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A Method for Identification and Compensation of Machining Errors of Digital Gear Tooth Surfaces

机译:一种数字齿轮齿面加工误差的识别与补偿方法

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摘要

In order to generate the digital gear tooth surfaces ( DGTS ) with high efficiency and high precision , a method for identification and compensation of machining errors is demonstrated in this paper. Machining errors are analyzed directly from the real tooth surfaces. The topography data of the part are off-line measured in the post-process. A comparison is made between two models : CAD model of DGTS and virtual model of the physical measured surface. And a matching rule is given to determine these two surfaces in an appropriate fashion . The developed error estimation model creates a point-to-point map of the real surface to the theoretical surface in the normal direction . A "pre-calibration error compensation" strategy is presented. Through processing the results of the first trail cutting, the total compensation error is predicted and an imaginary digital tooth surface is reconstructed. The machining errors in the final manufactured surfaces are minimized by generating this imaginary surface. An example of machining 2-D DGTS verifies the developed method. The research is of important theoretical and practical value to manufacture the DGTS and other digital conjugate surfaes.
机译:为了高效,高精度地产生数字齿轮齿面(DGTS),本文提出了一种识别和补偿加工误差的方法。直接从真实牙齿表面分析加工误差。零件的形貌数据是在后处理中离线测量的。比较了两种模型:DGTS的CAD模型和物理测量表面的虚拟模型。并给出了匹配规则以适当的方式确定这两个表面。开发的误差估计模型会创建法线方向上的实际表面到理论表面的点对点映射。提出了“预校准误差补偿”策略。通过处理第一个轨迹切割的结果,可以预测总补偿误差并重建虚拟的数字牙齿表面。通过生成该假想表面,可以最大程度地减少最终制造表面中的加工误差。加工二维DGTS的示例验证了所开发的方法。该研究对制造DGTS和其他数字共轭表面具有重要的理论和实用价值。

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