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THREE-DIMENSIONAL SPATIAL MESHING QUALITY PRE-CONTROL OF HARMONIC DRIVE BASED ON DOUBLE-CIRCULAR-ARC TOOTH PROFILE

机译:基于双圆弧齿廓的谐波驱动三维空间网格化质量预控制

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In the current harmonic drive tooth profile design, the three-dimensional spatial spline tooth meshing is not fully considered, which results in problems such as inconsistence of harmonic gearing backlash, low loading capacity, low transmission accuracy and even meshing tooth profile interference in actual machining of the harmonic reducer. Based on this, this paper proposes a harmonic drive meshing quality test method at extremely low input speed based on tooth profile of double-circular-arc profile (DCTP). And combined with the theory of spatial multi-tooth meshing, the corresponding pre-control of different tooth profile modification is analyzed. The optimized non-interference three-dimensional spatial tooth profile modification method is proposed, which effectively reduces its transmission error.
机译:在当前的谐波传动齿廓设计中,并未充分考虑三维空间花键齿啮合,从而导致谐波齿轮齿隙的不一致,负荷能力低,传动精度低以及在实际加工中啮合齿廓干扰均匀等问题。谐波减速器。基于此,本文提出了一种基于双圆弧齿形(DCTP)的齿形在极低输入速度下的谐波传动啮合质量测试方法。并结合空间多齿啮合理论,分析了不同齿形修改的相应预控制。提出了一种优化的无干扰三维空间齿廓修正方法,有效降低了其传输误差。

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