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    • 1. 发明申请
    • FUEL CELL
    • 燃料电池
    • US20090081486A1
    • 2009-03-26
    • US11915631
    • 2006-05-26
    • Shinya HigashiYasutada NakagawaTakahiro TeradaYuuichi Yoshida
    • Shinya HigashiYasutada NakagawaTakahiro TeradaYuuichi Yoshida
    • H01M8/00
    • H01M8/04201H01M8/023H01M8/0258H01M8/0263H01M8/04186H01M8/1011Y02E60/523
    • A fuel cell according to the invention includes: a fuel supply section including a diffusion section configured to diffuse fuel supplied from a fuel supply port in an in-plane direction and an aperture plate having a plurality of apertures configured to emit the fuel from the diffusion section; an oxygen introducing section configured to introduce oxygen from outside; and a power generating section configured to generate electric power by the fuel supplied from the fuel supply section and oxygen supplied from the oxygen introducing section. Aperture ratio of the plurality of apertures provided in the aperture plate has a substantially radial distribution in the in-plane direction such that the aperture ratio is small near the fuel supply port and increases with distance from the fuel supply port. This enables provision of a fuel cell of the spontaneous respiration type where fuel can be uniformly supplied to achieve efficient power generation.
    • 根据本发明的燃料电池包括:燃料供应部分,其包括扩散部分,其被配置为扩散从燃料供给口在面内方向供应的燃料;以及孔板,其具有多个孔,其被配置为从所述扩散发射燃料 部分; 氧气引入部,其构造成从外部引入氧; 以及发电部,被配置为通过从所述燃料供给部供给的燃料和从所述氧气导入部供给的氧来发电。 设置在孔板中的多个孔的孔径比在面内方向上具有基本上径向的分布,使得在燃料供给口附近开口率小,并且随着与燃料供给口的距离而增加。 这能够提供能够均匀地供应燃料以实现有效发电的自发呼吸型燃料电池。
    • 7. 发明申请
    • Fuel cell seal and fuel cell
    • 燃料电池密封和燃料电池
    • US20080248357A1
    • 2008-10-09
    • US11812542
    • 2007-06-20
    • Takahiro TeradaYasutada NakagawaYuji SasakiYuichi Yoshida
    • Takahiro TeradaYasutada NakagawaYuji SasakiYuichi Yoshida
    • H01M2/08H01M8/10
    • H01M8/0276H01M8/0284H01M2008/1095
    • A fuel cell seal includes: a first seal member having a first protrusion in a major surface thereof; and a second seal member having a recess in a major surface thereof. The recess is engageable with at least part of the first protrusion. A fuel cell includes: a solid electrolytic film; a first and second seal member placed on both major surface sides of the solid electrolytic film, respectively, and opposed to each other; a fuel electrode placed on a side of the first seal member, the side being opposite to the solid electrolytic film; and an oxidizer electrode placed on a side of the second seal member, the side being opposite to the solid electrolytic film. One of the first and the second seal members has a first protrusion. Other of the first and the second seal members has a recess engageable with at least part of the first protrusion. The first and the second seal members are engaged with each other across the solid electrolytic film.
    • 燃料电池密封件包括:第一密封件,其主表面具有第一突起; 以及在其主表面上具有凹部的第二密封构件。 所述凹部可与所述第一突起的至少一部分接合。 燃料电池包括:固体电解膜; 分别放置在固体电解质膜的两个主表面侧并彼此相对的第一和第二密封构件; 设置在所述第一密封部件的与所述固体电解质膜相反的一侧的燃料电极; 以及放置在第二密封构件的一侧的氧化剂电极,该固体电解膜的一侧相对。 第一密封构件和第二密封构件中的一个具有第一突起。 第一密封构件和第二密封构件中的另一个具有可与第一突起的至少一部分接合的凹部。 第一密封构件和第二密封构件在固体电解质膜上彼此接合。
    • 8. 发明申请
    • Silicon microphone and manufacturing method therefor
    • 硅麦克风及其制造方法
    • US20080019543A1
    • 2008-01-24
    • US11825057
    • 2007-07-03
    • Yukitoshi SuzukiSeiji HiradeTakahiro Terada
    • Yukitoshi SuzukiSeiji HiradeTakahiro Terada
    • H04R7/06H04R31/00
    • H04R19/005H04R31/00Y10T29/49005
    • In a silicon microphone, a corrugation is formed in a conductive layer between a center portion forming a diaphragm and a periphery, wherein the corrugation is formed on an imaginary line connecting a plurality of supports formed in a circumferential direction of the conductive layer, whereby it is possible to increase the rigidity of the conductive layer; hence, distortion or deformation may hardly occur in the conductive layer irrespective of variations of stress applied thereto. Alternatively, a planar portion is continuously formed on both sides of a step portion in the plate so as to increase its rigidity, wherein a plurality of holes are uniformly formed and arranged in the planar portion by avoiding the step portion. Thus, it is possible to realize a high sensitivity and uniformity of performance and characteristics in the silicon microphone.
    • 在硅麦克风中,在形成隔膜的中心部分和周边之间的导电层中形成波纹,其中波纹形成在连接形成在导电层的圆周方向上的多个支撑件的假想线上,由此 可以增加导电层的刚性; 因此,无论施加于其上的应力的变化如何,导电层中几乎不发生变形或变形。 或者,平板部分连续地形成在板的台阶部分的两侧,从而增加其刚性,其中通过避免台阶部分将多个孔均匀地形成并布置在平面部分中。 因此,可以实现硅麦克风的高灵敏度和性能和特性的均匀性。