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    • 11. 发明授权
    • Gear finishing process
    • 齿轮精加工
    • US5140781A
    • 1992-08-25
    • US819899
    • 1992-01-13
    • William L. MarshKenneth L. Kaufman
    • William L. MarshKenneth L. Kaufman
    • B23F1/02B23F21/02B24B29/02
    • B24B29/02B23F1/02B23F21/02
    • Reduction of index undulation errors associated with helical gear teeth caused by the grinding process during the manufacture of the gears without degrading other gear accuracies (e.g. profile, tooth spacing) below levels required for precision (AGMA16 or DIN1) gears. A mold of the space between several gear teeth is obtained, with the mold having a length equal to or greater than the wavelength of the undulation error to be reduced. A microfinishing film is affixed to the mold and the mold is placed relative to a gear tooth so that the microfinishing film rests against a tooth surface having the undulation error. The grit size of the microfinishing film is such as to remove approximately 2 to 3 millionths of gear material with each pass through the teeth by the mold. Multiple passes are made by hand until the undulation error is reduced to an acceptable value. During the process the microfinishing film is replaced after approximately 3 or 4 passes and the process is repeated for each tooth of the gear.
    • 在齿轮制造期间减少由磨削过程引起的螺旋齿轮齿的引起波动误差,而不会降低其他齿轮精度(例如轮廓,齿距)低于精密(AGMA16或DIN1)齿轮所需的水平。 获得多个齿轮齿之间的空间的模具,其中模具的长度等于或大于波动误差的波长将被减小。 将微细精加工膜固定到模具上,并且相对于齿轮齿放置模具,使得微细精加工膜抵靠具有起伏误差的齿面。 微精加工薄膜的粗细尺寸可以消除大约2-3百万分之一的齿轮材料,每个齿通过模具通过齿。 手工进行多次通过,直到波动误差降低到可接受的值。 在该过程中,大约3或4次通过后更换微乳化膜,并且对齿轮的每个齿重复该过程。
    • 13. 发明授权
    • Method for grinding gear teeth
    • 牙齿磨齿方法
    • US4971602A
    • 1990-11-20
    • US413009
    • 1989-09-26
    • Robert B. Crawford
    • Robert B. Crawford
    • B23F1/02B23F21/02B24D18/00
    • B23F21/02B23F1/02B24D18/00
    • A method for form grinding gears is disclosed using diamond or cubic boron nitride as the abrasive including form grinding a female wheel with a master gear form grinding wheel to produce a desired gear tooth profile on the circumference of the female wheel. The female wheel is then made oversize by bonding diamond or cubic boron nitride abrasive to its grinding surface. A male wheel is then form ground with the female wheel to produce a undersized tooth profile on the male wheel. After the male wheel is plated with diamond or cubic boron nitride abrasive it is at the desired tooth profile and can then be used to form grind gears having the desired tooth profile.
    • 公开了一种用于形成研磨齿轮的方法,其中使用金刚石或立方氮化硼作为研磨剂,包括用母齿轮砂轮研磨母轮,以在母轮的圆周上产生期望的齿轮齿廓。 然后通过将金刚石或立方氮化硼研磨剂与其研磨表面结合而将母轮制成尺寸过大。 然后,雄轮与母轮成形,以在雄轮上产生尺寸过小的齿廓。 在阳轮被镀金刚石或立方氮化硼磨料之后,它处于所需的齿廓,然后可用于形成具有所需齿廓的磨齿轮。