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    • 65. 发明授权
    • Mode changing apparatus
    • 模式切换装置
    • US4547823A
    • 1985-10-15
    • US480513
    • 1983-03-30
    • Masao RiKenji OhharaYoshinori YamamotoAkira TakadaHisanori WatanabeYasuo Osada
    • Masao RiKenji OhharaYoshinori YamamotoAkira TakadaHisanori WatanabeYasuo Osada
    • G11B15/10G11B15/44G11B15/02
    • G11B15/10G11B15/442
    • A feather-touch mode changer having low power requirements and being capable of selectively providing a plurality of modes of operation of a tape recording/reproducing apparatus, has two changing mechanisms which are each of the type that includes a rotatable changing gear with a toothless gap, a selectively actuable trigger for causing initial angular displacement of the changing gear from an inactive position in which the toothless gap faces a drive gear to an actuating position in which the changing gear engages the drive gear, and an actuating lever that moves in a response to the rotation of the changing gear by the drive gear. The two changing mechanisms are selectively actuable, and a single drive gear is positioned for engagement with both changing gears. Each of the two changing mechanisms has associated with it a selectively energizable electromagnetic device and a locking lever that moves into a locking position in response to movement of the respective actuating lever. Each electromagnetic device is energized upon actuation of the respective trigger means to magnetically hold the respective locking lever in its locking position. The mode changing apparatus also includes mode establishing mechanisms comprising a plurality of cooperating gears and levers that are engaged by the actuating and locking levers upon selective operation of the changing mechanisms to establish FWD, FF, REW, PAUSE and ADS (Automatic Detection of Silence) modes of operation of the tape recording/reproducing apparatus.
    • 具有低功率要求并且能够选择性地提供磁带记录/再现装置的多种操作模式的羽毛触摸模式更换器具有两种改变机构,每种类型包括具有无齿间隙的可旋转变速齿轮 ,用于使变速齿轮从其中无齿间隙面对驱动齿轮的非活动位置到变速齿轮接合驱动齿轮的致动位置的初始角位移的可选择性致动扳机以及响应中移动的致动杆 由变速齿轮由驱动齿轮旋转。 两个更换机构是选择性地致动的,并且单个驱动齿轮被定位成与两个变速齿轮啮合。 两个改变机构中的每一个与其相关联是选择性激励电磁装置和锁定杆,其响应于相应致动杆的移动而移动到锁定位置。 每个电磁装置在相应的触发装置致动时被通电,以将相应的锁定杆磁性地保持在其锁定位置。 模式改变装置还包括模式建立机构,其包括多个协作齿轮和杠杆,所述多个协作齿轮和杠杆在选择性地操作改变机构时被致动和锁定杆接合以建立FWD,FF,REW,PAUSE和ADS(静音的自动检测) 磁带记录/再现装置的操作模式。
    • 67. 发明授权
    • Fuel cell and fuel cell separator
    • 燃料电池和燃料电池分离器
    • US08557448B2
    • 2013-10-15
    • US11667876
    • 2006-01-12
    • Yoshinori YamamotoYuichi YagamiJiro AizakiJunichi ShirahamaSogo GotoTsuyoshi TakahashiTomokazu Hayashi
    • Yoshinori YamamotoYuichi YagamiJiro AizakiJunichi ShirahamaSogo GotoTsuyoshi TakahashiTomokazu Hayashi
    • H01M8/00H01M8/04H01M8/06H01M2/40
    • H01M8/0265H01M8/0206H01M8/0228H01M8/0247H01M8/0254H01M8/0258H01M8/0267H01M8/04029H01M8/241H01M8/2457H01M8/2483
    • The fuel cell of the invention includes an electrolyte assembly, and a separator having one face as a gas flow path-forming face with a gas flow path formed thereon to allow flow of a reactive gas and the other face, which is reverse to the one face, as a refrigerant flow path-forming face with a refrigerant flow path formed thereon to allow flow of a refrigerant. The gas flow path-forming face of the separator has multiple linear gas flow paths that are arranged in parallel to one another, and a gas flow path connection structure that divides the multiple linear gas flow paths into plural linear gas flow path groups and connects at least part of the plural linear gas flow path groups in series. The refrigerant flow path-forming face has multiple linear refrigerant flow paths that are formed as a reverse structure of the multiple linear gas flow paths on the gas flow path-forming face, and a refrigerant flow path connection structure that is formed as a reverse structure of the gas flow path connection structure on the gas flow path-forming face to connect the multiple linear refrigerant flow paths in parallel.
    • 本发明的燃料电池包括一个电解液组件和一个隔板,一个表面作为一个气流通道形成面,在其上形成一个气流通道,以允许一个反应气体和另一个面相反流动 作为制冷剂流路形成面,其上形成有制冷剂流路,以允许制冷剂流动。 分离器的气体流路形成面具有彼此平行布置的多个线性气体流动路径,以及气体流路连接结构,其将多个线性气体流动路径分成多个线性气体流动路径组并连接在 多个线性气体流路组的至少一部分串联。 制冷剂流路形成面具有形成为气体流路形成面上的多个线性气体流路的相反结构的多个线性制冷剂流路和形成为反向结构的制冷剂流路连接结构 的气体流路连接结构在气体流路形成面上并联连接多个线性制冷剂流路。
    • 68. 发明授权
    • Cell laminate and fuel cell provided with the same
    • 电池层压板和燃料电池提供相同的
    • US08298715B2
    • 2012-10-30
    • US12224373
    • 2007-03-07
    • Tomokazu HayashiYoshinori YamamotoYuichi YagamiJiro AizakiJunichi Shirahama
    • Tomokazu HayashiYoshinori YamamotoYuichi YagamiJiro AizakiJunichi Shirahama
    • H01M2/02
    • H01M8/0273H01M8/0247H01M8/0256H01M8/0258H01M8/242H01M8/2483H01M2008/1095
    • There is realized a structure particularly suitable for inhibiting deformation of separators having a structure where the shapes of projections and recesses are inverted from each other on the front side and the back side of each separator as in a pressed metal separator. Between adjacent separators, there is formed either a power generation region where MEAs and frame members for holding at least a part of the MEAs are inserted or a refrigerant flow region where neither the MEAs nor the frame members are inserted. A deformation inhibiting region for inhibiting deformation of each separator is formed by a projection provided on the separator. Also, a projection for inhibiting the separator from deforming at the deformation inhibiting region or nearby is formed on each frame member. The projection is projected toward the back side of the deformation inhibiting region, where the deformation inhibiting region is a recess on the back side of the separator.
    • 实现了一种特别适合于抑制如在压制金属分离器中每个隔板的前侧和后侧上的突起和凹陷的形状彼此反转的结构的隔板的变形的结构。 在相邻的分离器之间形成有一个发电区域,其中插入用于保持至少一部分MEA的MEA和框架构件,或者不插入MEA和框架构件的制冷剂流动区域。 通过设置在隔板上的突起来形成用于抑制每个隔板变形的变形抑制区域。 此外,在每个框架构件上形成用于抑制隔板在变形抑制区域或附近变形的突起。 突起朝向变形抑制区域的背面突出,其中变形抑制区域是隔板背侧的凹部。