Fuel cell and method for manufacturing same
    3.
    发明授权
    Fuel cell and method for manufacturing same 有权
    燃料电池及其制造方法

    公开(公告)号:US08722277B2

    公开(公告)日:2014-05-13

    申请号:US13384615

    申请日:2010-08-04

    申请人: Takuya Hasegawa

    发明人: Takuya Hasegawa

    IPC分类号: H01M8/02 H01M8/10

    摘要: A fuel cell and its production method are provided to enable position adjustment at the time of provisional lamination of unit cells. In a fuel cell comprising a lamination of a membrane electrode assembly including anode and cathode electrode layers on both sides of an electrolyte membrane, and a separator, the fuel cell and its production method is characterized in that there is further provided a self-fusing seal material at an end portion of the membrane electrode assembly or the separator.

    摘要翻译: 提供一种燃料电池及其制造方法,用于在单位电池的临时层压时进行位置调整。 在包括在电解质膜的两侧包括阳极和阴极电极层的膜电极组件和隔膜的层叠体的燃料电池中,燃料电池及其制造方法的特征在于还提供自熔合密封 在膜电极组件或分离器的端部处的材料。

    FIXING STRUCTURE OF SEPARATE LEAF SPRING
    4.
    发明申请
    FIXING STRUCTURE OF SEPARATE LEAF SPRING 有权
    分离叶片固定结构

    公开(公告)号:US20140011410A1

    公开(公告)日:2014-01-09

    申请号:US14005470

    申请日:2012-06-22

    IPC分类号: H01R13/187

    CPC分类号: H01R13/187 H01R9/20

    摘要: A fitting cylinder section 11 of a female terminal main body 10 includes a first side plate 11a from which a columnar body 15 for a rivet protrudes as one in a plurality of side wall plates forming a square cylinder shape, a leaf spring 20 fixed to the fitting cylinder section 11 has a rivet insertion hole 21a into which the columnar body 15 for the rivet can be inserted, and the fitting cylinder section 11 has a structure in which the leaf spring 20 is fixed to an inner section thereof by performing the press-molding in the square cylinder shape section after rivet-retaining the leaf spring 20 to the first side plate 11a in a deployment shape and before performing the press-molding in the square cylinder shape.

    摘要翻译: 阴端子主体10的嵌合筒部11包括:第一侧板11a,用于铆钉的柱状体15从该第一侧板11a突出成形成方筒状的多个侧壁板中的一个;固定到 嵌合筒部11具有铆钉插入孔21a,铆钉用柱状体15可以插入其中,并且嵌合筒部11具有通过进行压制而将板簧20固定在其内部的结构, 在将板簧20以展开形状铆接固定到第一侧板11a之后并且在以圆筒形状进行加压成型之前,在方筒形部分中成型。

    Method for manufacturing gas diffusion layer for fuel cell
    5.
    发明授权
    Method for manufacturing gas diffusion layer for fuel cell 有权
    燃料电池用气体扩散层的制造方法

    公开(公告)号:US08557327B2

    公开(公告)日:2013-10-15

    申请号:US13390810

    申请日:2010-09-03

    IPC分类号: B05D5/12 B05D3/12 B05D1/28

    摘要: The invention is to provide a gas diffusion layer for fuel cells having excellent adaptability against load change by attaining a good balance between anti-dry-out properties and anti-flooding properties. The gas diffusion layer for fuel cells containing a substrate layer and an conductive fine particle layer is formed by coating a coating liquid for forming the conductive fine particle layer on at least one surface of a substrate for forming the substrate layer using a gravure roll and by a kiss coating. In coating of the coating liquid, a speed difference is generated between a line speed of transferring the substrate and a circumferential speed of the gravure roll, and apparent viscosity [η(Pa·s)] of the coating liquid as determined by type B viscosimeter satisfies the following relations: 1.0

    摘要翻译: 本发明提供一种燃料电池用气体扩散层,通过实现防干燥性能和抗淹水性能之间的良好平衡,具有优异的耐负荷变化适应性。 含有基材层和导电性微粒层的燃料电池用气体扩散层通过使用凹版辊在基材层的基板的至少一个表面上涂布形成导电性微粒层的涂布液而形成, 一个吻涂层。 在涂布液中,在B型粘度计测定的涂布液的转印速度和凹版滚筒的圆周速度之间产生速度差,涂布液的表观粘度[η(Pa·s)] 满足以下关系:1.0

