Manufacturing of fuel cell membrane electrode assemblies incorporating photocurable cationic crosslinkable resin gasket
    1.
    发明授权
    Manufacturing of fuel cell membrane electrode assemblies incorporating photocurable cationic crosslinkable resin gasket 有权
    含有光固化阳离子交联树脂垫片的燃料电池膜电极组件的制造

    公开(公告)号:US08426078B2

    公开(公告)日:2013-04-23

    申请号:US11962848

    申请日:2007-12-21

    IPC分类号: H01M8/10 H01M2/08 B32B38/00

    摘要: A first transport system moves a web comprising a subgasketed CCM layer and an application system applies a crosslinkable resin to at least a subgasketed portion of the subgasketed CCM layer. The crosslinkable resin preferably comprises a photocurable cationic crosslinkable resin. A first curing apparatus subjects an exposed surface of the crosslinkable resin to a photo curing process to initiate curing of the crosslinkable resin. A second transport system moves a GDL into adhering contact with a partially cured exposed surface of the crosslinkable resin of the CCM layer so as to form an MEA layer. A second curing apparatus subjects the GDL, partially cured crosslinkable resin, and CCM layer structure to a thermal curing process to substantially complete curing of the crosslinkable resin. A converting system is configured to receive the MEA layer and produce a plurality of discrete MEAs from the MEA layer.

    摘要翻译: 第一传送系统移动包括底层CCM层的网,并且应用系统将可交联树脂施加到所述被封闭的CCM层的至少一个下垫部分。 可交联树脂优选包含可光固化的阳离子可交联树脂。 第一固化装置将可交联树脂的暴露表面照射到光固化过程以引发可交联树脂的固化。 第二传输系统使GDL与CCM层的可交联树脂的部分固化的暴露表面粘合接触以形成MEA层。 第二固化装置使GDL部分固化的可交联树脂和CCM层结构经受热固化过程,以基本上完​​成可交联树脂的固化。 转换系统被配置为接收MEA层并且从MEA层产生多个离散MEA。

    MANUFACTURING OF FUEL CELL MEMBRANE ELECTRODE ASSEMBLIES INCORPORATING PHOTOCURABLE CATIONIC CROSSLINKABLE RESIN GASKET
    2.
    发明申请
    MANUFACTURING OF FUEL CELL MEMBRANE ELECTRODE ASSEMBLIES INCORPORATING PHOTOCURABLE CATIONIC CROSSLINKABLE RESIN GASKET 有权
    燃料电池组合电池组装制造可掺入阳离子交联树脂填料

    公开(公告)号:US20090162734A1

    公开(公告)日:2009-06-25

    申请号:US11962848

    申请日:2007-12-21

    IPC分类号: H01M4/86 B32B37/12 B32B38/00

    摘要: A first transport system moves a web comprising a subgasketed CCM layer and an application system applies a crosslinkable resin to at least a subgasketed portion of the subgasketed CCM layer. The crosslinkable resin preferably comprises a photocurable cationic crosslinkable resin. A first curing apparatus subjects an exposed surface of the crosslinkable resin to a photo curing process to initiate curing of the crosslinkable resin. A second transport system moves a GDL into adhering contact with a partially cured exposed surface of the crosslinkable resin of the CCM layer so as to form an MEA layer. A second curing apparatus subjects the GDL, partially cured crosslinkable resin, and CCM layer structure to a thermal curing process to substantially complete curing of the crosslinkable resin. A converting system is configured to receive the MEA layer and produce a plurality of discrete MEAs from the MEA layer.

    摘要翻译: 第一传送系统移动包括底层CCM层的网,并且应用系统将可交联树脂施加到所述被封闭的CCM层的至少一个下垫部分。 可交联树脂优选包含可光固化的阳离子可交联树脂。 第一固化装置将可交联树脂的暴露表面照射到光固化过程以引发可交联树脂的固化。 第二传输系统使GDL与CCM层的可交联树脂的部分固化的暴露表面粘合接触以形成MEA层。 第二固化装置使GDL部分固化的可交联树脂和CCM层结构经受热固化过程,以基本上完​​成可交联树脂的固化。 转换系统被配置为接收MEA层并且从MEA层产生多个离散MEA。