperature cured or heat cured silicone rubber bridges 14, 14a, 14c between the end plates 9 to compensate for the uneven edges of various fuel cell component layers, and a layer 15 of silicone rubber foam or sponge, or a molded silicone rubber gasket 15a, extending across the bridges and along the end plates, around the entire contact perimeter surfaces of the manifold, to seal the manifold to the fuel cell. The cured silicone rubber may extend along the end plates between the bridges. A rubber strip 20 may be adhered to the silicone rubber bridges and end plates. The bridges may comprise a first layer 22 of low shrinkage self-leveling RTV liquid rubber with viscosity in the range of 10,000-20,000 cps and a second layer 14 of RTV liquid rubber.
    • 用于质子交换膜燃料电池的歧管10的密封剂系统13包括在端板9之间的低温固化或热固化硅橡胶桥14,14a,14c,以补偿各种燃料电池组件层的不均匀边缘,以及 硅橡胶泡沫或海绵的层15或模制的硅橡胶垫片15a,围绕歧管的整个接触周边表面延伸穿过桥和沿端板,以将歧管密封到燃料电池。 固化的硅橡胶可以沿着桥之间的端板延伸。 橡胶条20可以粘附到硅橡胶桥和端板上。 桥可以包括粘度在10,000-20,000cps的低收缩自流平RTV液体橡胶的第一层22和RTV液体橡胶的第二层14。
    • 4. 发明授权
    • Proton exchange membrane fuel cell support plate and an assembly
including the same
    • 质子交换膜燃料电池支撑板和包括其的组件
    • US5264299A
    • 1993-11-23
    • US813472
    • 1991-12-26
    • Myron KrasijPaul R. Watson
    • Myron KrasijPaul R. Watson
    • H01M8/02H01M8/10
    • H01M8/0271H01M8/1007H01M2300/0082
    • A support plate for a proton exchange membrane fuel cell includes a porous support body that has a central portion and a peripheral portion integral with and circumferentially completely surrounding the central portion, and a sealing body of elastomeric sealing material that completely fills the pores of the peripheral portion to make it impermeable to fluids. The support plate may be assembled with another one and with a proton exchange membrane interposed between the two support plates to form an assembly, and the sealing body then peripherally joins and seals the assembly and fills any gaps that may be present between the peripheral portions due to the absence of the membrane from such regions and thus to peripherally encapsulate the membrane.
    • 用于质子交换膜燃料电池的支撑板包括多孔支撑体,其具有与中心部分整体并且周向完全围绕中心部分的中心部分和周边部分,以及完全填充周边孔隙的弹性体密封材料的密封体 部分使其不透液体。 支撑板可以与另一个组装,并且置于两个支撑板之间的质子交换膜以形成组件,并且密封体然后周边连接并密封组件,并填充可能存在于外围部分之间的任何间隙 从而不存在来自这些区域的膜,从而周边地包封膜。
    • 9. 发明授权
    • Membrane electrode assembly for PEM fuel cell
    • 用于PEM燃料电池的膜电极组件
    • US6020083A
    • 2000-02-01
    • US182959
    • 1998-10-30
    • Richard D. BreaultMyron Krasij
    • Richard D. BreaultMyron Krasij
    • H01M8/02H01M8/04H01M8/10H01M8/24H01M2/08
    • H01M8/0271H01M8/0245H01M8/028H01M2008/1095H01M8/04119Y02P70/56
    • An improved membrane electrode assembly for PEM fuel cells is provided. Catalyst layers (40, 44) are disposed, respectively, on both sides of the full planform proton exchange membrane (48). Gas diffusion layers (38, 50) are disposed, respectively, on sides of the catalyst layers (40, 44) not in communication with the full planform proton exchange membrane (48). Porous substrates (32, 34) are disposed, respectively, on sides of the gas diffusion layers (38, 50) not in communication with the catalyst layers (40, 44). The porous substrates (32, 34) are impregnated at their periphery with a sealant. The gas diffusion layers (38, 50) are coated with a sealant (60, 62) on respective sides thereof in regions which are in communication with sealant impregnated regions (36, 52) of the porous substrates (32, 34). The gas diffusion layers (38, 50), the porous substrates (32, 34), and the catalyst layers (40, 44) are co-extensive with the proton exchange membrane (48). The membrane electrode assembly (10) is continuously manufactured to eliminate step discontinuities and the associated strict tolerance requirements and resultant high scrap rates.
    • 提供了一种用于PEM燃料电池的改进的膜电极组件。 催化剂层(40,44)分别设置在全平台状质子交换膜(48)的两侧。 气体扩散层(38,50)分别设置在不与全平台状质子交换膜(48)连通的催化剂层(40,44)的侧面上。 多孔基材(32,34)分别设置在不与催化剂层(40,44)连通的气体扩散层(38,50)的侧面。 多孔基材(32,34)在其周边用密封剂浸渍。 气体扩散层(38,50)在与多孔基材(32,34)的密封剂浸渍区域(36,52)连通的区域中的相应侧面上涂覆有密封剂(60,62)。 气体扩散层(38,50),多孔基板(32,34)和催化剂层(40,44)与质子交换膜(48)共同扩展。 连续制造膜电极组件(10)以消除步骤不连续性和相关的严格公差要求并导致高废料率。