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    • 2. 发明授权
    • Fuel cell stack
    • Brennstoffzellenstapel
    • EP2587576B1
    • 2014-09-24
    • EP13152707.9
    • 2010-01-14
    • Honda Motor Co., Ltd.
    • Mohri, MasahiroKotani, YasunoriOda, MasaruWatanabe, YasuhiroMatsui, AkihiroYamazaki, KeikoIwasawa, ChikaraOkamoto, HideoIse, MasahiroOhta, Hiroaki
    • H01M8/02H01M8/24H01M8/10
    • H01M8/2483H01M8/0206H01M8/0232H01M8/0234H01M8/0254H01M8/026H01M8/0263H01M8/0267H01M8/04029H01M8/1006H01M8/1007H01M8/1018H01M8/241H01M8/2457H01M2008/1095H01M2300/0082
    • A fuel cell stack (10) is comprised of a plurality of power generating units (12) which are stacked along the horizontal direction. A corrugated passage groove (44a) having a shape corresponding to the shape of the underside surface of a corrugated passage groove (36a) of a first fuel gas passage (36) is formed in a surface (14b) of a first metal separator (14). A corrugated passage groove (44b) having a shape corresponding to the shape of the underside surface of a corrugated passage groove (66a) of a second oxidant gas passage (66) is formed in a surface (20b) of a third metal separator (20). The corrugated passage grooves (44a, 44b) overlap one another to define a refrigerant passage (44). An oxidant gas inlet port (30a) and a fuel gas inlet port (32a) are provided in the upper portion of the power generating unit (12), and an oxidant gas outlet port (30b) and a fuel gas outlet port (32b) are provided in the lower portion of the power generating unit (12). A refrigerant inlet port (34a) and a refrigerant outlet port (34b) are formed in each of the left and right portions of power generating unit (12).
    • 燃料电池堆(10)由沿水平方向堆叠的多个发电单元(12)构成。 在第一金属分离器(14)的表面(14b)中形成具有与第一燃料气体通道(36)的波纹通道槽(36a)的下表面的形状相对应的形状的波纹通道槽(44a) )。 在第三金属分离器(20)的表面(20b)中形成具有与第二氧化剂气体通道(66)的波纹通道槽(66a)的下表面的形状相对应的形状的波纹通道槽(44b) )。 波纹通道槽(44a,44b)彼此重叠以限定制冷剂通道(44)。 氧化剂气体入口(30a)和燃料气体入口(32a)设置在发电单元(12)的上部,氧化剂气体出口(30b)和燃料气体出口(32b) 设置在发电单元(12)的下部。 制冷剂入口(34a)和制冷剂出口(34b)形成在发电单元(12)的左右两部分中。
    • 3. 发明公开
    • Fuel cell stack
    • Brennstoffzellstapel
    • EP2587576A3
    • 2013-09-25
    • EP13152707.9
    • 2010-01-14
    • Honda Motor Co., Ltd.
    • Mohri, MasahiroKotani, YasunoriOda, MasaruWatanabe, YasuhiroMatsui, AkihiroYamazaki, KeikoIwasawa, ChikaraOkamoto, HideoIse, MasahiroOhta, Hiroaki
    • H01M8/02H01M8/24H01M8/10
    • H01M8/2483H01M8/0206H01M8/0232H01M8/0234H01M8/0254H01M8/026H01M8/0263H01M8/0267H01M8/04029H01M8/1006H01M8/1007H01M8/1018H01M8/241H01M8/2457H01M2008/1095H01M2300/0082
    • A fuel cell stack (10) is comprised of a plurality of power generating units (12) which are stacked along the horizontal direction. A corrugated passage groove (44a) having a shape corresponding to the shape of the underside surface of a corrugated passage groove (36a) of a first fuel gas passage (36) is formed in a surface (14b) of a first metal separator (14). A corrugated passage groove (44b) having a shape corresponding to the shape of the underside surface of a corrugated passage groove (66a) of a second oxidant gas passage (66) is formed in a surface (20b) of a third metal separator (20). The corrugated passage grooves (44a, 44b) overlap one another to define a refrigerant passage (44).; An oxidant gas inlet port (30a) and a fuel gas inlet port (32a) are provided in the upper portion of the power generating unit (12), and an oxidant gas outlet port (30b) and a fuel gas outlet port (32b) are provided in the lower portion of the power generating unit (12). A refrigerant inlet port (34a) and a refrigerant outlet port (34b) are formed in each of the left and right portions of power generating unit (12).
    • 燃料电池堆(10)由沿水平方向堆叠的多个发电单元(12)构成。 在第一金属分离器(14)的表面(14b)中形成具有与第一燃料气体通道(36)的波纹通道槽(36a)的下表面的形状相对应的形状的波纹通道槽(44a) )。 在第三金属分离器(20)的表面(20b)中形成具有与第二氧化剂气体通道(66)的波纹通道槽(66a)的下表面的形状相对应的形状的波纹通道槽(44b) )。 波纹通道槽(44a,44b)彼此重叠以限定制冷剂通道(44)。 氧化剂气体入口(30a)和燃料气体入口(32a)设置在发电单元(12)的上部,氧化剂气体出口(30b)和燃料气体出口(32b) 设置在发电单元(12)的下部。 制冷剂入口(34a)和制冷剂出口(34b)形成在发电单元(12)的左右两部分中。