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    • 3. 发明申请
    • Surface-coated cutting tool member having hardcoating layer and method for forming hard coating layer on surface of cutting tool
    • 具有硬涂层的表面涂层切削工具构件和在切削工具的表面上形成硬涂层的方法
    • US20050089727A1
    • 2005-04-28
    • US10503325
    • 2003-01-30
    • Eiji NakamuraHidemitsu TakaokaYasuhiko Tashiro
    • Eiji NakamuraHidemitsu TakaokaYasuhiko Tashiro
    • C23C14/06C23C14/34C23C30/00C23C14/32B32B9/00B32B15/04
    • C23C14/0641C23C14/3464C23C30/005Y10T407/27Y10T428/265
    • A surface-coated cutting tool member exhibiting a superior tool life due to a hard coating layer thereof is provided. The surface-coated cutting tool member includes a tungsten carbide based cemented carbide substrate, a titanium carbonitride based cermet substrate, or a cubic boron nitride based sintered substrate; and a hard coating layer of a nitride compound containing titanium and yttrium, which is formed on a surface of the substrate using a physical vapor deposition method in an overall average thickness of 1 to 15 μm. The hard coating layer has a component concentration profile in which maximum Y component containing points (minimum Ti component containing points) and points without Y component (TiN points) appear alternatingly and repeatedly at a predetermined interval in a direction of thickness of the hard coating layer, and the amount of contained Y component is continuously changed from the maximum Y component containing points to the points without Y component and from the points without Y component to the maximum Y component containing points, the maximum Y component containing points satisfy a composition formula of (Ti1-XYX)N (where X indicates an atomic ratio of 0.005 to 0.15), and a distance between one of the maximum Y component containing points and adjacent one of the points without Y component is from 0.01 to 0.1 μm.
    • 提供了由于其硬涂层而具有优异的工具寿命的表面涂覆的切削工具构件。 表面涂覆的切削工具构件包括碳化钨基硬质合金基板,基于碳氮化钛的金属陶瓷基板或立方氮化硼基烧结基板; 以及包含钛和钇的氮化物的硬涂层,其使用物理气相沉积法在基板的表面上形成总平均厚度为1至15μm。 硬涂层具有成分浓度分布,其中含有最大Y成分(含最少Ti成分的点)和不含Y成分的点(TiN点)以硬涂层的厚度方向以预定间隔交替重复出现 ,并且所含的Y成分的含量从包含最大Y成分的点到不含Y成分的点和不含Y成分的点连续地变化为含有最多Y成分的点,所以含有Y成分的最大Y成分满足下式 (Ti 1-X X Y X)N(其中X表示原子比为0.005〜0.15),以及最大Y成分含有点和相邻的Y成分之间的距离 没有Y分量的点之一是从0.01到0.1毫米。
    • 5. 发明授权
    • Surface-coated cutting tool member having hard coating layer and method for forming the hard coating layer on surface of cutting tool
    • 具有硬涂层的表面涂层切削工具构件和在切削工具的表面上形成硬涂层的方法
    • US07144639B2
    • 2006-12-05
    • US10503325
    • 2003-01-30
    • Eiji NakamuraHidemitsu TakaokaYasuhiko Tashiro
    • Eiji NakamuraHidemitsu TakaokaYasuhiko Tashiro
    • B23B27/14
    • C23C14/0641C23C14/3464C23C30/005Y10T407/27Y10T428/265
    • A surface-coated cutting tool member exhibiting a superior tool life due to a hard coating layer thereof is provided. The surface-coated cutting tool member includes a tungsten carbide based cemented carbide substrate, a titanium carbonitride based cermet substrate, or a cubic boron nitride based sintered substrate; and a hard coating layer of a nitride compound containing titanium and yttrium, which is formed on a surface of the substrate using a physical vapor deposition method in an overall average thickness of 1 to 15 μm. The hard coating layer has a component concentration profile in which maximum Y component containing points (minimum Ti component containing points) and points without Y component (TiN points) appear alternatingly and repeatedly at a predetermined interval in a direction of thickness of the hard coating layer, and the amount of contained Y component is continuously changed from the maximum Y component containing points to the points without Y component and from the points without Y component to the maximum Y component containing points, the maximum Y component containing points satisfy a composition formula of (Ti1-XYX)N (where X indicates an atomic ratio of 0.005 to 0.15), and a distance between one of the maximum Y component containing points and adjacent one of the points without Y component is from 0.01 to 0.1 μm.
