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    • 13. 发明专利
    • Fuel cell separator manufacturing device
    • 燃油电池分离器制造装置
    • JP2014078468A
    • 2014-05-01
    • JP2012226819
    • 2012-10-12
    • Toyota Motor Corpトヨタ自動車株式会社Toyota Central R&D Labs Inc株式会社豊田中央研究所
    • TOMINAGA KOJIIIZUKA KAZUTAKAIZEKI TAKASHINAKANISHI KAZUYUKIOZAWA YASUHIRO
    • H01M8/02C01B31/02C23C16/26H01M8/10
    • Y02P70/56
    • PROBLEM TO BE SOLVED: To reduce the unevenness of in-plane temperature distribution of a base material in film formation to form a good carbon thin film and to simplify a manufacturing process.SOLUTION: A fuel cell separator manufacturing device for forming a carbon-containing thin film on a base material which will make a fuel cell separator comprises: a film-forming chamber into which the base material is loaded for forming the carbon-containing thin film; a frame arranged to surround an outer periphery of the base material apart from the outer periphery in the film-forming chamber; a counter electrode disposed apart from the base material in the film-forming chamber; and a voltage-applying part connected with the base material and the counter electrode for applying a voltage between the base material and the counter electrode to produce plasma. The frame is set so that when the voltage-applying part applies a voltage between the base material and the counter electrode, the potential of the frame is higher than the potential of the base material, but equal to or lower than the earth potential.
    • 要解决的问题:为了减少成膜中的基材的面内温度分布的不均匀性,以形成良好的碳薄膜,并简化制造工艺。解决方案:一种用于形成含碳的燃料电池隔板制造装置 将制造燃料电池隔板的基材上的薄膜包括:成膜室,其中装载基材以形成含碳薄膜; 框架,其布置成围绕所述基材的外周围,与所述成膜室的外周隔开; 在所述成膜室中与所述基材分离的对置电极; 以及与基材和对电极连接的电压施加部,用于在基材和对电极之间施加电压以产生等离子体。 框架被设定为使得当施加电压部分在基底材料和对电极之间施加电压时,框架的电位高于基底材料的电位,但是等于或低于地电位。
    • 15. 发明专利
    • Fuel cell separator
    • 燃油电池分离器
    • JP2010186578A
    • 2010-08-26
    • JP2009028450
    • 2009-02-10
    • Toyota Central R&D Labs IncToyota Motor Corpトヨタ自動車株式会社株式会社豊田中央研究所
    • KOIZUMI MASAFUMIIZEKI TAKASHIYAMADA YUKANAKANISHI KAZUYUKI
    • H01M8/02
    • Y02E60/50
    • PROBLEM TO BE SOLVED: To provide a fuel cell separator in which, in a gas passage structure having an amorphous carbon film formed on the surface, the gas passage cross-section is made further finer and the power generation performance is further improved. SOLUTION: The fuel cell separator includes a gas passage structure in which an amorphous carbon film is formed on the surface, and the gas passage structure 12 is constituted of an expanded metal 21 in which the amorphous carbon film 21a is formed on the surface, and the gas passage cross-section is made fine. The expanded metal 21 is used in which the surface of the amorphous carbon film 21a is made hydrophilic so that the contact angle θ1 with adhering water 22 may be 40° or less, and discharge performance of generated water in the gas passage by the expanded metal 21 is enhanced and even if the gas passage cross-section is made fine, excellent discharge of generated water in the gas passage is made possible. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种燃料电池隔板,其中,在具有形成在表面上的非晶碳膜的气体通道结构中,使气体通道横截面进一步变细,发电性能进一步提高 。 解决方案:燃料电池分离器包括在表面上形成无定形碳膜的气体通道结构,气体通道结构12由在其上形成无定形碳膜21a的多孔金属21构成 表面,并且气体通道横截面良好。 使用膨胀金属21,其中无定形碳膜21a的表面被制成亲水性,使得与粘附水22的接触角θ1可以为40°或更小,并且通过膨胀金属在气体通道中产生的水的排出性能 21得到增强,即使气体通道横截面细微,气体通道中产生的水的排出也是可能的。 版权所有(C)2010,JPO&INPIT
    • 20. 发明专利
    • Method and apparatus for depositing film
    • 沉积膜的方法和装置
    • JP2012001789A
    • 2012-01-05
    • JP2010139602
    • 2010-06-18
    • Nippon Denshi Kogyo KkToyota Central R&D Labs IncToyota Motor Corpトヨタ自動車株式会社日本電子工業株式会社株式会社豊田中央研究所
    • NAKANISHI KAZUYUKIIZEKI TAKASHIOZAWA YASUHIROYAMADA YUKAMIZUNO SEIJISATO KATSUMIKOIZUMI MASAFUMIFUNAKI YOSHIYUKIKONDO KYOJIKIKUCHI TAKAYUKI
    • C23C16/54C23C16/50
    • C23C16/26C23C16/503C23C16/545
    • PROBLEM TO BE SOLVED: To provide a method and an apparatus for depositing a film which achieve uniform film deposition and an increase in an area where the film is deposited, and achieve simultaneous film deposition on the entire surface of a substrate.SOLUTION: The method for depositing a film adopts plasma-enhanced CVD (Chemical Vapor Deposition) using the apparatus for depositing a film which includes a film depositing furnace 1, a pair of rotary electrode reels 2 comprising a feed-out reel 21 and a take-up reel 22, a plasma source 3, a material gas supplying means 4, and an exhausting means 5. The method includes: applying a negative voltage to the rotary electrode reels 2 from the plasma source 3 while a conductive substrate 6 is fed out from the feed-out reel 21 and is wound on the take-up reel 22 so that the entire surface of the substrate portion 63 between reels contacts the material gas, whereby plasma sheath P is formed along the surface of the substrate portion 63 between reels; and activating the material gas in the plasma sheath P and thus contacting the surface of the substrate, thus depositing the film on the surface of the substrate.
    • 要解决的问题:提供一种沉积膜的方法和装置,其实现均匀的膜沉积和膜的沉积面积的增加,并且在基板的整个表面上实现同时的膜沉积。 解决方案:用于沉积薄膜的方法采用等离子体增强CVD(化学气相沉积),其使用沉积薄膜的装置,该装置包括薄膜沉积炉1,一对旋转电极卷轴2,包括一个馈送卷轴21 卷取卷轴22,等离子体源3,原料气体供给装置4以及排出装置5.该方法包括:从等离子体源3向旋转电极卷轴2施加负电压,同时导电基板6 从送出卷轴21送出,卷绕在收带卷轴22上,使得卷轴与材料气体接触的基板部63的整个表面,沿着基板部的表面形成等离子体护套 卷轴之间63; 并激活等离子体鞘P中的原料气体,从而接触衬底表面,从而将膜沉积在衬底的表面上。 版权所有(C)2012,JPO&INPIT