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    • 1. 发明授权
    • Fuel cell device
    • 燃料电池装置
    • US06426160B1
    • 2002-07-30
    • US09533871
    • 2000-03-24
    • Hideo HaginoTakashi YasuoYasuo Miyake
    • Hideo HaginoTakashi YasuoYasuo Miyake
    • H01M802
    • H01M8/02H01M8/0265H01M8/04156H01M8/2465H01M8/2483
    • A fuel cell device is provided and includes a plurality of cell units arranged in superposed layers and each comprising a cell having an anode formed on one surface of an electrode member and a cathode formed on the other surface of the electrode member, a fuel-side-plate having a fuel chamber for passing a fuel therethrough, and an oxidant-side-plate having an oxidant chamber for passing an oxidant gas therethrough, an oxidant supply channel for supplying the oxidant gas to the oxidant chamber and an oxidant discharge channel for releasing to the outside air an oxidant exhaust gas discharged from the oxidant chamber, the cell being sandwiched between the plates. The oxidant discharge channel has a first opening in communication with the oxidant chamber and a second opening in communication with the outside air, the second opening being smaller than the first opening in width.
    • 提供了一种燃料电池装置,包括以重叠的方式配置的多个电池单元,每个电池单元包括形成在电极构件的一个表面上的阳极和形成在电极构件的另一个表面上的阴极的电池单元 具有用于使燃料通过的燃料室的板和具有用于使氧化剂气体通过的氧化剂室的氧化剂侧板,用于向氧化剂室供给氧化剂气体的氧化剂供给路径和用于释放氧化剂排出通道 向外部空气供给从氧化剂室排出的氧化剂废气,电池被夹在板之间。 氧化剂排出通道具有与氧化剂室连通的第一开口和与外部空气连通的第二开口,第二开口小于第一开口的宽度。
    • 2. 发明授权
    • Fuel cell system
    • 燃料电池系统
    • US06503650B1
    • 2003-01-07
    • US09607119
    • 2000-06-29
    • Takashi YasuoYasuo Miyake
    • Takashi YasuoYasuo Miyake
    • H01M804
    • H01M8/04291H01M8/04156H01M8/2485
    • A fuel cell system, comprising: (A) a cell multilayer element that is formed by stacking unit cell structures in layers, a unit cell structure including: a cell that includes a cathode, an anode, and electrolyte sandwiched between the cathode and the anode an oxidant channel unit with a plurality of oxidant channels that cross the cathode and enable oxidant to be supplied to the cathode; and a fuel channel unit with a plurality of fuel channels that cross the anode and enables fuel to be supplied to the anode; (B) oxidant supplying means for supplying the oxidant to the oxidant channels; and (C) fuel supplying means for supplying the fuel to the fuel channels, wherein the oxidant supplying means includes first switching means for reversing a flow direction of the oxidant in at least one of the oxidant channels and/or the fuel supplying means includes second switching means for reversing a flow direction of the fuel in at least one of the fuel channels.
    • 一种燃料电池系统,包括:(A)通过层叠单元电池结构形成的电池多层元件,单元电池结构,包括:包含阴极,阳极和夹在所述阴极和所述阳极之间的电解质的电池 具有多个氧化剂通道的氧化剂通道单元,所述氧化剂通道穿过阴极并使氧化剂能够供应到阴极; 以及具有多个燃料通道的燃料通道单元,所述多个燃料通道穿过所述阳极并且能够将燃料供应到所述阳极; (B)用于将氧化剂供给到氧化剂通道的氧化剂供给装置; 和(C)用于向燃料通道供应燃料的燃料供应装置,其中氧化剂供给装置包括用于反转至少一个氧化剂通道和/或燃料供给装置中的氧化剂的流动方向的第一切换装置,包括第二 用于使至少一个燃料通道中的燃料的流动方向反转的切换装置。
    • 4. 发明授权
    • Cell unit for fuel cells
    • 燃料电池单元
    • US06180274B2
    • 2001-01-30
    • US09156388
    • 1998-09-18
    • Yasunori YoshimotoTakashi YasuoYasuo MiyakeKoji Nishio
    • Yasunori YoshimotoTakashi YasuoYasuo MiyakeKoji Nishio
    • H01M200
    • H01M8/0271H01M8/0204H01M8/04119H01M8/241H01M8/2457H01M8/2483H01M2300/0082Y02P70/56
    • A cell unit for use in fuel cells of the type using an electrode portion having an anode formed of a plate or film on one surface of an electrolyte and a cathode formed of a plate or film on the other surface. An anode side plate of the invention has stepped portions to form recesses which accommodate the electrode and provide an anode side chamber facing the anode. A cathode side plate having a cathode side chamber facing the cathode is also accommodated in the recessed portions of the anode side plate. A fuel supply manifold and a fuel discharge manifold can extend through the stepped portions. Use of such cell units reduces the number of seal members required between fuel or oxidant manifolds when cell units are stacked to form a fuel cell stack. Such reduction in seal members simplifies fabrication of the units and renders the cell unit easier to maintain and repair.
