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    • 1. 发明申请
    • Flexible materials processing rotation tool
    • 柔性材料加工旋转工具
    • US20070077874A1
    • 2007-04-05
    • US11534315
    • 2006-09-22
    • Yoshitada AtakaAkira OsadaRyuichi Matsuki
    • Yoshitada AtakaAkira OsadaRyuichi Matsuki
    • B24B21/18
    • B24D7/18B24B53/017B24B53/12
    • A flexible material processing rotation tool that executes processing against a target material composed of flexible material, and which is characterized by forming or more cutting blade protrusions on the surface of the substrate so that they project upward, formation of an inclined surface on the surface of cutting blade protrusion and formation of cutting blade ridge at the section that projects most upward from among the ridge areas of inclined surface, and by arrangement so that a portion of the inclined surfaces of cutting blade protrusions facing at least in one direction of the circumferential direction of the rotation of the substrate, and arrangement of at least a portion of the remaining inclined surfaces of cutting blade protrusions in at least the other direction of the circumferential direction of the rotation of the substrate.
    • 一种柔性材料处理旋转工具,其对由柔性材料构成的目标材料执行处理,其特征在于,在所述基板的表面上形成或更多切割刀片突起,使得它们向上突出,在所述表面上形成倾斜表面 切割刀片突起和在从倾斜表面的脊区域中最向最突出的部分形成切割刀脊,并且通过布置使得切割刀片突起的倾斜表面的一部分至少沿圆周方向的一个方向 基板旋转的至少一部分,以及至少沿着基板的旋转方向的另一方向的切割刀片突起的剩余倾斜面的至少一部分的布置。
    • 2. 发明申请
    • SURFACE-COATED CUTTING TOOL
    • 表面涂层切割工具
    • US20140287210A1
    • 2014-09-25
    • US14241681
    • 2012-08-31
    • Kohei TomitaAkira Osada
    • Kohei TomitaAkira Osada
    • B23B27/14
    • B23B27/14C23C16/0272C23C16/029C23C16/403C23C16/45523C23C28/042C23C28/044Y10T428/24975
    • A surface-coated cutting tool with a hard coating layer exhibiting an excellent flaking and chipping resistance in a high-speed heavy and intermittent cutting is provided. The vapor-deposited hard coating layer has a lower layer (Ti compound layer) and an upper layer (α-type Al2O3 layer). Thirty to 70% of Al2O3 crystal grains directly above the lower layer are oriented to (11-20) plane. Forty-five % or more of all of the Al2O3 crystal grains are oriented to (0001) plane. Preferably, the outermost surface layer of the lower layer is an oxygen-containing TiCN layer having oxygen content of 0.5 to 3 atomic % only within the depth region of 500 nm n. The ratio of the number of Al2O3 crystal grains directly above the outermost surface layer to the number of crystal grains of the Ti carbonitride layer in the outermost surface layer is 0.01 to 0.5 in the interface.
    • 提供了一种在高速重和间歇切割中具有优异的剥离和耐崩裂性的硬涂层的表面涂层切削工具。 气相沉积硬涂层具有下层(Ti化合物层)和上层(α型Al 2 O 3层)。 正下方的30%〜70%的Al 2 O 3晶粒取向为(11-20)面。 所有Al2O3晶粒中的45%以上取向为(0001)面。 优选地,下层的最外表面层仅在500nm n的深度区域内具有氧含量为0.5-3原子%的含氧TiCN层。 在表面最外层的正上方的Al 2 O 3晶粒数与最外层的Ti碳氮化物层的晶粒数的比例在界面中为0.01〜0.5。