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    • 3. 发明公开
    • METHOD FOR MANUFACTURING FLOW PATH MEMBER FOR FUEL CELL
    • 制造燃料电池用流路部件的方法
    • EP3220465A1
    • 2017-09-20
    • EP15859373.1
    • 2015-11-02
    • Futamura Kagaku Kabushiki Kaisha
    • IMAIZUMI TakuzoGOTO NaomiSHIBA Naoki
    • H01M8/0202H01M8/02H01M8/10
    • A method of production of a channel member for fuel cell use which secures conductivity, enables formation of finer channels, is suitable for the circulation of hydrogen, oxygen, cooling media, etc., and is inexpensive and easy, comprising a step of obtaining a sheet-shaped first conductor part 11 containing a carbon material of at least one of carbon nanotubes, granular graphite, and carbon fibers and a first resin, a step of laying a sheet-shaped second conductor part 21 containing a carbon material and a second resin with a lower melting point than the first resin to form a sheet-shaped base part 13, a step of transferring a grooved surface 51 to a surface to form a grooved base part 16 provided with groove part 15, a step of laying a sheet-shaped third conductor part 31 containing a carbon material and a third resin with a lower melting point than the first resin, and a step of integrally joining the grooved base part and the third conductor part by hot melt bonding to cover the groove parts.
    • 本发明的燃料电池用通道部件的制造方法确保导电性,可以形成更细小的通道,适用于氢气,氧气,冷却介质等的循环,并且廉价且容易,其包括获得 包含碳纳米管,粒状石墨,碳纤维和碳纤维中的至少一种碳材料和第一树脂的片状的第一导体部分11;铺设包含碳材料和第二树脂的片状的第二导体部分21的步骤 具有比第一树脂低的熔点以形成片状基部13,将沟槽表面51转印到表面以形成设有沟槽部15的沟槽基部16的步骤, 所述第三导体部31包含碳材料和熔点比所述第一树脂低的第三树脂;以及通过热熔结合将所述带槽基部与所述第三导体部一体接合以覆盖所述gr oove零件。