POWER GENERATION DEVICE FOR EXERCISE EQUIPMENT
    12.
    发明申请
    POWER GENERATION DEVICE FOR EXERCISE EQUIPMENT 失效
    用于锻炼设备的发电装置

    公开(公告)号:US20100062903A1

    公开(公告)日:2010-03-11

    申请号:US12410852

    申请日:2009-03-25

    Abstract: The present invention provides a power generation device for exercise equipment including a fixing seat, a swinging seat and a power generating component. The joint and positioning end of the swinging seat has a hinge connection part to be connected with the fixing seat, and the power generating component is configured on a preset position on the swinging seat. A magnetic lifting component is configured to cause magnetic repelling between the swinging end of the swinging seat and the fixing seat, so that the swinging end of the swinging seat can be elastically lifted. The driven part of the power generating component will constantly maintain tight contact with the flywheel of exercise equipment. The magnetic lifting component can exert a magnetic repulsing function without elastic fatigue and solid abrasion.

    Abstract translation: 本发明提供一种用于包括固定座,摆动座和发电部件的运动器材的发电装置。 摆动座的关节和定位端具有与固定座连接的铰链连接部,发电部构造在摆动座上的预定位置。 磁性提升部件被配置为在摆动座椅的摆动端和固定座之间引起磁排斥,使得摆动座椅的摆动端可以弹性地提升。 动力部件的驱动部分将不断保持与运动器材飞轮的紧密接触。 磁性提升部件可以发挥磁性排斥功能,没有弹性疲劳和固体磨损。

    FLUID FLOW CONTROL MEMBERS FOR USE WITH VALVES
    13.
    发明申请
    FLUID FLOW CONTROL MEMBERS FOR USE WITH VALVES 有权
    流体流量控制会员与阀门一起使用

    公开(公告)号:US20100051120A1

    公开(公告)日:2010-03-04

    申请号:US12467152

    申请日:2009-05-15

    Abstract: Fluid flow control members for use with valves are described. An example poppet apparatus for use with an internal valve includes first and second opposing seating surfaces to control fluid flow through the internal valve. Additionally, the example poppet apparatus includes an aperture to receive a stem of the internal valve. Further, the example poppet apparatus includes a flow diverter to divert fluid flow through the poppet apparatus to substantially prevent the fluid flow from compressing a spring to be at least partially positioned in the poppet apparatus.

    Abstract translation: 描述了用于阀门的流体流量控制构件。 用于内部阀的示例提升装置包括第一和第二相对的就座表面,以控制通过内部阀的流体流动。 此外,该示例提升装置包括用于容纳内部阀杆的孔。 此外,示例性提升装置包括分流器,用于将流体流动通过提升装置,以基本上防止流体流压缩弹簧至少部分地定位在提升装置中。

    Process for preparing a film having alternating monolayers of a metal-metal bonded complex monolayer and an organic monolayer by layer-by layer growth
    14.
    发明授权
    Process for preparing a film having alternating monolayers of a metal-metal bonded complex monolayer and an organic monolayer by layer-by layer growth 失效
    通过逐层生长制备具有金属 - 金属键合复合单层和有机单层的交替单层的膜的方法

    公开(公告)号:US07445815B2

    公开(公告)日:2008-11-04

    申请号:US11684506

    申请日:2007-03-09

    Abstract: The present invention provides a process for preparing a thin film having alternating monolayers of a metal-metal bonded complex monolayer and an organic monolayer by layer-by-layer growth. The process comprises the steps of: (1) applying onto a surface of a substrate a first linker compound to produce a primer layer; (2) applying onto said primer layer a layer of a metal-metal bonded complex to produce a metal-metal bonded complex monolayer on said primer layer;(3) applying onto said metal-metal bonded complex monolayer a second linker compound; and optionally(4) sequentially repeating steps (2) and (3) at least once to produce said layer-by-layer grown thin film having alternating monolayers of a metal-metal bonded complex monolayer and an organic monolayer.

    Abstract translation: 本发明提供了通过逐层生长制备具有金属 - 金属键合复合单层和有机单层的交替单层的薄膜的方法。 该方法包括以下步骤:(1)在基材的表面上施加第一接头化合物以产生底漆层; (2)在所述底漆层上施加一层金属 - 金属键合复合物,以在所述底漆层上产生金属 - 金属键合复合单层;(3)在所述金属 - 金属键合复合单层上施加第二接头化合物; 和任选地(4)顺序地重复步骤(2)和(3)至少一次以产生具有金属 - 金属键合复合单层和有机单层的交替单层的逐层生长薄膜。

    Ring Binder Mechanism
    15.
    发明申请
    Ring Binder Mechanism 有权
    环形粘结机构

    公开(公告)号:US20070160415A1

    公开(公告)日:2007-07-12

    申请号:US11675493

    申请日:2007-02-15

    Applicant: Chun To Chun Lin

    Inventor: Chun To Chun Lin

    CPC classification number: B42F13/26

    Abstract: A ring mechanism having a housing and at least one ring configurable between a closed position for retaining loose-leaf pages and an open position. A pair of hinge plates, operatively connected to the ring, are pivotable within the housing between first and second position corresponding respectively to the closed and open positions of the ring. Each hinge plate has a free end and a line of weakness formed therein proximate the free end to facilitate bending of the hinge plate. A hinge plate actuator has a bearing surface engageable with the hinge plates proximate the free ends thereof upon movement of the actuator from a first position toward a second position thereof such that the hinge plates bend proximate their free ends to delay pivoting movement of the hinge plates upon initial movement of the actuator from its first position toward its second position.

