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    • 1. 发明申请
    • FUEL CARTRIDGE
    • 燃料盒
    • WO2009027767A8
    • 2009-05-28
    • PCT/IB2007004689
    • 2007-01-26
    • SCRIPTO TOKAI INCTOKAI CORPNAKAMURA YASUAKI
    • NAKAMURA YASUAKI
    • H01M8/02
    • H01M8/04208G05D16/0608
    • The existing problem is supplying fuel at a fixed flow rate to a fuel cell, and moreover, miniaturization of the device in which the fuel cell is loaded, in a fuel cartridge for a fuel cell. The fuel cartridge for a fuel cell 1 is equipped with a container main body 2 that is equipped with a connection part 22 that connects to the fuel cell, and houses the fuel F that is supplied to the fuel cell in its interior, and a push out means P for pushing out the fuel F, and a valve 4 that has a supply port 41a for supplying fuel to the fuel cell, and that opens the supply port 41a in response to the operation connecting the container main body 2 tothe fuel cell. On the connection part 22 there is provided a pressure regulating mechanism 5, one end of which communicates with the valve 4, and the other end of which communicates with the inside of the container main body 2, and that causes the fuel F that is housed in said interior to flow out to the valve 4, by regulating to a secondary pressure lower than the primary pressure inside the container main body 2.
    • 存在的问题是向燃料电池以固定的流量供应燃料,此外,在燃料电池的燃料盒中小型化装载有燃料电池的装置。 燃料电池用燃料盒1具备容器主体2,该容器主体2具备与燃料电池连接的连接部22,收容向燃料电池的内部供给的燃料F, 用于推出燃料F的排出装置P以及具有用于向燃料电池供应燃料的供应口41a的阀4,并且响应于将容器主体2连接到燃料电池的操作而打开供应口41a。 在连接部22上设有压力调节机构5,该压力调节机构5的一端与阀4连通,另一端与容器主体2的内部连通,并且使容纳的燃料F 通过调节至低于容器主体2内的一次压力的二次压力而在所述内部流出至阀4。
    • 2. 发明申请
    • FUEL CARTRIDGE
    • 燃料盒
    • WO2009027767A2
    • 2009-03-05
    • PCT/IB2007004689
    • 2007-01-26
    • SCRIPTO TOKAI INCTOKAI CORPNAKAMURA YASUAKI
    • NAKAMURA YASUAKI
    • H01M8/02
    • H01M8/04208G05D16/0608
    • The existing problem is supplying fuel at a fixed flow rate to a fuel cell, and moreover, miniaturization of the device in which the fuel cell is loaded, in a fuel cartridge for a fuel cell. The fuel cartridge for a fuel cell 1 is equipped with a container main body 2 that is equipped with a connection part 22 that connects to the fuel cell, and houses the fuel F that is supplied to the fuel cell in its interior, and a push out means P for pushing out the fuel F, and a valve 4 that has a supply port 41a for supplying fuel to the fuel cell, and that opens the supply port 41a in response to the operation connecting the container main body 2 tothe fuel cell. On the connection part 22 there is provided a pressure regulating mechanism 5, one end of which communicates with the valve 4, and the other end of which communicates with the inside of the container main body 2, and that causes the fuel F that is housed in said interior to flow out to the valve 4, by regulating to a secondary pressure lower than the primary pressure inside the container main body 2.
    • 现有的问题是将燃料以固定的流量提供给燃料电池,此外,将装有燃料电池的装置的小型化在燃料电池的燃料盒中。 用于燃料电池1的燃料盒装备有容器主体2,容器主体2配备有连接到燃料电池的连接部22,并且容纳在其内部供应到燃料电池的燃料F, 用于推出燃料F的排出装置P和具有用于向燃料电池供应燃料的供给口41a的阀4,并且响应于将容器主体2连接到燃料电池的操作而打开供给口41a。 在连接部22上设置有压力调节机构5,其一端与阀4连通,另一端与容器主体2的内部连通,并且使得容纳了燃料F 在所述内部中通过调节到低于容器主体2内的初级压力的二次压力而流出到阀4。
    • 3. 发明申请
    • PRESSURE REGULATOR
    • 压力调节器
    • WO2008102193A2
    • 2008-08-28
    • PCT/IB2006004326
    • 2006-08-25
    • SCRIPTO TOKAI INCTOKAI CORPNAKAMURA YASUAKIUSUI HIDETO
    • NAKAMURA YASUAKIUSUI HIDETO
    • G05D16/0655Y10T137/7793
    • Reducing the dimensions and extending the service life of a pressure regulator intended for decrease of fluid pressure even when the pressure regulator operates with fluids such as high-pressure gas with corrosive properties. A pressure regulator comprising: a housing 2 having an inlet opening 21 for the supply of pressurized fluid under primary pressure from a pressurized fluid source and an outlet opening 22 for discharging the pressurized fluid under a secondary reduced pressure, and a channel between the aforementioned inlet opening 21 and outlet opening 22; and a pressure-regulating mechanism for reducing the aforementioned primary pressure to the aforementioned secondary pressure; the pressure regulator being characterized by the fact that the pressure-regulating mechanism has a moveable body 7 that comprises a diaphragm 8 which is displaceable in response to pressure fluctuations, the inlet opening 21 and the moveable body 7 being in line with each other in the direction substantially perpendicular to the direction of the diaphragm displacement.
