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    • 1. 发明授权
    • Porcelain enamel having metallic appearance
    • 瓷釉具有金属外观
    • US06831027B2
    • 2004-12-14
    • US10274835
    • 2002-10-21
    • Louis J. Gazo
    • Louis J. Gazo
    • C03C818
    • C03C3/076C03C8/18C03C2207/00C03C2207/06C03C2207/08
    • The present invention provides a composition for use in forming a porcelain enamel coating having a metallic appearance. The composition according to the invention preferably includes a low shear blend of a glass component and metal particles such as aluminum, nickel, copper and stainless steel. The glass component includes at least one glass frit that fuses at a temperature of less than about 600° C. Upon firing at a temperature of from about 535° C. to about 600° C., the composition forms a vitreous porcelain enamel coating that has a metallic appearance, which through the incorporation of various optional pigments and/or mill additions, can range from a bright brushed nickel or stainless steel appearance to a matte dark metallic finish.
    • 本发明提供一种用于形成具有金属外观的瓷釉涂层的组合物。 根据本发明的组合物优选包括玻璃组分和诸如铝,镍,铜和不锈钢的金属颗粒的低剪切共混物。 该玻璃组分包括在小于约600℃的温度下熔化的至少一种玻璃料。在约535℃至约600℃的温度下烧制时,该组合物形成一种玻璃瓷搪瓷涂层,其中 具有金属外观,其通过引入各种可选颜料和/或研磨添加剂,可以从亮的拉丝镍或不锈钢外观到无光泽的深色金属表面。
    • 2. 发明授权
    • Electrically conductive composition, ceramic electronic component, and method for producing the component
    • 导电组合物,陶瓷电子元件及其制造方法
    • US06348426B1
    • 2002-02-19
    • US09396616
    • 1999-09-15
    • Yukio SanadaShinichiro KuroiwaKyoumi Tsukida
    • Yukio SanadaShinichiro KuroiwaKyoumi Tsukida
    • C03C818
    • H01B1/16C03C8/18C03C8/22
    • An electrically conductive composition for forming an electrically conductive film through firing. The composition includes metal powder and glass frit as solid components. The glass frit contains a first glass frit which assumes a molten state at least at the maximum temperature during firing and a second glass frit which maintains a glass-ceramic state at the maximum temperature during firing. The first frit has a softening point 100° C. or more lower than the maximum temperature during firing. The content of the first glass frit based on the total amount of glass frit lies within the range of about 25-90 wt. %, and the total amount of glass frit based on the total solid component including metal powder lies within a range of about 3-10 wt. %. Also disclosed are ceramic electronic components and a production process of the components.
    • 一种用于通过烧制形成导电膜的导电组合物。 组合物包括金属粉末和玻璃料作为固体组分。 玻璃料包含在烧制期间至少处于最高温度的熔融状态的第一玻璃料,以及在烧制期间将玻璃陶瓷状态保持在最高温度的第二玻璃料。 第一玻璃料的软化点比烧制过程中的最高温度低100℃或更高。 基于玻璃料总量的第一玻璃料的含量在约25-90重量%的范围内。 %,并且基于包括金属粉末的总固体成分的玻璃料的总量在约3-10重量%的范围内。 %。 还公开了陶瓷电子部件和部件的制造方法。