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    • 45. 发明申请
    • Fuel Cell
    • 燃料电池
    • US20070218341A1
    • 2007-09-20
    • US11587272
    • 2005-04-14
    • Keiko KushibikiFuminori SatouNaoki HaraYasushi NakajimaShigeo Ibuka
    • Keiko KushibikiFuminori SatouNaoki HaraYasushi NakajimaShigeo Ibuka
    • H01M8/02H01M8/24
    • H01M8/04089H01M8/0247H01M8/1231H01M8/2425H01M8/243H01M8/2484
    • An aspect of the present invention provides a fuel cell that includes, hollow structural bodies each provided with an internal space for reacting a fuel gas and an oxidant gas, each hollow structural body including, a separator having a perimeter wall section that follows along a rim, a cell plate having an electricity-generating cell having its outer perimeter joined to the separator such that a space for a gas to flow through is formed between the separator and the cell plate, a gas supply manifold to supply one of the reactant gases, a gas discharge manifold to discharge the reactant gas, and a gas introducing flow passage to introduce said reactant gas from the gas supply manifold to the perimeter wall section of the separator, wherein the reactant gas introduced into the gas introducing passage flows from the vicinity of the perimeter wall section of the separator to the gas discharge manifold.
    • 本发明的一个方面提供一种燃料电池,其包括中空结构体,每个中空结构体具有用于使燃料气体和氧化剂气体反应的内部空间,每个中空结构体包括:具有沿着边缘的周边壁部分的隔板 ,具有发电单元的单元板,其发电单元的外周连接到隔板,使得在隔板和电池板之间形成用于流过的气体的空间,供应歧管以供应一种反应气体, 用于排出反应气体的气体排出歧管,以及气体导入流路,将来自气体供给歧管的反应气体导入分离器的周壁部,其中,导入气体导入通路的反应气体从 分离器的周边壁部分到排气歧管。
    • 49. 发明授权
    • Roof molding mounting structure for vehicle
    • 车顶屋顶成型安装结构
    • US06877798B2
    • 2005-04-12
    • US10312580
    • 2001-07-06
    • Yasushi NakajimaKatsumi Hisada
    • Yasushi NakajimaKatsumi Hisada
    • B62D25/06B60R13/04
    • B60R13/04
    • A mounting groove (G) defined in a joint area between a roof panel (R) and a side structure (S) includes a first rising wall (11) extending downwards from a side edge of a roof panel body (10) with no undercut provided therein, and a second rising wall (13) extending downwards from a side edge of the side structure (S) and inclined so as to be spaced apart from the first rising wall (11) on the side of a lower end of the second rising wall. A roof molding (M) includes a lid (17), a base portion (18) having a notch (22) defined in a side opposed to the first rising wall (11), and a pair of lips (19, 20) extending laterally from a lower end of the base portion (18) and resiliently abutting against the first and second rising walls (11, 13). The side structure (S) has a step (21) against which the lid (17) of the roof molding (M) is capable of abutment. Thus, it is possible to reliably prevent the falling-off of the roof molding (M) from the mounting groove (G), while ensuring the workability for the roof panel (R).
    • 限定在顶板(R)和侧结构(S)之间的接合区域中的安装槽(G)包括从顶板主体(10)的侧边缘向下延伸而没有底切的第一升降壁(11) 以及从侧面结构(S)的侧边缘向下延伸的第二升降壁(13),并且倾斜以与第二升降壁(11)在第二升降壁的下端侧相隔开 上升墙。 屋顶成型体(M)包括盖(17),具有限定在与第一升降壁(11)相对的一侧的切口(22)的基部(18),以及一对唇部(19,20) 从基部(18)的下端横向地弹性地抵靠第一和第二升起壁(11,13)。 侧面结构(S)具有台阶(21),屋顶成型体(M)的盖子(17)能与其抵接。 因此,能够可靠地防止顶棚成形体(M)从安装槽(G)脱落,同时确保屋顶板(R)的加工性。
    • 50. 发明授权
    • Method and apparatus for forming light absorption film
    • 光吸收膜形成方法及装置
    • US06730351B2
    • 2004-05-04
    • US10167389
    • 2002-06-13
    • Yasushi Nakajima
    • Yasushi Nakajima
    • C23C1600
    • C23C14/243C23C14/543
    • A method and apparatus is provided for forming a light absorption film, composed of a porous metallic vapor deposited film with crystalline grown up in a dendrite structure, in a vacuum vapor deposition. A targeted time profile of applied electric power is obtained from electric current flowing through an evaporating boat 9 and a voltage potential thereof that enable a proper film quality to be realized with the evaporating boat using a resistive-heating technique and is preliminarily measured and stored in a computer 17 for controlling current electric power, obtained by electric current currently flowing through the evaporating boat and a voltage thereof currently appearing during a current vapor deposition process, so as to match the targeted time profile of the applied electric power. Under a condition where a desired light absorption film is obtained, since the amount of applied electric power correlated with fluctuations in an evaporating speed falls in a deviation range of approximately ±5%, a strong relationship exists between electric power applied to the evaporating boat and a quality of a resulting deposited film. Accordingly, accurately realizing an appropriately applied electric power that is preliminarily and experimentally obtained enables proper control of a vapor deposition speed, resulting in formation of a desired light absorption film in a stable and easy manner.
    • 提供了一种在真空气相沉积中形成光吸收膜的方法和装置,该光吸收膜由多孔金属气相沉积膜和在枝晶结构中长大的结晶构成。 通过流过蒸发舟9的电流获得施加电力的目标时间曲线及其电压电位,其能够利用电阻加热技术利用蒸发舟来实现适当的膜质量,并且被预先测量并存储在 用于控制通过当前流过蒸发舟的电流获得的电流的计算机17及其在当前气相沉积过程中当前出现的电压,以便匹配所施加的电力的目标时间曲线。 在获得所需的光吸收膜的条件下,由于与蒸发速度的波动相关的施加电力的量落在大约±5%的偏差范围内,所以施加到蒸发舟的电力和 所得淀积膜的质量。 因此,准确地实现了预先实验获得的适当施加的电力能够适当地控制蒸镀速度,从而以稳定且容易的方式形成期望的光吸收膜。