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    • 2. 发明申请
    • METHOD FOR DRESSING THREADED GRINDING STONE FOR INTERNAL GEAR GRINDING
    • 用于内螺纹磨削的螺纹磨石的方法
    • US20130130598A1
    • 2013-05-23
    • US13580399
    • 2010-10-06
    • Yoshikoto YanaseMasashi OchiYasuhiro Nakamichi
    • Yoshikoto YanaseMasashi OchiYasuhiro Nakamichi
    • B24B53/075
    • B24B53/075B23F5/163B23F23/1231B24B53/062G05B19/186
    • Disclosed is a method for dressing a threaded grinding stone for internal gear grinding, by which a threaded grinding stone for grinding an internal gear can be dressed with a high degree of accuracy by using a dressing gear that has been produced with a high degree of accuracy. In a state in which a barrel-shaped threaded grinding stone (11), which is disposed at an axial angle (Σ) to the internal gear (W) that is conferred during the grinding of said internal gear (W), and an external tooth-type dressing gear (13), which is capable of meshing with a virtual external gear (14) virtually formed in a manner so as to mesh with the internal gear (W) in place of the threaded grinding stone (11) disposed at the axial angle (Σ), have been meshed together, the threaded grinding stone (11) and the dressing gear (13) are simultaneously rotated while being moved relatively in a circular arc in the X-Y plane, whereby the dressing gear (13) dresses along the entire area in the axis direction of the threaded grinding stone (11).
    • 公开了一种修整用于内齿轮磨削的螺纹磨石的方法,通过使用已经以高精度制造的修整齿轮,可以高精度地修整用于研磨内齿轮的螺纹磨石 。 在这样的状态下,在研磨所述内齿轮(W)期间被赋予与所述内齿轮(W)成轴向角度(Sigma)的筒形螺纹磨石(11)和外部 齿型修整齿轮(13),其能够与虚拟外部齿轮(14)啮合,虚拟外齿轮(14)以与内齿轮(W)啮合的方式实际形成,而不是设置在螺纹磨石 轴向角度(Sigma)已经啮合在一起,螺纹磨石(11)和修整齿轮(13)在XY平面内相对于圆弧相对运动的同时旋转,由此修整齿轮(13)穿着 沿着螺纹磨石(11)的轴线方向的整个区域。
    • 3. 发明申请
    • INTERNAL GEAR GRINDING MACHINE AND DRESSING METHOD FOR BARREL-SHAPED THREADED TOOL
    • 用于圆柱形螺纹工具的内齿轮研磨机和连接方法
    • US20110275290A1
    • 2011-11-10
    • US13141250
    • 2009-12-16
    • Masashi OchiYoshikoto Yanase
    • Masashi OchiYoshikoto Yanase
    • B24B53/075B23F5/04
    • B24B53/12B23F5/04B23F23/1225B24B53/075
    • An object is to provide an internal gear grinding machine and a dressing method for a barrel-shaped threaded tool which make it possible to achieve space savings and reduce the size of a machine by simplifying dressing operation. To achieve the object, an internal gear grinding machine for use in grinding a workpiece (W) by synchronously rotating the workpiece (W) and a barrel-shaped threaded grinding wheel (17) in mesh with each other includes a dressing device (20) for dressing the threaded tool (17) by meshing the threaded grinding wheel (17) with a disk dresser (56). At the time of dressing, the threaded grinding wheel (17) and the disc dresser (56) are operated in accordance with the helix angle and the barrel shape of the threaded grinding wheel (17).
    • 本发明的目的是提供一种用于桶形螺纹工具的内齿轮研磨机和修整方法,其可以通过简化修整操作来实现空间节省和减小机器的尺寸。 为了实现该目的,通过使工件(W)与相互啮合的筒状螺纹砂轮(17)同步旋转而用于研磨工件(W)的内齿轮磨床包括修整装置(20) 用于通过将螺纹砂轮(17)与圆盘修整器(56)啮合来修整螺纹工具(17)。 在修整时,螺纹砂轮(17)和圆盘修整器(56)根据螺纹砂轮(17)的螺旋角和筒形操作。
    • 4. 发明授权
    • Method for manufacturing screw-shaped tool
    • 螺丝刀具的制造方法
    • US09120167B2
    • 2015-09-01
    • US14123086
    • 2012-02-17
    • Yoshikoto YanaseMasashi Ochi
    • Yoshikoto YanaseMasashi Ochi
    • B24B53/07B23F21/02B23F13/00
    • B23F21/02B23F13/006B23F15/06B23F21/026B23F21/16
    • A method for manufacturing a screw-shaped tool for grinding a face gear with high precision. The tool is formed in such a manner that the diameter thereof gradually increases from an axial end to an intermediate section in the axial direction, and is used for cutting a face gear. The method includes setting up, on the basis of a prescribed pinion which is to mesh with the face gear to be machined, a virtual gear that is to mesh with the prescribed pinion, and has a greater number of teeth than the prescribed pinion; setting up, on the basis of the virtual gear, a virtual inner gear which has the same number of teeth as the virtual gear, said teeth being on the inside; and setting up, on the basis of the virtual inner gear, a screw-shaped grindstone having various elements that are used for cutting the virtual inner gear.
