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    • 3. 发明授权
    • Tooth-profile management system for shaving-cutter grinding machine
    • 剃须刀磨床牙齿管理系统
    • US08790156B2
    • 2014-07-29
    • US13502752
    • 2010-10-06
    • Yoshikoto YanaseRyuzo Hayashi
    • Yoshikoto YanaseRyuzo Hayashi
    • B24B49/18
    • B23F19/06B23F21/28B24B49/02B24B53/085
    • A personal computer has correction coefficients (α) for tooth-profile error correction and correction coefficients (β) for meshing position correction which are set for each number of times a shaving cutter is sharpened, and for each cutter feature of the shaving cutter. Target tooth-profile data (Do), tooth-profile error data (ΔD) which is the difference between the target tooth-profile data (Do) and measured tooth-profile data (Dm), and the correction coefficient (α) and the correction coefficient (β) captured in correspondence with the number of times sharpening is performed, and the cutter features are applied to an equation Dcc=Do+α·ΔD+β to find aimed tooth-profile data (Dcc). Shaving-cutter tooth-profile data (ds) is found from the aimed tooth-profile data (Dcc). Thus, the shaving cutter can be sharpened appropriately even when the outer diameter and tooth thickness of the shaving cutter are reduced by sharpening the shaving cutter.
    • 个人计算机具有用于齿廓修正的校正系数(α)和针对剃须刀被削尖的每个次数设定的啮合位置校正的校正系数(&bgr),以及剃须刀的每个切割器特征。 目标齿廓数据(Do),作为目标齿廓数据(Do)与测量齿廓数据(Dm)之间的差异的齿廓误差数据(&Dgr; D)和校正系数(α) 并且与执行锐化次数相对应地捕获的校正系数(&bgr),并且切割器特征被应用于等式Dcc = Do +α·&Dgr; D +&bgr; 找到目标牙齿轮廓数据(Dcc)。 从目标牙齿轮廓数据(Dcc)中可以看到剃刀齿廓数据(ds)。 因此,即使通过磨削剃须刀来减少剃须刀的外径和齿厚度,也可以适当地削尖剃须刀。
    • 6. 发明申请
    • TOOTH-PROFILE MANAGEMENT SYSTEM FOR SHAVING-CUTTER GRINDING MACHINE
    • 切割机研磨机的牙齿型材管理系统
    • US20120252318A1
    • 2012-10-04
    • US13502752
    • 2010-10-06
    • Yoshikoto YanaseRyuzo Hayashi
    • Yoshikoto YanaseRyuzo Hayashi
    • B24B3/12
    • B23F19/06B23F21/28B24B49/02B24B53/085
    • A personal computer has correction coefficients (α) for tooth-profile error correction and correction coefficients (β) for meshing position correction which are set for each number of times a shaving cutter is sharpened, and for each cutter feature of the shaving cutter. Target tooth-profile data (Do), tooth-profile error data (ΔD) which is the difference between the target tooth-profile data (Do) and measured tooth-profile data (Dm), and the correction coefficient (α) and the correction coefficient (β) captured in correspondence with the number of times sharpening is performed, and the cutter features are applied to an equation Dcc=Do+α·ΔD+β to find aimed tooth-profile data (Dcc). Shaving-cutter tooth-profile data (ds) is found from the aimed tooth-profile data (Dcc). Thus, the shaving cutter can be sharpened appropriately even when the outer diameter and tooth thickness of the shaving cutter are reduced by sharpening the shaving cutter.
    • 个人计算机具有用于齿廓修正的校正系数(α)和针对剃须刀被削尖的每个次数设定的啮合位置校正的校正系数(&bgr),以及剃须刀的每个切割器特征。 目标齿廓数据(Do),作为目标齿廓数据(Do)与测量齿廓数据(Dm)之间的差异的齿廓误差数据(&Dgr; D)和校正系数(α) 并且与执行锐化次数相对应地捕获的校正系数(&bgr),并且切割器特征被应用于等式Dcc = Do +α·&Dgr; D +&bgr; 找到目标牙齿轮廓数据(Dcc)。 从目标牙齿轮廓数据(Dcc)中可以看到剃刀齿廓数据(ds)。 因此,即使通过磨削剃须刀来减少剃须刀的外径和齿厚度,也可以适当地削尖剃须刀。