一种内啮合强力珩齿机几何误差建模与迭代补偿方法

By establishing a multi-axis coupled geometric error model and iterative compensation strategy for internal meshing high-strength gear honing machines, the problem of low accuracy of traditional compensation methods was solved, and the machining accuracy of internal meshing high-strength gear honing machines was improved.

CN118106565BActive Publication Date: 2026-07-17CHONGQING UNIV

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHONGQING UNIV
Filing Date
2023-11-20
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In the existing technology, the geometric error modeling and compensation methods of internal meshing high-strength honing machines are mostly linear and differential compensation methods, which cannot effectively handle error compensation under multi-axis coupling, resulting in low accuracy.

Method used

A geometric error model of a high-power gear honing machine with internal meshing under multi-axis coupling is established. The initial error compensation values ​​of each axis are obtained by decoupling. A mapping model between geometric error and workpiece tooth surface deviation is constructed. An iterative compensation strategy is proposed to optimize the error compensation process.

Benefits of technology

The machining accuracy of the internal meshing high-strength honing machine has been improved, the deviation of the tooth profile and tooth direction on the workpiece tooth surface has been reduced, and higher compensation accuracy has been achieved.

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Abstract

本发明公开了一种内啮合强力珩齿机几何误差建模与迭代补偿方法,包括以下步骤:首先分析内啮合强力珩齿机多轴联动过程中的几何误差,建立多轴耦合下内啮合强力珩齿几何误差模型;其次对建立的几何误差模型进行解耦,获取内啮合强力珩齿机各轴初始误差补偿值;最后建立几何误差与珩削工件齿面偏差的映射模型,分析影响工件齿面偏差的关键几何误差,提出一种内啮合强力珩齿机几何误差迭代补偿策略,实现内啮合强力珩齿的加工精度提升。
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