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    • 4. 发明授权
    • Apparatus and method for automatically stacking fuel cell material layers
    • 用于自动堆叠燃料电池材料层的装置和方法
    • US06756146B2
    • 2004-06-29
    • US10115516
    • 2002-04-03
    • John Russell MlinarGary William Schukar
    • John Russell MlinarGary William Schukar
    • H01M810
    • H01M8/2418H01M8/2404H01M8/2465Y10T29/49002Y10T29/49787Y10T29/49826Y10T29/53096Y10T29/5313Y10T29/53135Y10T29/53191Y10T29/53361
    • Stacking porous and non-porous material layers involves applying vacuum to a first porous layer to stabilize same relative to a support structure. The support structure and/or a non-porous layer are moved to establish contact between the non-porous layer and the first porous layer. The first porous and non-porous layers define a sub-assembly. While applying vacuum to the sub-assembly, one or both of the support structure and a second layer are moved to establish contact between the second layer and the non-porous layer. Vacuum applied to the sub-assembly maintains positional stability of the sub-assembly layers relative to the support structure while the second layer is moved into contact with the non-porous layer. Vacuum is subsequently removed to facilitate transporting of the material layer stack. Material layers of a fuel cell, including first and second fluid transport layers and a membrane, are well suited for automated stacking.
    • 堆叠多孔和无孔材料层包括对第一多孔层施加真空以使其相对于支撑结构稳定。 移动支撑结构和/或无孔层以建立无孔层和第一多孔层之间的接触。 第一多孔和无孔层限定一个子组件。 当向子组件施加真空时,移动支撑结构和第二层中的一个或两个以建立第二层和无孔层之间的接触。 施加到子组件上的真空保持子组件层相对于支撑结构的位置稳定性,同时使第二层移动与无孔层接触。 随后去除真空以便于材料层堆叠的输送。 包括第一和第二流体输送层和膜的燃料电池的材料层非常适合于自动堆叠。
    • 6. 发明授权
    • Fixture pallet apparatus for automated assembly of fuel cell material layers
    • 用于燃料电池材料层自动组装的夹具托盘装置
    • US06733912B2
    • 2004-05-11
    • US10115733
    • 2002-04-03
    • John Russell Mlinar
    • John Russell Mlinar
    • H01M810
    • H01M8/2404H01M8/2465Y10T29/53026Y10T29/5313Y10T29/53261Y10T29/53339Y10T29/53383Y10T29/53678Y10T29/53978
    • A first fixture of a transportable fixture apparatus incorporates a substantially porous first region adapted to receive one or more porous and/or non-porous first material layers, such as fuel cell layers, and to facilitate formation of a vacuum between the first fixture and the first material layers. A second fixture incorporates a substantially porous second region adapted to receive one or more porous and/or non-porous second material layers and to facilitate formation of a vacuum between the second fixture and the second material layers. A stop arrangement protrudes from one or both of the first and second fixtures, and is situated peripheral to the first and second material layers when the first and second fixtures are brought into contact. The stop arrangement defines a cavity adapted to effect compression of the first and second material layers when the first and second fixtures are brought into contact.
    • 可移动固定装置的第一固定装置包括适于接收一个或多个多孔和/或无孔第一材料层(例如燃料电池层)的基本上多孔的第一区域,并且有助于在第一固定装置和第二固定装置之间形成真空 第一层材料。 第二固定装置包括适于接纳一个或多个多孔和/或无孔第二材料层的基本上多孔的第二区域,并且有助于在第二固定件和第二材料层之间形成真空。 停止装置从第一和第二固定装置中的一个或两个突出,并且当第一和第二固定装置接触时,它们位于第一和第二材料层周围。 停止装置限定了当第一和第二固定装置接触时适于实现第一和第二材料层的压缩的空腔。