    • 一种用于燃料电池的电池单元,其使用在电解质的一个表面上具有由板或膜形成的阳极的电极部分和在另一表面上由板或膜形成的阴极。 本发明的阳极侧板具有阶梯部分以形成容纳电极的凹槽,并提供面向阳极的阳极侧室。 具有与阴极相对的阴极侧室的阴极侧板也容纳在阳极侧板的凹部中。 燃料供给歧管和燃料排放歧管可以延伸穿过阶梯部分。 使用这种电池单元减少当电池单元堆叠形成燃料电池堆时在燃料或氧化剂歧管之间所需的密封构件的数量。 密封件的这种减少简化了单元的制造,并且使得电池单元更容易维护和修理。
    • 7. 发明授权
    • Fuel cell having water permeability adjustment capability
    • 具有透水性调节能力的燃料电池
    • US06365293B1
    • 2002-04-02
    • US09599198
    • 2000-06-22
    • Takahiro IsonoYasuo MiyakeAkira HamadaMinoru KanekoKunihiro Nakato
    • Takahiro IsonoYasuo MiyakeAkira HamadaMinoru KanekoKunihiro Nakato
    • H01M810
    • H01M8/04291H01M8/1007
    • The object of the present invention is to provide fuel cell including a cell that is formed by sandwiching solid polymer membrane between an anode and a cathode that generates electricity with stability and high performance by evenly moistening the solid polymer membrane. For this purpose, in a gas diffusion layer 24, which is positioned adjacent to a cathode catalyst layer 22, the content of fluororesin in an area on the side of the entrance for the oxidizer is set to be higher than in another area on the side of the exit so that the water repellency in the entrance side area is higher than in the exit side area. As a result, a water permeation suppressing part 24A, where the water permeability is relatively low, is formed in the area on the entrance side, while a water permeable part 24B, where the water permeability is relatively high, is formed in the area on the exit side.
    • 本发明的目的是提供一种燃料电池,其包括通过将固体聚合物膜夹在阳极和阴极之间而形成的电池,其通过均匀润湿固体聚合物膜而稳定且高性能地发电。 为此,在与阴极催化剂层22相邻的气体扩散层24中,氧化剂入口侧的区域中的氟树脂的含量设定为高于侧面的其他区域 使得入口侧区域中的防水性高于出口侧区域。 结果,在入口侧的区域中形成透水性相对较低的透水抑制部24A,而在透水性相对较高的水分透过部24B形成在 出口侧。
    • 8. 发明授权
    • Female terminal
    • 女性终端
    • US5975963A
    • 1999-11-02
    • US91904
    • 1998-06-26
    • Mitsutoshi HiguchiToshikazu MizutaniSatoru ImaedaYasuo MiyakeTakehiko NiwaHaruo Shimura
    • Mitsutoshi HiguchiToshikazu MizutaniSatoru ImaedaYasuo MiyakeTakehiko NiwaHaruo Shimura
    • H05K1/18H01R4/02H01R12/55H01R12/58H01R13/11H01R13/115H01R11/22
    • H01R4/028H01R12/58H01R13/11H01R13/113
    • A female terminal has a structure that does not allow molten solder to close a pipe section into which male terminal is inserted. Notched recessed sections (9) are oppositely formed at the lower ends of the side faces (3a and 3a) of a female terminal (1). The female terminal (1) is locked by horizontally opening locking legs (7) protruded from the rear surface of a printed wiring board (11) from an inserting hole (12). In such a state, the rear surface of the board is dipped in molten solder (21). When the board (11), is pulled up from the molten solder (12), the solder (21) closing the pipe section (2) in a bridge-like form is turned to droplets and drops from the recessed section (9), because the wettability of the pipe section (2) with the solder (21) is lowered and the adhesion is weakened due to the recessed sections (9). The remaining molten solder (21) attaches to the peripheral edge of the end of the pipe section (2) other than the recessed sections (9) due to the surface tension and solidifies.
    • PCT No.PCT / JP96 / 03827 Sec。 371日期:1998年6月26日 102(e)日期1998年6月26日PCT 1996年12月24日PCT公布。 出版物WO97 / 24910 日期1997年7月10日母端子具有不允许熔融焊料封闭插入阳端子的管段的结构。 在凹形端子(1)的侧面(3a和3a)的下端形成有凹口的凹部(9)。 通过从插入孔(12)水平打开从印刷电路板(11)的后表面突出的锁定腿(7),阴端子(1)被锁定。 在这种状态下,将板的后表面浸入熔融焊料(21)中。 当板(11)从熔融焊料(12)拉起时,将管状部分(2)以桥状形式封闭的焊料(21)从凹部(9)转向液滴和滴落, 因为具有焊料(21)的管部(2)的润湿性降低,并且由于凹部(9)而导致的粘接力减弱。 剩余的熔融焊料(21)由于表面张力而附着到除了凹部(9)之外的管部(2)的端部的周边边缘并固化。