SLIDE MEMBER
    143.
    发明申请
    SLIDE MEMBER 有权
    幻灯片会员

    公开(公告)号:US20100177995A1

    公开(公告)日:2010-07-15

    申请号:US12686456

    申请日:2010-01-13

    Abstract: In a slide member in which an overlay is provided on a slide receiving surface of a base member, the overlay is formed by attaching a mixed solid lubricant on the slide receiving surface of the base member. The mixed solid lubricant is made by mixing a large amount of hydrogen containing solid lubricant which contains a large amount of hydrogen, and a small amount of hydrogen containing solid lubricant which contains a smaller hydrogen amount than the large amount of hydrogen containing lubricant. Thereby, a lubricant absence region where the solid lubricant is absent in a thickness direction is formed on the slide receiving surface of the base member after sliding, and an oxidized portion where the base member is oxidized is formed in the lubricant absence region.

    Abstract translation: 在基部构件的滑动接收面上设有覆盖层的滑动构件中,通过将混合固体润滑剂附着在基座构件的滑动容纳面上而形成覆盖层。 混合固体润滑剂通过混合大量含有大量氢的含氢固体润滑剂和少量含氢量大于含氢润滑剂的含氢固体润滑剂而制成。 由此,在滑动后,在基体的滑动接收面上形成厚度方向不存在固体润滑剂的润滑剂不存在区域,在润滑剂不存在区域形成有氧化部分的氧化部分。

    BIPHASIC NANOPOROUS VITREOUS CARBON MATERIAL AND METHOD OF MAKING THE SAME
    150.
    发明申请
    BIPHASIC NANOPOROUS VITREOUS CARBON MATERIAL AND METHOD OF MAKING THE SAME 有权
    双相纳米复合碳材料及其制造方法

    公开(公告)号:US20070275863A1

    公开(公告)日:2007-11-29

    申请号:US11627940

    申请日:2007-01-26

    Abstract: A biphasic nanoporous vitreous carbon material with a cementitious morphology characterized by presence of non-round porosity, having superior hardness and tribological properties, as useful for high wear-force applications. The biphasic nanoporous vitreous carbon material is produced by firing, under inert atmosphere, of particulate vitrified carbon in a composition containing (i) a precursor resin that is curable and pyrolyzable to form vitreous carbon and, optionally, (ii) addition of one or more of the following: solid lubricant, such as graphite, boron nitride, or molybdenum disulfide; a heat-resistant fiber reinforcement, such as copper, bronze, iron alloy, graphite, alumina, silica, or silicon carbide; or one or more substances to improve electrical conductivity, such as dendritic copper powder, copper “felt” or graphite flake, to produce a superior vitreous carbon that is useful alone or as a continuous phase in reinforced composites, in relation to conventional glassy carbon materials.

    Abstract translation: 具有水泥质形态的双相纳米孔玻璃碳材料,其特征在于存在非圆形孔隙率,具有优异的硬度和摩擦学性能,对于高磨损应用是有用的。 双相纳米多孔玻璃碳材料是通过在惰性气氛下在含有(i)可固化和可热解以形成玻璃碳的前体树脂的组合物中烧结颗粒状玻璃碳制备的,并且任选地(ii)加入一种或多种 如下:固体润滑剂,如石墨,氮化硼或二硫化钼; 铜,青铜,铁合金,石墨,氧化铝,二氧化硅或碳化硅等耐热纤维增强材料; 或一种或多种改善导电性的物质,例如树枝状铜粉,铜“毡”或石墨片,以产生相对于常规玻璃碳材料单独使用或作为连续相可用于增强复合材料的优质玻璃碳 。

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