    Abstract translation: 一种环形机构,具有壳体和至少一个环,可配置在用于保持活页页面和打开位置的关闭位置之间。 可操作地连接到环的一对铰链板可在壳体内在分别对应于环的闭合和打开位置的第一和第二位置之间枢转。 每个铰链板具有在自由端附近形成的自由端和弱线,以便于铰链板的弯曲。 铰链板致动器具有在致动器从第一位置朝向第二位置运动时靠近其自由端的铰接板接合的支承表面,使得铰链板在其自由端附近弯曲以延迟铰链板的枢转运动 在致动器从其第一位置朝向其第二位置的初始运动时。

    PROCESS FOR PREPARING A THIN FILM HAVING ALTERNATING MONOLAYERS OF A METAL-METAL BONDED COMPLEX MONOLAYER AND AN ORGANIC MONOLAYER BY LAYER-BY LAYER COMPLEX
    16.
    发明申请

    公开(公告)号:US20070148441A1

    公开(公告)日:2007-06-28

    申请号:US11684506

    申请日:2007-03-09

    Abstract: The present invention provides a process for preparing a thin film having alternating monolayers of a metal-metal bonded complex monolayer and an organic monolayer by layer-by-layer growth. The process comprises the steps of: (1) applying onto a surface of a substrate a first linker compound to produce a primer layer; (2) applying onto said primer layer a layer of a metal-metal bonded complex to produce a metal-metal bonded complex monolayer on said primer layer;(3) applying onto said metal-metal bonded complex monolayer a second linker compound; and optionally(4) sequentially repeating steps (2) and (3) at least once to produce said layer-by-layer grown thin film having alternating monolayers of a metal-metal bonded complex monolayer and an organic monolayer.

    Abstract translation: 本发明提供了通过逐层生长制备具有金属 - 金属键合复合单层和有机单层的交替单层的薄膜的方法。 该方法包括以下步骤:(1)在基材的表面上施加第一接头化合物以产生底漆层; (2)在所述底漆层上施加一层金属 - 金属键合复合物,以在所述底漆层上产生金属 - 金属键合复合单层;(3)在所述金属 - 金属键合复合单层上施加第二接头化合物; 和任选地(4)顺序地重复步骤(2)和(3)至少一次以产生具有金属 - 金属键合复合单层和有机单层的交替单层的逐层生长薄膜。

    Thin films and fabrication method therefor
    17.
    发明申请
    Thin films and fabrication method therefor 审中-公开
    薄膜及其制造方法

    公开(公告)号:US20070096367A1

    公开(公告)日:2007-05-03

    申请号:US11397403

    申请日:2006-04-04

    CPC classification number: B29C55/06 B29K2029/04

    Abstract: A thin film. The thin film is fabricated by placing a thin film having a hydroxyl groups-containing surface in a water tank containing dicarboxylic acid and stretching the thin film.

    Abstract translation: 薄膜。 通过将含有羟基的表面的薄膜放置在含有二羧酸的水槽中并拉伸薄膜来制造薄膜。

    Cathode structure for inverted organic light emitting devices
    18.
    发明申请
    Cathode structure for inverted organic light emitting devices 有权
    倒置有机发光器件的阴极结构

    公开(公告)号:US20060082289A1

    公开(公告)日:2006-04-20

    申请号:US11115317

    申请日:2005-04-27

    CPC classification number: H01L51/5092 H01L51/0051 H01L51/0059

    Abstract: A cathode structure for inverted OLEDs is provided, which comprise a substrate, a conductive electrode layer, an organic material layer, a dielectric layer, and a metal layer. Wherein, the conductive electrode layer is disposed over the substrate, the organic structure layer is disposed over the conductive electrode layer, the dielectric layer is disposed over the organic material layer, and the metal layer is disposed over the dielectric layer. Such cathode structure can function without using the metals of low work function and high chemical activity so as to benefit the manufacturing of organic light emitting devices and displays, and provide a more stable working conditions.

    Abstract translation: 提供了一种用于反向OLED的阴极结构,其包括衬底,导电电极层,有机材料层,电介质层和金属层。 其中,导电电极层设置在基板上方,有机结构层设置在导电电极层的上方,电介质层设置在有机材料层的上方,金属层设置在电介质层的上方。 这种阴极结构可以在不使用低功函数和高化学活性的金属的情况下起作用,从而有益于有机发光器件和显示器的制造,并提供更稳定的工作条件。

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