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    • 51. 发明授权
    • Aluminum alloy support body for a presensitized plate and method of producing the same
    • 用于预定板的铝合金支撑体及其制造方法
    • US06572715B2
    • 2003-06-03
    • US09778501
    • 2001-02-07
    • Hirotaka KomineMitsuo IshidaKeitarou Yamaguchi
    • Hirotaka KomineMitsuo IshidaKeitarou Yamaguchi
    • C22C2100
    • B41N1/083C22C21/00C22F1/04
    • The present invention provides an aluminum alloy support body for a presensitized plate in which the uniformity of the grained surface due to electrochemical etching is further improved, and a method of producing the same. The aluminum alloy support body for the presensitized plate according to the present invention has a composition comprising 0.1 to 0.7% by weight of Fe; 0.01 to 0.2% by weight of Si; 0.005 to 1.0% by weight of one or more rare earth elements; and the balance of Al and unavoidable impurities. In the present invention, the aluminum alloy support body may further contain 0.005 to 0.1% by weight of Ni and 0.005 to 0.3% by weight of one or more rare earth elements. One or more elements of Ce, La and Nd can be selected as the rare earth elements.
    • 本发明提供一种用于预感板的铝合金支撑体及其制造方法,其中由电化学蚀刻引起的晶粒表面的均匀性得到进一步改善。 根据本发明的用于预敏化板的铝合金支撑体具有包含0.1至0.7重量%的Fe的组成; 0.01〜0.2重量%的Si; 0.005〜1.0重量%的一种或多种稀土元素; 其余为Al和不可避免的杂质。 在本发明中,铝合金支撑体还可以含有0.005〜0.1重量%的Ni和0.005〜0.3重量%的一种或多种稀土元素。 可以选择Ce,La和Nd的一种或多种元素作为稀土元素。
    • 54. 发明授权
    • Free machining aluminum alloy with high melting point machining constituent and method of use
    • 自由加工铝合金,具有高熔点加工成分和使用方法
    • US06416598B1
    • 2002-07-09
    • US09295160
    • 1999-04-20
    • Subhasish Sircar
    • Subhasish Sircar
    • C22C2100
    • C22C32/00B22F2998/00C22C2001/1047C22C1/1036
    • A free machining aluminum alloy contains an effective amount of one or more high melting point constituents that provide enhanced machining capability. The high melting point constituents occupy from about 0.1 to about 3.0 volume percent of the aluminum alloy. The constituents can be any material that is essentially insoluble in the aluminum alloy matrix so as to form a discontinuity and one that will resist deformation during machining to enhance the formation of voids between the matrix and the free machining constituents. The constituents include elements, nitrides, oxides, borides, carbides, silicides, aluminides and combinations thereof that have a high melting point and high strength and low solubility in aluminum at the elevated temperature so that the constituents resist deformation during the machining operation. The free machining aluminum alloy can be formed as a workpiece and subjected to any machining operation.
    • 免费加工铝合金含有有效量的一种或多种高熔点成分,提供增强的加工能力。 高熔点成分占铝合金的约0.1〜约3.0体积%。 组分可以是基本上不溶于铝合金基体的任何材料,以便形成不连续性,并且可以在加工过程中抵抗变形以增强基体和自由加工成分之间的空隙的形成。 组分包括在高温下具有高熔点和高强度和低溶解度的元素,氮化物,氧化物,硼化物,碳化物,硅化物,铝化物及其组合,使得组分在加工操作期间抵抗变形。 自由加工铝合金可以形成为工件,并进行任何加工操作。
    • 59. 发明授权
    • Conductive substrate for electrophotoconductor
    • 电子导体用导电基片
    • US06224987B1
    • 2001-05-01
    • US09328532
    • 1999-06-09
    • Hidetaka Yahagi
    • Hidetaka Yahagi
    • C22C2100
    • G03G5/102G03G5/104
    • A conductive substrate of an electrophotographic photoconductor has magnesium suicide precipitated therein as an impurity compound. The conductive substrate has an aluminum oxide film of minimum thickness deviation, and an aluminum base which exhibits a light scattering effect. An electrophotographic photoconductor using such a conductive substrate suppresses interference fringes caused by the interference action of a semiconductor laser light. Furthermore, irregular printing density and the formation of black spots is eliminated. A method for making such a conductive substrate includes annealing an aluminum base doped with silicon and magnesium to precipitate out Ms2Si, followed by anodizing a surface of the aluminum base to form an aluminum oxide film. A charge generation layer and a charge transport layer are formed on the aluminum oxide film to complete the electrophotographic photoconductor.
    • 电子照相感光体的导电性基材作为杂质化合物析出硅化镁。 导电性基板具有最小厚度偏差的氧化铝膜和呈现光散射效应的铝基体。 使用这种导电基板的电子照相感光体抑制由半导体激光的干涉作用引起的干涉条纹。 此外,消除了不规则的印刷密度和黑点的形成。 制造这种导电基板的方法包括使掺杂有硅和镁的铝基体退火以沉淀出Ms 2 Si,然后阳极氧化铝基材的表面以形成氧化铝膜。 在氧化铝膜上形成电荷产生层和电荷传输层以完成电子照相感光体。