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    • 1. 发明授权
    • Manufacturing process of electrodes for electrolysis
    • 电解电极的制造工艺
    • US08337958B2
    • 2012-12-25
    • US12381962
    • 2009-03-18
    • Yi CaoMasashi Hosonuma
    • Yi CaoMasashi Hosonuma
    • C23C14/30C23C14/58B05D3/02B05D5/12
    • C25B11/0426C23C14/16C23C14/325C23C14/5806C23C14/5853C25C7/02
    • A process for manufacturing electrodes for electrolysis, including the steps of forming an arc ion plating undercoating layer comprising valve metal or valve metal alloy including a crystalline tantalum component and a crystalline titanium component on the surface of the electrode substrate comprising valve metal or valve metal alloy, by an arc ion plating method; heat sintering the electrode substrate to transform only the tantalum component of the arc ion plating undercoating layer into an amorphous substance; and forming an electrode catalyst layer on the surface of the arc ion plating undercoating layer including the valve metal or valve metal alloy including the tantalum component transformed to the amorphous substance and the crystalline titanium component.
    • 一种制造电解电极的方法,包括以下步骤:在电极基材的表面上形成包括结晶钽组分和结晶钛组分的阀金属或阀金属合金的电弧离子镀底涂层,其包括阀金属或阀金属合金 ,通过电弧离子镀法; 对电极基板进行加热烧结,仅将电弧离子电镀底涂层的钽成分变形为无定形物质; 以及在包括转换成非晶体的钽成分和结晶钛成分的阀金属或阀金属合金的电弧离子电镀底涂层的表面上形成电极催化剂层。
    • 3. 发明授权
    • Electrolytic electrode and process of producing the same
    • 电解电极及其制造方法
    • US07232508B2
    • 2007-06-19
    • US10839246
    • 2004-05-06
    • Masashi Hosonuma
    • Masashi Hosonuma
    • C25B11/10
    • C25B11/041C23C18/1216C23C18/1241C23C18/1279C23C18/1295C25B11/0405C25B11/0442C25D17/10
    • An electrolytic electrode having an interlayer having more excellent peeling resistance and corrosion resistance and longer electrolytic life than conventional electrolytic electrodes and capable of flowing a large amount of current at the industrial level and a process of producing the same are provided. The electrolytic electrode includes a valve metal or valve metal alloy electrode substrate on the surface of which is formed a high-temperature oxidation film by oxidation, and which is coated with an electrode catalyst. The high-temperature oxidation film is integrated with the electrode substrate, whereby peeling resistance is enhanced. Further, by heating the high-temperature oxidation film together with the electrode catalyst, non-electron conductivity of the interlayer is modified, thereby making it possible to flow a large amount of current.
    • 提供一种具有中间层的电解电极,其具有比常规电解电极更好的耐剥离性,耐腐蚀性和更长的电解寿命,并且能够在工业级流动大量电流及其制造方法。 电解电极包括阀金属或阀金属合金电极基板,其表面通过氧化形成高温氧化膜,并且涂覆有电极催化剂。 高温氧化膜与电极基板一体化,从而提高耐剥离性。 此外,通过与电极催化剂一起加热高温氧化膜,改变了中间层的非电子传导性,从而可以流过大量的电流。
    • 9. 发明申请
    • Manufacturing process of electrodes for electrolysis
    • 电解电极的制造工艺
    • US20090246410A1
    • 2009-10-01
    • US12381962
    • 2009-03-18
    • Yi CaoMasashi Hosonuma
    • Yi CaoMasashi Hosonuma
    • C23C14/26
    • C25B11/0426C23C14/16C23C14/325C23C14/5806C23C14/5853C25C7/02
    • A process for manufacturing electrodes for electrolysis, including the steps of forming an arc ion plating undercoating layer comprising valve metal or valve metal alloy including a crystalline tantalum component and a crystalline titanium component on the surface of the electrode substrate comprising valve metal or valve metal alloy, by an arc ion plating method; heat sintering the electrode substrate to transform only the tantalum component of the arc ion plating undercoating layer into an amorphous substance; and forming an electrode catalyst layer on the surface of the arc ion plating undercoating layer including the valve metal or valve metal alloy including the tantalum component transformed to the amorphous substance and the crystalline titanium component.
    • 一种制造电解电极的方法,包括以下步骤:在电极基材的表面上形成包括结晶钽组分和结晶钛组分的阀金属或阀金属合金的电弧离子镀底涂层,其包括阀金属或阀金属合金 ,通过电弧离子镀法; 对电极基板进行加热烧结,仅将电弧离子电镀底涂层的钽成分变形为无定形物质; 以及在包括转换成非晶体的钽成分和结晶钛成分的阀金属或阀金属合金的电弧离子电镀底涂层的表面上形成电极催化剂层。