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    • 5. 发明授权
    • Method for generating of gear-shaped precision-working tools, in
particular for regrinding shaving gears, and a gear-shaped tool, in
particular a shaving gear, to which the method can be applied
    • 用于产生齿轮形精密加工工具的方法,特别是用于重新研磨剃须齿轮的齿轮形工具,以及可应用该方法的齿轮形工具,特别是剃须齿轮
    • US5377457A
    • 1995-01-03
    • US61864
    • 1993-05-14
    • Herbert LoosManfred Erhardt
    • Herbert LoosManfred Erhardt
    • B23F5/02B23F21/00B23F21/28B24B53/085
    • B23F21/28B23F21/00B23F5/02Y10T407/1735Y10T409/105724Y10T409/107632
    • Gear-shaped precision-working tools, in particular shaving gears, capable of providing an optimum machining result only during a portion of their entire lifetime, since during each regrinding (generating), the profile displacement factor, and thus the number of the tooth flanks which engage successively and simultaneously one after the other the workpiece gear to be machined, is changed. This is remedied with the invention in such a manner that the precision-working tool is reground (generated) while maintaining the original number of teeth (z) and the original normal module of the pitch angle (.beta.), the module in transverse section and the base circle diameter are changed in such a manner that little or no change occurs to an original profile displacement factor (x). When the tool, which is to be reground (to be generated) in this manner, has grooved tooth flanks (12, 13), for grooves (14) increases continuously from a first groove (14') mutually adjacent one end of a tooth flank (12, 13) up to a second groove (14") mutually adjacent an other end of the same tooth flank, the grooves (14") having the greatest depth and the grooves (14') having the least on mutually adjacent and opposing tooth flanks (12, 13) opposing one another.
    • 齿轮形精密加工工具,特别是剃须齿轮,仅在其整个使用寿命的一部分期间才能提供最佳的加工结果,因为在每次再研磨(产生)期间,轮廓位移因子以及因此的齿面数 相继地并且同时一个接一个地接合待加工的工件齿轮。 本发明以这样一种方式补救,使得精密加工工具在保持原始齿数(z)和原始正常模块的俯仰角(β),模块在横截面中再生(生成),并且 基圆直径以原始轮廓位移因子(x)发生很小变化或不发生变化的方式改变。 当以这种方式再生(待生成)的工具具有开槽的齿面(12,13)时,槽(14)的凹槽(14')从与牙齿的一端相邻的第一凹槽(14')连续地增加 (12,13),直到与相同齿面的另一端相邻的第二凹槽(14“),具有最大深度的凹槽(14”)和凹槽(14')具有最小的相互 相邻和相对的齿面(12,13)彼此相对。