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    • 2. 发明申请
    • ELECTROCHEMICAL ACTUATOR
    • 电化学执行器
    • US20100108536A1
    • 2010-05-06
    • US12261609
    • 2008-10-30
    • Charles M. CARLSTROM, JR.David H. LEACH
    • Charles M. CARLSTROM, JR.David H. LEACH
    • C25B1/02C25B9/10
    • F03G7/005
    • An electrochemical actuator system includes a membrane electrode assembly coupled to a source of electrical energy. The membrane electrode assembly includes a proton-exchange membrane disposed between a first electrode and a second electrode. A first chamber is located on a first side of the membrane electrode assembly and is configured to hold a gas generated by applying electrical energy to the first electrode of the membrane electrode assembly. The membrane electrode assembly and the first chamber are sealed to inhibit fluid communication with the surrounding ambient environment. The chamber includes a diaphragm deformable in response to a change in an amount of the gas in the first chamber. A deformation of the diaphragm in response to the change in the amount of the gas in the first chamber causes a movement of an actuating member coupled to the diaphragm.
    • 电化学致动器系统包括耦合到电能源的膜电极组件。 膜电极组件包括设置在第一电极和第二电极之间的质子交换膜。 第一室位于膜电极组件的第一侧上,并且构造成将通过向电极组件的第一电极施加电能而产生的气体保持。 膜电极组件和第一腔室被密封以阻止与周围环境环境的流体连通。 腔室包括响应于第一腔室中的气体量的变化而变形的隔膜。 响应于第一室中的气体的量的变化,隔膜的变形导致联接到隔膜的致动构件的移动。
    • 6. 发明申请
    • ELECTROCHEMICAL ACTUATOR
    • 电化学执行器
    • US20100112381A1
    • 2010-05-06
    • US12261628
    • 2008-10-30
    • Charles M. CARLSTROM, JR.David H. LEACH
    • Charles M. CARLSTROM, JR.David H. LEACH
    • H01M8/00H01M8/02H01M8/04
    • H01M8/0656H01M2008/1095
    • A heat switch system includes a first surface thermally coupled to at least a portion of an associated component requiring temperature control. A second surface is spaced by a gap relative to the first surface. A gas generator is coupled to a first chamber configured to hold a gas generated by the gas generator. The first chamber includes a diaphragm configured to be deformed in response to an increase in an amount of the gas in the first chamber. A deformation of the chamber in response to the increase in the amount of the gas in the first chamber causes movement of the first surface and/or the second surface such that the first surface and the second surface move toward each other to reduce the gap and heat is transferred from the first surface to the second surface.
    • 热开关系统包括热耦合到需要温度控制的相关部件的至少一部分的第一表面。 第二表面相对于第一表面间隔开间隙。 气体发生器耦合到构造成保持由气体发生器产生的气体的第一室。 第一室包括隔膜,该膜片构造成响应于第一室中的气体量的增加而变形。 响应于第一室中的气体量的增加,室的变形导致第一表面和/或第二表面的移动,使得第一表面和第二表面相互移动以减小间隙,并且 热从第一表面转移到第二表面。
    • 8. 发明申请
    • Fuel cell endplate system
    • 燃料电池终板系统
    • US20050282060A1
    • 2005-12-22
    • US10871127
    • 2004-06-18
    • Michael DeFillippisLuke YettoKeith Brown
    • Michael DeFillippisLuke YettoKeith Brown
    • H01M8/02H01M8/04H01M8/24
    • H01M8/2455H01M8/0258H01M8/0271H01M8/04186H01M8/24
    • An endplate assembly is connected to a fuel cell stack. An endplate assembly has an external surface and an internal surface. The internal surface faces toward the fuel cell stack and the external surface is opposite the internal surface and faces away from the fuel cell stack. The endplate assembly includes at least one internal fluid flow passage located between the internal surface and the external surface. The at least one internal fluid flow passage is configured to direct fluid in a direction transverse to the direction faced by the internal surface and the direction faced by the external surface. Also, an interior portion may be located between the internal surface and the external surface. A port may provide fluid communication between an external component connected to the external surface and the interior portion. In addition, a component that processes, senses or measures a fluid may be integrated with said endplate assembly.
    • 端板组件连接到燃料电池堆。 端板组件具有外表面和内表面。 内表面朝向燃料电池堆并且外表面与内表面相对并且远离燃料电池堆。 端板组件包括位于内表面和外表面之间的至少一个内部流体流动通道。 所述至少一个内部流体流动通道构造成沿与所述内表面面对的方向横向的方向和所述外表面所面向的方向引导流体。 此外,内部部分可以位于内表面和外表面之间。 端口可以​​在连接到外部表面的外部部件和内部部分之间提供流体连通。 此外,处理,感测或测量流体的部件可以与所述端板组件一体化。