    COMPONENT-EMBEDDED SUBSTRATE, AND METHOD OF MANUFACTURING THE COMPONENT- EMBEDDED SUBSTRATE
    6.
    发明申请
    COMPONENT-EMBEDDED SUBSTRATE, AND METHOD OF MANUFACTURING THE COMPONENT- EMBEDDED SUBSTRATE 有权
    组件嵌入式基板和制造分量嵌入式基板的方法

    公开(公告)号:US20130176701A1

    公开(公告)日:2013-07-11

    申请号:US13823700

    申请日:2010-10-01

    IPC分类号: H05K1/18 H05K3/32

    摘要: A component-embedded substrate includes an electrically insulating base (11) of resin, an electric or electronic embedded component (8) and a dummy embedded component (7) both embedded in the insulating base (11), a conductor pattern (18) formed on at least one side of the insulating base (11) and connected directly to or indirectly via a connection layer (6) to the embedded component (8) and the dummy embedded component (7), and a mark (10) formed on a surface of the dummy embedded component (7) and used as a reference when the conductor pattern (18) is formed, whereby positional accuracy of the conductor pattern (18) relative to the embedded component (8) can be improved.

    摘要翻译: 部件嵌入式基板包括树脂电绝缘基座(11),嵌入在绝缘基座(11)中的电气或电子嵌入式部件(8)和虚拟嵌入部件(7),形成有导体图案(18) 在所述绝缘基体(11)的至少一侧上并且直接连接到所述嵌入部件(8)和所述虚拟嵌入部件(7)的连接层(6)或间接连接,以及形成在所述绝缘基体 并且当形成导体图案(18)时用作参考,从而能够提高导体图案(18)相对于嵌入部件(8)的位置精度。

    EDGEWISE WOUND COIL MANUFACTURING DEVICE
    7.
    发明申请
    EDGEWISE WOUND COIL MANUFACTURING DEVICE 有权
    EDGEWISE缠绕线圈制造设备

    公开(公告)号:US20130056110A1

    公开(公告)日:2013-03-07

    申请号:US13696447

    申请日:2011-06-06

    IPC分类号: H01F41/06

    CPC分类号: H01F41/064 H01F41/082

    摘要: Disclosed is an edgewise wound coil manufacturing device for manufacturing an edgewise wound coil. The edgewise wound coil manufacturing device is provided with: a plurality of corners; a core having a recess formed between each pair of adjacent corners, and around which a flat wire is wrapped; a rotating part that forces the core to rotate around the central axis of the core; guide parts that hold the flat wire therebetween in the thickness direction, while guiding the flat wire in such a manner that the flat wire wraps around the core; a first moving part that forces at least one of the guide parts and the core to move in the approaching/receding direction of the other; and a controller that adjusts the amount that the first moving part moves such that the edgewise wound coil achieves the desired shape.

    摘要翻译: 公开了一种用于制造扁绕绕线圈的绕边卷绕线圈制造装置。 沿边卷绕线圈制造装置具有:多个角部; 具有在每对相邻拐角之间形成的凹部的芯体,并且在其周围包裹扁平线; 旋转部分,其迫使所述芯围绕所述芯的中心轴线旋转; 引导部件,其在厚度方向上保持扁平线之间,同时以扁平的线缠绕在芯上的方式引导扁平线; 第一移动部,其迫使所述引导部和所述芯中的至少一个在所述另一方的接近/后退方向上移动; 以及控制器,其调节第一移动部件移动的量使得沿边卷绕线圈达到期望的形状。

    Gas separator and operating method for the same
    8.
    发明授权
    Gas separator and operating method for the same 有权
    气体分离器和操作方法相同

    公开(公告)号:US07985279B2

    公开(公告)日:2011-07-26

    申请号:US11579822

    申请日:2005-05-16

    IPC分类号: B01D53/22

    CPC分类号: B01D53/22 H01M8/04126

    摘要: A gas separator having excellent humidifying performance, pressure loss, volume efficiency, and durability humidifies gases used in an on-vehicle fuel cell. The gas separator has upper and lower surfaces of pleat elements of a pleat molding covered by a plate having intake and exhaust ports. The pleat molding is formed by pleating a compound membrane formed of a gas separating membrane and at least one layer of permeable reinforcement material. The pleat element is formed by disposing a reinforcement frame at the outer side part of the molding. The ratio (R=L/H) of a shortest distance (L) between the intake and exhaust ports to a height (H) of the pleat molding is 0.1 to 7.0, and the ratio (W/Le) of the width (W) to the length (Le) of the pleat molding is 0.3 to 10.0. The gas separator operates at a volume flow ratio of 200 or higher.

