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    • 133. 发明授权
    • Electrically conductive member for solid oxide fuel-stack
    • 用于固体氧化物燃料堆叠的导电构件
    • US07811717B2
    • 2010-10-12
    • US10574806
    • 2004-10-27
    • Kosaku FujinagaTakeshi SaitoToshiya AbeMotoyasu Miyao
    • Kosaku FujinagaTakeshi SaitoToshiya AbeMotoyasu Miyao
    • H01M8/02
    • H01M8/0232H01M8/12H01M8/2428H01M8/243H01M2008/1293
    • Disclosed is an electrically conductive member for electrically connecting a plurality of solid oxide fuel cells in series and/or parallel to assemble a fuel-cell stack. The electrically conductive member according to the present invention comprises a metal sheet having a three-dimensional porous structure of a continuous skeleton. The electrically conductive member according to the present invention is three-dimensionally strong and is highly elastic and resilient. Therefore, the thickness of the electrically conductive member can be easily re-regulated in the regulation of spacing between the fuel cells. Further, even after baking or power generation, the electrically conductive member is not sintered, and separation easily takes place in the folded interface, and, thus, excellent maintainability can be realized.
    • 公开了用于将多个固体氧化物燃料电池串联和/或并联电连接以组装燃料电池堆的导电构件。 根据本发明的导电构件包括具有连续骨架的三维多孔结构的金属片。 根据本发明的导电构件是三维强度并且具有高弹性和弹性的。 因此,在调节燃料电池之间的间隔时,可以容易地重新调节导电构件的厚度。 此外,即使在烘烤或发电之后,导电构件也不会烧结,并且在折叠界面中容易发生分离,因此可以实现优异的可维护性。
    • 138. 发明授权
    • Information-processing device
    • 信息处理设备
    • US07565698B2
    • 2009-07-21
    • US10984989
    • 2004-11-10
    • Hiroshi IsozakiTakeshi SaitoTatsuyuki MatsushitaTooru Kamibayashi
    • Hiroshi IsozakiTakeshi SaitoTatsuyuki MatsushitaTooru Kamibayashi
    • H04K1/00
    • H04L63/0407G06F21/10H04L63/0428H04L63/061H04N21/43615H04N21/835
    • An information-processing device includes a first interface configured to transmit content to a first communication unit through a network, a second interface configured to receive a first unique identification allocated to the first communication unit from a second communication unit and transmit a second unique identification allocated to the information-processing device to the second communication unit, an identification list configured to store at least one unique identification through the second interface and an identification judgment unit configured to determine whether the first unique identification received through the first interface is stored in the identification list, wherein when the identification judgment unit determines that the unique identification of the first communication unit is stored in the identification list, the first interface allows the content to be transmitted to the first communication unit.
    • 一种信息处理设备,包括:第一接口,被配置为通过网络向第一通信单元发送内容;第二接口,被配置为从第二通信单元接收分配给第一通信单元的第一唯一标识,并发送分配的第二唯一标识 向所述信息处理设备发送到所述第二通信单元,识别列表,被配置为通过所述第二接口存储至少一个唯一标识;以及识别判断单元,被配置为确定通过所述第一接口接收到的所述第一唯一标识是否存储在所述标识中 列表,其中当所述识别判断单元确定所述第一通信单元的唯一标识被存储在所述识别列表中时,所述第一接口允许所述内容被发送到所述第一通信单元。
    • 139. 发明申请
    • BLOWER DUCT
    • 鼓风机
    • US20090126147A1
    • 2009-05-21
    • US12360745
    • 2009-01-27
    • Satoshi NAKAZAWAMaki YamazakiTakeshi Saito
    • Satoshi NAKAZAWAMaki YamazakiTakeshi Saito
    • A47L5/14F04D29/44
    • F16L11/15A01G20/00A01G20/47
    • A portable-blower duct has a bendable portion whose inner peripheral surface is a cylindrical surface without any protrusions or recesses in a normal state or in an expanded state, that is, unless it is greatly curved. With this construction, no turbulence is generated in air passing through a tube, thereby making it possible to suppress pressure loss. Thus, the flow velocity of air guided through the duct is not reduced, thereby suppressing a deterioration in air blowing efficiency. Even when the tube is curved, the outer side of the curved portion is expanded, and the corresponding portion of the inner peripheral surface remains a smooth surface, thus making it possible to minimize the air pressure loss.
    • 便携式鼓风机管道具有可弯曲部分,其内周表面是圆柱形表面,在正常状态或膨胀状态下没有任何突出或凹陷,即除非它大大弯曲。 通过这种结构,在通过管的空气中不产生湍流,从而可以抑制压力损失。 因此,通过导管引导的空气的流速不降低,从而抑制送风效率的劣化。 即使管弯曲,弯曲部的外侧膨胀,内周面的对应部分保持光滑的表面,从而可以使空气压力损失最小化。
    • 140. 发明授权
    • Magnetic shielding door and magnetic shielding room
    • 磁屏蔽门和磁屏蔽室
    • US07501588B2
    • 2009-03-10
    • US11667868
    • 2005-10-18
    • Hideki NodaMasao MurakamiKoji UnoKentaro MatsushitaTakubi HamanoTakeshi SaitoYasushi Sato
    • Hideki NodaMasao MurakamiKoji UnoKentaro MatsushitaTakubi HamanoTakeshi SaitoYasushi Sato
    • H05K9/00
    • H05K9/0001E05G1/024E06B5/18
    • A magnetic shielding door (10) opens and closes a gate (16) of a magnetic shielding room. Magnetic members (15) made of a magnetic material are aligned at intervals on walls of the magnetic shielding room. Magnetic shielding forming members (27) are disposed to correspond to the respective magnetic members (15) and are made of a magnetic body that forms a magnetic shielding in corporation with the magnetic members (15). A movable mechanism (28) moves the magnetic shielding forming members (27) at the door closing position at which the gate (16) is closed. The movable mechanism (28) moves the magnetic shielding forming members (27) between a join position at which the magnetic members (15) and the corresponding magnetic shielding forming members (27) are joined to each other and a spaced-apart position at which the magnetic members (15) and the corresponding magnetic shielding forming members (27) are spaced apart.
    • 磁屏蔽门(10)打开和关闭磁屏蔽室的门(16)。 由磁性材料制成的磁性构件(15)在磁屏蔽室的壁上被间隔地排列。 磁屏蔽形成构件(27)设置成对应于各个磁性构件(15),并且由与磁性构件(15)一体形成磁屏蔽的磁体制成。 可移动机构(28)在门关闭位置的门关闭位置移动磁屏蔽形成构件(27)。 可移动机构(28)使磁屏蔽形成构件(27)在磁性构件(15)和相应的磁屏蔽形成构件(27)彼此接合的连接位置和间隔开的位置之间移动, 磁性构件(15)和相应的磁屏蔽形成构件(27)间隔开。