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    • 6. 发明授权
    • Fuel cell transport frame
    • 燃料电池运输框架
    • US5607786A
    • 1997-03-04
    • US435693
    • 1995-05-05
    • Robin J. GuthrieThomas J. Corrigan
    • Robin J. GuthrieThomas J. Corrigan
    • H01M8/24H01M12/08
    • H01M8/247
    • The present invention discloses a transport frame for transporting and maintaining a fuel cell stack assembly in a fixed position. The fuel cell stack asembly which is under compression by a top and bottom plate held together by tie rods positioned at the corners of each plate. The top and bottom plates are then mounted to a rigid frame for transporting the fuel cell. The tie rods being attached to mounts in the base plate of the rigid frame and an insulated attachment between the top plate of the fuel cell stack frame and the rigid frame is made. The fuel cell stack assembly being electrically insulated from the rigid frame.
    • 本发明公开了一种用于将燃料电池堆组件运输和维持在固定位置的运输框架。 由顶板和底板压缩的燃料电池堆组件,其通过位于每个板的角落处的拉杆保持在一起。 然后将顶板和底板安装到用于运输燃料电池的刚性框架。 连接杆安装在刚性框架的底板中,并且在燃料电池堆架框架的顶板和刚性框架之间形成绝缘附件。 燃料电池堆组件与刚性框架电绝缘。
    • 9. 发明申请
    • EXTERNAL MANIFOLD FOR MINIMIZING EXTERNAL LEAKAGE OF REACTANT FROM CELL STACK
    • 用于从电池堆中最小化反应物的外部泄漏的外部歧管
    • US20110200904A1
    • 2011-08-18
    • US12998475
    • 2008-11-26
    • Robin J. Guthrie
    • Robin J. Guthrie
    • H01M8/04H01M8/24
    • H01M8/04029H01M8/04074H01M8/1018H01M8/247H01M8/2475H01M8/248H01M8/2485H01M2008/1095Y02E60/50
    • A fuel cell assembly (110, 210) has a plurality of fuel cell component elements (112) extending between a pair of end plates (114, 115) to form a stack (116), and plural reactant gas manifolds (120, 220; 122, 222; 124, 224; 126, 226) mounted externally of and surrounding the stack, in mutual, close sealing relationship to prevent leakage of reactant gas in the manifolds to the environment external to the manifolds. The reactant gas manifolds are configured and positioned to maximize sealing contact with smooth surfaces of the stack and the manifolds. One embodiment is configured for an oxidant reactant manifold (120, 124) to overlie the region where the fuel reactant manifold (122, 126) engages the stack. Another embodiment further subdivides an oxidant reactant manifold to include a liquid flow channel (270, 274), which liquid flow channel overlies the region where the fuel reactant manifold (122, 126) engages the stack.
    • 燃料电池组件(110,210)具有在一对端板(114,115)之间延伸以形成堆叠(116)的多个燃料电池组件元件(112),以及多个反应气体歧管(120,220; 122,222; 124,224; 126,226)以相互紧密的密封关系安装在堆叠的外部并围绕堆叠,以防止歧管内的反应气体泄漏到歧管外部的环境。 反应物气体歧管被构造和定位成最大程度地与堆叠和歧管的平滑表面的密封接触。 一个实施例被配置用于氧化剂反应物歧管(120,124),以覆盖燃料反应物歧管(122,126)与堆叠接合的区域。 另一个实施方案进一步细分氧化剂反应物歧管以包括液体流动通道(270,274),该液体流动通道覆盖燃料反应物歧管(122,126)接合堆叠的区域。
    • 10. 发明授权
    • External manifold for minimizing external leakage of reactant from cell stack
    • 用于最小化来自电池堆的反应物的外部泄漏的外部歧管
    • US08765320B2
    • 2014-07-01
    • US12998475
    • 2008-11-26
    • Robin J. Guthrie
    • Robin J. Guthrie
    • H01M8/04
    • H01M8/04029H01M8/04074H01M8/1018H01M8/247H01M8/2475H01M8/248H01M8/2485H01M2008/1095Y02E60/50
    • A fuel cell assembly (110, 210) has a plurality of fuel cell component elements (112) extending between a pair of end plates (114, 115) to form a stack (116), and plural reactant gas manifolds (120, 220; 122, 222; 124, 224; 126, 226) mounted externally of and surrounding the stack, in mutual, close sealing relationship to prevent leakage of reactant gas in the manifolds to the environment external to the manifolds. The reactant gas manifolds are configured and positioned to maximize sealing contact with smooth surfaces of the stack and the manifolds. One embodiment is configured for an oxidant reactant manifold (120, 124) to overlie the region where the fuel reactant manifold (122, 126) engages the stack. Another embodiment further subdivides an oxidant reactant manifold to include a liquid flow channel (270, 274), which liquid flow channel overlies the region where the fuel reactant manifold (122, 126) engages the stack.
    • 燃料电池组件(110,210)具有在一对端板(114,115)之间延伸以形成堆叠(116)的多个燃料电池组件元件(112),以及多个反应气体歧管(120,220; 122,222; 124,224; 126,226)以相互紧密的密封关系安装在堆叠的外部并围绕堆叠,以防止歧管内的反应气体泄漏到歧管外部的环境。 反应物气体歧管被构造和定位成最大程度地与堆叠和歧管的平滑表面的密封接触。 一个实施例被配置用于氧化剂反应物歧管(120,124),以覆盖燃料反应物歧管(122,126)与堆叠接合的区域。 另一个实施方案进一步细分氧化剂反应物歧管以包括液体流动通道(270,274),该液体流动通道覆盖燃料反应物歧管(122,126)接合堆叠的区域。