    • 一种用于高精度磨削齿轮的螺丝刀的制造方法。 工具形成为使其直径在轴向从轴向端部向中间部分逐渐增加,并且用于切割面齿轮。 该方法包括:根据与待加工的面齿轮啮合的规定小齿轮,设置与规定小齿轮啮合并具有比规定小齿轮多的齿数的虚拟齿轮; 基于虚拟齿轮设置具有与虚拟齿轮相同数量的齿的​​虚拟内齿轮,所述齿在内侧; 并且基于虚拟内齿轮设置具有用于切割虚拟内齿轮的各种元件的螺旋形磨石。
    • 6. 发明申请
    • CLAMPING DEVICE
    • 夹紧装置
    • US20130228960A1
    • 2013-09-05
    • US13824824
    • 2011-09-15
    • Masashi OchiYoshikoto Yanase
    • Masashi OchiYoshikoto Yanase
    • B23Q3/08
    • B23Q3/082B23B31/025B23B31/10B23B31/30B23F23/06B23F23/08B23Q3/062
    • Provided is a clamping device having improved safety and an improved clamping force for clamping a work to an attaching table, said work having the inner circumferential surface thereof to be processed. The clamping device clamps a work (101) disposed on the reference surface (32) of an attaching table (30). The clamping device is provided with: a board-like fixing member (10), which has formed therein a hole (11a) that is larger than the inner diameter (D1) of the work (101) but smaller than the outer diameter (D2) of the work, and which is in surface-contact with the end surface (101a) of the work (101) disposed on the reference surface (32) of the attaching table (30); and a pressing force applicator (20), which has a cylindrical shape that surrounds the attaching table (30), and which applies a pressing force toward the end surface (101a) of the work (101) with respect to the fixing member (10).
    • 提供了一种具有改进的安全性的夹紧装置和用于将工件夹紧到附接台上的改进的夹紧力,所述工件的内周表面被加工。 夹紧装置夹持设置在附接台(30)的参考表面(32)上的工件(101)。 夹紧装置设置有:板状固定部件,其形成有比工件(101)的内径(D1)大但小于外径(D2)的孔(11a) ),并且与安装台(30)的基准面(32)上的工件(101)的端面(101a)表面接触; 以及压力施加器(20),其具有围绕所述安装台(30)的圆筒形状,并且相对于所述固定构件(10)向所述工件(101)的端面(101a)施加按压力 )。
    • 7. 发明申请
    • INTERNAL GEAR MACHINING METHOD AND INTERNAL GEAR MACHINING DEVICE
    • 内齿轮加工方法和内齿轮加工装置
    • US20120184183A1
    • 2012-07-19
    • US13389413
    • 2010-08-06
    • Yoshikoto YanaseMasashi Ochi
    • Yoshikoto YanaseMasashi Ochi
    • B23F5/04B23F15/00
    • B23F23/1218G05B19/186G05B2219/45214
    • An internal gear machining method and an internal gear machining device, are provided for grinding of a tooth profile of an internal gear using a barrel-shaped threaded grinding wheel. An NC device functions as a tooth profile error correction means and reduces a measured pressure angle error of a workpiece at a tooth face by correcting the radial position, the lateral position of the grinding wheel, the turning angle of the grinding wheel, and the helical motion; reduces a measured error in the direction of a tooth trace of the workpiece at a tooth face by correcting the helical motion; and reduces a measured tooth thickness error of the workpiece at a tooth face by correcting the radial position, the lateral position of the grinding wheel, and the helical motion.