    摘要翻译: 具有优异的加湿性能,压力损失,体积效率和耐久性的气体分离器加湿车载燃料电池中使用的气体。 气体分离器具有由具有进气和排气口的板覆盖的褶皱成形体的褶皱元件的上表面和下表面。 褶皱成型通过对由气体分离膜和至少一层可渗透增强材料形成的复合膜进行打褶而形成。 褶皱元件通过在模制品的外侧部分设置加强框架而形成。 进气口和排气口之间的最短距离(L)与褶皱成型体的高度(H)的比(R = L / H)为0.1〜7.0,宽度(W / Le) )与褶皱成型体的长度(Le)为0.3〜10.0。 气体分离器以200或更高的体积流量比运行。

    Gas Separation Membrane
    9.
    发明申请
    Gas Separation Membrane 有权
    气体分离膜

    公开(公告)号:US20090301307A1

    公开(公告)日:2009-12-10

    申请号:US12298447

    申请日:2007-04-25

    IPC分类号: B01D53/22 B01D67/00

    摘要: A gas separation membrane has: a polymeric microporous membrane which has a polyolefin as a main component, and which is manufactured by wet phase separation process, and has a porosity of 20 to 80%, an average pore diameter of 1 to 100 nm and a piercing strength at 100° C. of 2 to 50 N; and a gas-separating thin film, which is provided on at least one surface, and/or the interior of the polymeric microporous membrane, and which comprises a fluorine-containing gas-separating resin as a main component, and has an average thickness of 0.01 μm to less than 0.4 μm. The gas separation membrane having an oxygen-nitrogen separation factor not smaller than 1.4.

    摘要翻译: 气体分离膜具有聚烯烃作为主要成分的聚合物微孔膜,其通过湿相分离法制造,孔隙率为20〜80%,平均孔径为1〜100nm, 刺穿强度为100°C,2〜50 N; 以及气体分离薄膜,其设置在聚合物微孔膜的至少一个表面和/或内部,并且包含含氟气体分离树脂作为主要成分,并且具有平均厚度 0.01毫米至小于0.4毫米。 具有不小于1.4的氧 - 氮分离因子的气体分离膜。

    Female terminal
    10.
    发明授权
    Female terminal 失效
    女性终端

    公开(公告)号:US07465199B2

    公开(公告)日:2008-12-16

    申请号:US11945293

    申请日:2007-11-27

    IPC分类号: H01R13/187

    摘要: A female terminal includes a tubular portion which has a square tubular shape and receives a male terminal therein and a resilient member which is provided in the tubular portion so as to urge the male terminal toward an inner surface of the tubular portion. The resilient member includes a curved portion formed by a strip-like electrically-conductive metal sheet and a pair of mounting portions integrally formed respectively at widthwise-opposite side edges of the curved portion and extending away from each other. The tubular portion has a pair of side walls opposed to each other and has a pair of through windows provided on the side walls respectively, the pair of mounting portions being inserted in the pair of through windows respectively. At least part of each of the mounting portions located respectively in the through windows is greater in thickness than the other portion of each of the mounting portions.

    摘要翻译: 阴端子包括管状部分,其具有方形管状并在其中容纳阳端子,并且弹性构件设置在管状部分中,以将阳端子朝向管状部分的内表面推动。 弹性构件包括由条状导电金属片形成的弯曲部分和分别在弯曲部分的宽度方向相对的侧边缘处一体地形成并彼此延伸的一对安装部分。 管状部分具有彼此相对的一对侧壁,并且具有分别设置在侧壁上的一对通孔,该对安装部分分别插入该对通孔中。 分别位于通孔中的每个安装部分的至少一部分的厚度大于每个安装部分的其他部分。