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基于B 样条曲面插值误差控制的内超环面齿轮齿面建模

  

  • 出版日期:2014-10-30 发布日期:2015-05-05

Stationary Internal Toroidal Gear Tooth Surface Modeling Based on B-spline Surface Interpolation Error Control

  • Online:2014-10-30 Published:2015-05-05

摘要: 针对内超环面齿轮齿面数控加工精度难以保证的问题,提出一种基于B 样条曲面
插值误差控制的内超环面齿轮齿面建模的方法。该方法以内超环面齿轮理论齿面原型为依据,
运用B 样条曲面构造插值曲面,计算插值曲面片与理论齿面之间的误差。通过插值误差分析,
根据误差分布特点,将型值点网格不断细化,获得一组型值点阵,经插值重构后可得到满足精
度要求的内超环面齿轮齿廓模型。最后,通过数控加工验证了建模的有效性。基于B 样条曲面
插值误差控制的内超环面齿轮齿面建模方法为获得高精度的内超环面齿轮实体模型奠定了理
论基础。

关键词: 超环面行星蜗杆传动, 内超环面齿轮, B 样条曲面, 插值误差, 网格细化

Abstract: A method of stationary internal toroidal gear tooth surface modeling based on B-spline
surface is put forward in allusion to the difficulty of ensuring numerical control machining accuracy of
stationary internal toroidal gear tooth surface. The interpolation curved surface is constructed by
B-spline surface based on the theoretic tooth surface of stationary internal toroidal gear and then errors
of theoretic tooth surface and interpolation curved surface are calculated. According to error distribution
characteristics a set of data points can be obtained by error analysis and mesh refinement. The helical
tooth surface model of stationary internal toroidal gear that meets accuracy requirement is obtained by
interpolation reconstruction. In the end the validity of the modeling is verified by numerical control
machining. This method provides a theoretical basis of acquiring high-accuracy stationary internal
toroidal gear model.

Key words: toroidal drive, stationary internal toroidal gear, B-spline surface, interpolation error, mesh
refinement