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Graphical Method in CATIA to Profile the Hob Mill for Generating the Slitting Saw Cutter Teeth

机译:CATIA中的图形方法,用于配置滚刀磨机,用于产生锯切刀具齿

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The generation of the ordinate surfaces whirl attached to a centrode (e.g. cylindrical or helical gears teeth generation) with a hob mill is an efficient method, also recommended in machining the teeth of slitting saw cutter with high dimensions. Profiling the hob mill conjugated to the disc-tool (slitting saw cutter) teeth, depending on its tooth profile, is a specific problem. There are known both analytical methods to profile the hob mill – e.g. the Gohman method (which uses an intermediary surface – the reference rack-gear), and graphical methods (developed in AutoCAD). A profiling method, which uses the CATIA environment facilities in graphical design, laying on the principle of helical motion de-composition (Nikolaev theorem) has been recently suggested. In this paper, we present a method for hob mill profiling, in graphical form, based on a complementary theorem (the Minimum distance method). The reference rack-gear, conjugated to the disc-tool teeth, is firstly profiled and then, by starting from it, the peripheral surface of the hob mill for machining the slitting saw cutter teeth is determined.
机译:使用滚轴磨机附着在中心(例如圆柱形或螺旋齿轮齿生成)的纵坐标表面的产生是一种有效的方法,也建议加工具有高尺寸的切割锯切刀的齿。根据其牙齿剖面,剖析与盘式工具(切割锯切割器)齿的滚刀磨机是特定的问题。众所周知的是滚轴磨机的分析方法 - 例如, Gohman方法(使用中间表面 - 参考机架齿轮)和图形方法(在AutoCAD中开发)。一种仿形方法,利用图形设计中的CATIA环境设施,铺设了螺旋运动去组合物(Nikolaev Theorem)的原理。在本文中,我们基于互补定理(最小距离方法),以图形形式提出了一种用于滚轴谱的方法。首先将参考齿轮啮合,然后通过从其开始,确定用于加工切割锯切割齿的滚刀磨机的外围表面。

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