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    • 80. 发明申请
    • Metal thin film dispersing a super-fine diamond particle, a metal material having the metal thin film, and a method for preparing the same
    • 分散超细金刚石颗粒的金属薄膜,具有金属薄膜的金属材料及其制备方法
    • US20040011433A1
    • 2004-01-22
    • US10460660
    • 2003-06-13
    • Shigeru ShiozakiMasato SoneHideo YoshidaKiyohito SakonTadamasa Fujimura
    • C25D015/00
    • C25D15/02Y10T428/12486
    • There is provided a metal thin film comprising a metal plate and a diamond particle dispersed in the metal plate. According to the present invention, the metal thin film has a film thickness of 5 nm to 35000 nm. The diamond particle is dispersed almost homogeneously over the direction of the film thickness of the metal thin film. The metal thin film has the diamond particle at a concentration of 1 to 12%. According to the present invention, based on conversion into an equivalent circle, the diamond particle has a first particle size distribution with respect to a first particle of a first particle size of 16 nm or less, at a first number average existence rate of 50% or more; the diamond particle has a second particle size distribution with respect to a second particle having a second particle size of 50 nm or more, at a second number average existence rate of substantially 0%; and the diamond particle has a third particle size distribution with respect to a third particle having a third particle size of 2 nm or less, at a third number average existence rate of substantially 0%.
    • 提供了金属薄膜,其包括分散在金属板中的金属板和金刚石颗粒。 根据本发明,金属薄膜的膜厚为5nm〜35000nm。 金刚石颗粒在金属薄膜的膜厚方向上几乎均匀地分散。 金属薄膜的浓度为1〜12%的金刚石粒子。 根据本发明,基于转换为等效圆,金刚石颗粒相对于第一粒径为16nm或更小的第一粒子以第一数均分子存在率为50%具有第一粒度分布, 或者更多; 所述金刚石颗粒相对于具有第二粒径为50nm或更大的第二颗粒的​​第二粒度分布,其第二数均分子存在率基本为0%; 并且所述金刚石颗粒相对于第三粒径为2nm以下的第三粒子具有基本上为0%的第三数均分率的第三粒度分布。