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    • 91. 发明授权
    • Fuel cell system
    • 燃料电池系统
    • US07097927B2
    • 2006-08-29
    • US10218938
    • 2002-08-14
    • Narutoshi SugitaNoriaki OsaoTakeshi Ushio
    • Narutoshi SugitaNoriaki OsaoTakeshi Ushio
    • H01M2/02
    • H01M8/249H01M8/0202H01M2300/0082
    • A fuel cell system comprises first and second parallel fuel cell stacks (12, 14) in which a positive electrode and a negative electrode of adjoining terminal electrodes are set to be opposite to one another. First and second conductive plates (82, 180) are incorporated at ends on an identical side of the first and second fuel cell stacks (12, 14). First and second connecting plate sections (106, 182) extend from the first and second conductive plates (82, 180) closely to one another under the first and second fuel cell stacks (12, 14). The first and second connecting plate sections (106, 182) are electrically connected by flexible strand wires (186a, 186b). Accordingly, the fuel cell system reliably avoids stress caused by vibration or the like at a connecting portion for electrically connecting the first and second fuel cell stacks (12, 14) to one another.
    • 燃料电池系统包括第一和第二平行燃料电池堆叠(12,14),其中相邻的端子电极的正电极和负极彼此相对设置。 在第一和第二燃料电池堆叠(12,14)的同一侧的端部并入第一和第二导电板(82,180)。 第一和第二连接板部分(106,182)在第一和第二燃料电池堆叠(12,14)下从第一和第二导电板(82,180)彼此紧密地延伸。 第一和第二连接板部分(106,182)通过柔性绞线(186a,186b)电连接。 因此,燃料电池系统可靠地避免在用于将第一和第二燃料电池堆(12,14)彼此电连接的连接部分处由振动等引起的应力。
    • 92. 发明授权
    • Membrane electrode assembly and fuel cell unit
    • 膜电极组件和燃料电池单元
    • US07056614B2
    • 2006-06-06
    • US10191007
    • 2002-07-08
    • Narutoshi SugitaMasaaki NanaumiTadashi Nishiyama
    • Narutoshi SugitaMasaaki NanaumiTadashi Nishiyama
    • H01M2/08
    • H01M8/0273H01M8/0271H01M8/1004H01M2008/1095H01M2250/20Y02E60/521Y02T90/32
    • The present invention aims to provide a membrane electrode assembly that can increase durability by increasing the strength of an extending part of a solid polymer electrolyte membrane, and can also reduce cost by minimizing the volume of the solid polymer electrolyte membrane used.In the present invention, an anode electrode is provided on one side of a solid polymer electrolyte membrane, and a cathode electrode is provided on the other side of the solid polymer electrolyte membrane. The solid polymer electrolyte membrane is formed such that its outer peripheral portion extends the anode electrode and the cathode electrode on both sides thereof. A framc-shaped first sealing member is closely contacted with the outer peripheral edge face of the anode electrode or the cathode electrode. The frame-shaped first sealing member coats and supports one face of the extending part of the solid polymer electrolyte membrane.
    • 本发明的目的在于提供一种能够通过提高固体高分子电解质膜的延伸部分的强度而提高耐久性的膜电极组件,还可以通过使固体高分子电解质膜的体积最小化来降低成本。 在本发明中,在固体高分子电解质膜的一侧设置阳极电极,在固体高分子电解质膜的另一侧设置阴极电极。 固体高分子电解质膜形成为使得其外周部分在其两侧延伸阳极电极和阴极电极。 框状的第一密封构件与阳极或阴极的外周边缘面紧密接触。 框状的第一密封构件涂覆并支撑固体聚合物电解质膜的延伸部分的一个面。
    • 100. 发明授权
    • Fuel cell stack
    • 燃料电池堆
    • US08574781B2
    • 2013-11-05
    • US12999949
    • 2009-06-04
    • Shuhei GotoNarutoshi SugitaMasaru OdaYasuhiro Watanabe
    • Shuhei GotoNarutoshi SugitaMasaru OdaYasuhiro Watanabe
    • H01M8/24
    • H01M8/0258H01M8/0267H01M8/0271H01M8/04029H01M8/241H01M8/2457
    • A fuel cell stack. A fuel cell stack, an example of the fuel cell stack, is configured by alternately overlaying first electricity generating units and second electricity generating units in the horizontal direction. The first electricity units are each provided with a first fuel gas flow path, a first oxidant gas flow path, a second fuel gas flow path, and a second oxidant gas flow path, and the flow paths are set to the same phase in the overlaying direction. The second electricity generating units are each provided with a first fuel gas flow path, a first oxidant gas flow path, a second fuel gas flow path, and a second oxidant gas flow path which are set to the same phase in the overlaying direction and are set to a phase different from the phase of the flow paths of the first electricity generating units.
    • 燃料电池堆。 燃料电池堆,燃料电池堆的一个例子,是通过在水平方向交替重叠第一发电单元和第二发电单元而构成的。 第一电力单元各自设置有第一燃料气体流路,第一氧化剂气体流路,第二燃料气体流路和第二氧化剂气体流路,并且流路在重叠中被设定为相同的相位 方向。 第二发电单元分别设置有第一燃料气体流路,第一氧化剂气体流路,第二燃料气体流路和第二氧化剂气体流路,其在重叠方向上被设定为相同相位,并且分别为 设定为与第一发电单元的流路的相位不同的相位。