    • 即使压力调节器与具有腐蚀性能的高压气体等流体一起工作时,也可减小用于降低流体压力的压力调节器的尺寸和延长其使用寿命。 一种压力调节器,包括:壳体2,其具有用于在来自加压流体源的初级压力下供应加压流体的入口21和用于在二次减压下排出加压流体的出口开口22,以及在上述入口 开口21和出口开口22; 以及用于将上述一次压力降低到上述二次压力的压力调节机构; 压力调节器的特征在于压力调节机构具有可移动体7,该主体包括可响应于压力波动而移位的隔膜8,入口21和可移动体7彼此成一直线 方向基本上垂直于膜片位移的方向。
    • 5. 发明申请
    • FUEL-CELL CONNECTOR
    • 燃料电池连接器
    • WO2007133446A3
    • 2008-04-17
    • PCT/US2007010534
    • 2007-05-02
    • TOKAI INTERNAT HOLDINGS INCNAKAMURA YASUAKIKANNO MINORU
    • NAKAMURA YASUAKIKANNO MINORU
    • H01M2/00
    • H01M8/04201
    • A fuel-cell connector that minimizes leakage of fuel from a fuel cartridge during connection to and disconnection from a fuel-cell connector is provided. A fuel-cell connector (1) for releasable connection to a fuel cartridge 30 has a cartridge-side connection element (33) with a cartridge-side valve (34) that opens or closes a fuel-supply opening (34a). A fuel-cell connector 1 has a connector-side valve (12) that opens and closes a fuel-receiving opening (10a) and moves, during the first insertion stage, together with the cartridge-side valve (34) and a resilient element (14) for resisting movement in the insertion direction of a connector body unit (10) into which the cartridge-side connection element (33) is telescopically inserted. The connector body unit (10) has on its outer periphery engagement means (23, 24, and 25) for engagement with the cartridge-side connection element (33) and a stationary mechanism part (20) for attachment to the fuel-cell-using device. In the second insertion step, the aforementioned connector body unit (10) is moved as a single unit with the cartridge-side connection element (33), while the fuel-receiving opening (10a) and the fuel-supply opening (34) are maintained in close proximity and so that the aforementioned engagement means (23, 24, and 25) are engaged with the cartridge-side connection element (33), whereby the fuel cartridge (30) is connected and fixed in the connected position.
    • 提供一种燃料电池连接器,其在连接到燃料电池连接器和从燃料电池连接器断开时最小化燃料从燃料盒的泄漏。 用于可释放地连接到燃料盒30的燃料电池连接器(1)具有带有打开或关闭燃料供给开口(34a)的盒侧阀(34)的盒侧连接元件(33)。 燃料电池连接器1具有连接器侧阀(12),该连接器侧阀(12)在燃料接收开口(10a)打开和关闭,并且在第一插入阶段期间与盒侧阀(34)和弹性元件 (14),用于抵抗在盒侧连接元件(33)可伸缩插入的连接器主体单元(10)的插入方向上的运动。 连接器主体单元(10)在其外周上具有用于与盒侧连接元件(33)接合的接合装置(23,24和25)和用于附接到燃料电池单元的固定机构部分(20) 使用设备。 在第二插入步骤中,上述连接器主体单元(10)作为单个单元与盒侧连接元件(33)一起移动,而燃料接收开口(10a)和燃料供给开口(34)是 保持紧密并且使上述接合装置(23,24和25)与盒侧连接元件(33)接合,由此燃料盒(30)在连接位置被连接和固定。
    • 9. 发明专利
    • PLANT CULTURE APPARATUS, PLANT CULTURE VESSEL AND PLANT CULTURE SYSTEM
    • JP2002253052A
    • 2002-09-10
    • JP2001055827
    • 2001-02-28
    • NAKAMURA YASUAKI
    • NAKAMURA YASUAKI
    • A01G7/00
    • PROBLEM TO BE SOLVED: To provide a plant culture apparatus easily installable on the floor of a building such as roof, effective for improving the waterproof function and root-proof function to promote the growth of the plant, surely preventing the intrusion of the root into the floor of the building to dispense with the excessively complicate work of the roof wall of the building and reduce the construction cost. SOLUTION: The plant culture apparatus 1 is composed of a container unit 2 having a thin box shape. Each container unit 2 is provided with a circumferential frame 9 to hold a soil bed, a bottom wall 10 gently inclining downward from the lower end of the circumferential frame 9, completely closing the lower part of the circumferential frame 9 and having draining holes 13 at the lower end, a soil bed supporting plate 8 horizontally placed in the circumferential frame 9 on the bottom wall 10 with a plurality of ribs 11, supporting the soil bed from under and having water permeability, a root-proofing lid 7 placed at the draining holes 13 of the bottom wall 10 and supporting legs 12 vertically extended downward from several parts of the lower face of the bottom wall 10 and fixing the apparatus on the floor of the building, etc.