    • 提供内齿轮加工方法和内齿轮加工装置,用于使用筒形螺纹砂轮研磨内齿轮的齿廓。 NC装置用作齿廓误差校正装置,并且通过校正径向位置,砂轮的横向位置,砂轮的转动角度以及螺旋形的角度来减小工件在齿面处的测量的压力角误差 运动; 通过校正螺旋运动来减小在牙齿面处的工件齿迹方向的测量误差; 并且通过校正径向位置,砂轮的横向位置和螺旋运动来减小在牙齿面处的工件的测量齿厚度误差。
    • 9. 发明申请
    • DRESSING METHOD FOR DRUM-SHAPED GEAR-LIKE GRINDSTONE, AND DISK DRESSER
    • 用于形成齿形齿轮的磨石方法和盘式磨床
    • US20140357167A1
    • 2014-12-04
    • US14348168
    • 2012-02-20
    • Yoshikoto YanaseMasashi OchiYasuhiro Nakamichi
    • Yoshikoto YanaseMasashi OchiYasuhiro Nakamichi
    • B24B53/075B24B53/12
    • B24B53/075B23F23/1225B24B53/085B24B53/12
    • A disk dresser and a dressing method enable high-precision dressing of a drum-shaped gear-like grindstone and shaping of the cutting teeth of the grindstone without changing the shape of the cutting teeth of the disk dresser. A drum-shaped gear-like grindstone is brought into linear contact with a workpiece so as to link with the contours of the tooth right angle cross-section orthogonal to the twist direction of the workpiece teeth. The grindstone and a disk dresser, in an engaged state, are caused to rotate synchronously, thereby causing the drum-shaped grindstone to be dressed by the disk dresser. The disk dresser blade shape is made to match the tooth right angle cross-section shape of the teeth of the ground workpiece. The grindstone and the disk dresser are caused to move and revolve in accordance with the drum shape and the angle of twist of the grindstone.
    • 圆盘修整器和修整方法能够对鼓形齿轮状磨石进行高精度的修整,并且可以在不改变圆盘修整器的切割齿的形状的情况下对磨石的切割齿进行成形。 鼓形齿轮状磨石与工件线性接触,以与与工件齿的扭转方向正交的齿直角横截面的轮廓连接。 处于接合状态的磨石和盘形修整器被引起同步旋转,从而使滚筒磨石由盘修整器穿着。 圆盘修整器叶片形状与地面工件齿的齿直角截面形状相匹配。 磨石和圆盘修整器根据鼓形状和磨石的扭转角度移动和旋转。
    • 10. 发明授权
    • Method of dressing barrel worm-shaped tool, dressing apparatus, and internal-gear grinding machine
    • 修整桶形蜗杆工具,修整装置和内齿轮磨床的方法
    • US08460064B2
    • 2013-06-11
    • US12668593
    • 2008-08-12
    • Yoshikoto YanaseMasashi OchiHiroshi Gunbara
    • Yoshikoto YanaseMasashi OchiHiroshi Gunbara
    • B24B1/00
    • B24B53/085B23F23/1225Y10T409/10
    • In a method of dressing a barrel worm-shaped tool, a disc-shaped disc dresser (13) meshes with a barrel worm-shaped grinding wheel (12) having its diameter gradually increasing from the two end portions in the axial direction thereof towards the middle portion thereof and used to grind an internal gear (11). The barrel worm-shaped grinding wheel (12) rotates around a tool-rotating shaft (B) disposed at a predetermined shaft angle (A1) with a vertical work-rotating shaft (C1) for the internal gear (11). The disc dresser (13) rotates around a dresser-rotating shaft (D), the disc dresser (13) being disposed at an angle equal to a helix angle of the internal gear (11). While the barrel worm-shaped grinding wheel (12) and the disc dresser (13) mesh with each other and are rotating, the barrel worm-shaped grinding wheel (12) and the disc dresser (13) revolve relative to each other within a horizontal plane.
    • 在一种用于修整桶形蜗杆工具的方法中,盘形盘式修整器(13)与其直径从其两个端部沿其轴向方向逐渐增加的筒形磨轮(12)啮合, 其中间部分用于研磨内齿轮(11)。 筒形蜗轮(12)围绕设置在预定轴角(A1)的工具转动轴(B)旋转,内部齿轮(11)具有垂直加工旋转轴(C1)。 盘式修整器(13)围绕修整器旋转轴(D)旋转,盘形修整器(13)以等于内齿轮(11)的螺旋角的角度设置。 当桶形蜗杆形砂轮(12)和盘式修整器(13)彼此啮合并且旋转时,筒形蜗杆形砂轮(12)和盘式修整器(13)相对于彼此旋转, 水平面。