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    • 81. 发明授权
    • Solid oxide fuel cell stack
    • 固体氧化物燃料电池堆
    • US08697307B2
    • 2014-04-15
    • US13328620
    • 2011-12-16
    • Kwang-Jin ParkHyun SohTae-Ho Kwon
    • Kwang-Jin ParkHyun SohTae-Ho Kwon
    • H01M8/24H01M8/02
    • H01M8/2432H01M8/02H01M8/0202H01M8/0206H01M8/0252H01M8/0271H01M8/243H01M8/2465
    • A solid oxide fuel cell stack includes a cell array in which M interconnector unit solid oxide fuel cells are connected in parallel to form a bundle, and N bundles are connected in series; a first plate-shaped current collecting member connected to a first bundle of the N bundles, the first current collecting member including a first terminal, and a second plate-shaped current collecting member connected to an Nth bundle of the N bundles, the second current collecting member including a second terminal; and a first elastic insulating member adjacent to the first current collecting member, the first insulating member having a first opening, a second elastic insulating member adjacent to the second current collecting member, the second insulating member having another first opening, and the first terminal passes through the first opening and the second terminal portion through the other first opening.
    • 一种固体氧化物燃料电池堆包括M个互连单元固体氧化物燃料电池并联连接以形成束的单电池阵列,并且N束串联连接; 连接到所述N束的第一束的第一板状集流构件,所述第一集电构件包括第一端子,以及与所述N束的第N束连接的第二板状集流构件,所述第二电流 收集构件,包括第二端子; 以及与所述第一集电构件相邻的第一弹性绝缘构件,所述第一绝缘构件具有第一开口,与所述第二集流构件相邻的第二弹性绝缘构件,所述第二绝缘构件具有另一第一开口,并且所述第一端子通过 通过第一开口和第二端子部分穿过另一个第一开口。
    • 88. 发明授权
    • Membrane-electrode assembly, method of producing the assembly, and solid polymer-type fuel cell employing the same
    • 膜 - 电极组件,制造组件的方法和使用其的固体聚合物型燃料电池
    • US08637210B2
    • 2014-01-28
    • US13055016
    • 2009-07-21
    • Yoshihiro HoriYoshito Endo
    • Yoshihiro HoriYoshito Endo
    • H01M8/00
    • H01M8/0271H01M4/8882H01M4/8896H01M8/0273H01M8/0289Y02P70/56
    • A first layered article (14a) in which a first electrolyte membrane (12a) and an anode-side catalyst layer (13a) are laminated, and a second layered article (14b) in which a second electrolyte membrane (12b) and a cathode-side catalyst layer (13b) are laminated, are formed. Then, the first layered article (14a) and the second layered article (14b) are disposed so that the electrolyte membrane-side surfaces of the two articles face each other. A reinforcement frame (20) is then disposed between the two articles. The whole layered assembly in this state is thermocompression-bonded. Thus, a membrane-electrode assembly (15) in which the reinforcement frame (20) is embedded within an electrolyte membrane (15) that is formed by the fusion of first electrolyte membrane (12a) and the second electrolyte membrane (12b) is obtained.
    • 层叠第一电解质膜(12a)和阳极侧催化剂层(13a)的第一层叠体(14a)和第二层叠体(14b),其中第二电解质膜(12b)和阴极侧催化剂层 形成侧面催化剂层(13b)。 然后,将第一层叠体(14a)和第二层叠体(14b)配置成使两个制品的电解质膜侧表面彼此面对。 然后在两个物品之间设置加强框架(20)。 在该状态下的整个层叠组件被热压粘合。 因此,获得了通过第一电解质膜(12a)和第二电解质膜(12b)的熔融而形成的电解质膜(15)嵌入加强框架(20)的膜 - 电极组件(15) 。