    • 提供了由于其硬涂层而具有优异的工具寿命的表面涂覆的切削工具构件。 表面涂覆的切削工具构件包括碳化钨基硬质合金基板,基于碳氮化钛的金属陶瓷基板或立方氮化硼基烧结基板; 以及包含钛和钇的氮化物的硬涂层,其使用物理气相沉积法在基板的表面上形成总平均厚度为1至15μm。 硬涂层具有成分浓度分布,其中含有最大Y成分(含最少Ti成分的点)和不含Y成分的点(TiN点)以硬涂层的厚度方向以预定间隔交替重复出现 ,并且所含的Y成分的含量从包含最大Y成分的点到不含Y成分的点和不含Y成分的点连续地变化为含有最多Y成分的点,所以含有Y成分的最大Y成分满足下式 (Ti 1-X X Y X)N(其中X表示原子比为0.005〜0.15),以及最大Y成分含有点和相邻的Y成分之间的距离 没有Y分量的点之一是从0.01到0.1毫米。
    • 6. 发明授权
    • Surface-coated carbide alloy tool
    • 表面硬质合金刀具
    • US06855405B2
    • 2005-02-15
    • US10108390
    • 2002-03-29
    • Koki OkadaYasuhiko TashiroEiji Nakamura
    • Koki OkadaYasuhiko TashiroEiji Nakamura
    • C23C14/02C23C30/00B23B27/14
    • C23C14/024C23C30/005Y10T407/27Y10T428/24975Y10T428/265
    • A cutting tool has a surface-coated carbide alloy and a wear-resistant coating layer which has excellent adhesion and chipping resistance. The cutting tool has a surface-coated carbide alloy comprising: a tungsten carbide-based carbide alloy substrate having an amorphous layer formed by an arc ion plating surface treatment to an average depth of 1 to 50 nm from the surface; and a wear-resistant coating layer deposited physically and/or chemically on the surface of the tungsten carbide-based carbide alloy substrate, the wear-resistant coating layer comprising: (a) a lower tough layer made of a titanium nitride layer and having an average thickness of 0.1 to 5 μm; and a single-layered or multi-layered surface hard layer which is made of a composite nitride layer of Ti and Al and a composite carbonitride layer of Ti and Al, which respectively satisfy the composition formula: (Ti1-XAlX)N and the composition formula: (Ti1-XAlX)C1-YNY (wherein X represents 0.15 to 0.65 and Y represents 0.5 to 0.99 in terms of an atomic ratio), and has an average thickness of 0.5 to 15 μm.
    • 切割工具具有表面涂覆的碳化物合金和耐磨性优异的涂层,其具有优异的粘合性和耐崩裂性。 该切削工具具有表面涂覆的碳化物合金,其特征在于,具有碳化钨系碳化物合金基板,其具有通过电弧离子电镀表面处理而形成的非晶层,其表面平均深度为1〜50nm; 以及在所述碳化钨基碳化物合金基体的表面上物理和/或化学沉积的耐磨涂层,所述耐磨涂层包括:(a)由氮化钛层制成的下韧性层, 平均厚度为0.1〜5um; 以及由Ti和Al的复合氮化物层和Ti和Al的复合碳氮化物层分别满足组成式(Ti1-XAlX)N和组成(Ti1-XAlX)N组成的单层或多层表面硬质层 式(Ti1-XAlX)C1-YNY(其中X表示0.15〜0.65,Y表示原子比为0.5〜0.99),平均厚度为0.5〜15μm。