China Mechanical Engineering ›› 2026, Vol. 37 ›› Issue (8): 1976-1988.DOI: 10.3969/j.issn.1004-132X.2026.08.017

Previous Articles    

Research on Tool Path Planning of Spiral Finishing Processes Based on Coons Reparameterization for Blades with Blisk Compound Surfaces

HAN Jiang1,2(), DU Hao1,2, TIAN Xiaoqing1,2(), XIA Lian1,2   

  1. 1.School of Mechanical Engineering,Hefei University of Technology,Hefei,230009
    2.Anhui Intelligent Numerical Control Technology and Equipment Engineering Laboratory,Hefei,230009
  • Received:2024-12-24 Online:2026-08-25 Published:2026-09-17
  • Contact: TIAN Xiaoqing

基于Coons重新参数化的整体叶盘组合曲面叶片螺旋精加工路径生成方法研究

韩江1,2(), 杜豪1,2, 田晓青1,2(), 夏链1,2   

  1. 1.合肥工业大学机械工程学院, 合肥, 230009
    2.安徽省智能数控技术及装备工程实验室, 合肥, 230009
  • 通讯作者: 田晓青
  • 作者简介:韩 江,男,1963年生,教授、博士研究生导师。研究方向为智能数控技术与高档数控机床、数控系统、机器人控制与机器人化加工、增材制造(3D打印)与增减材复合制造、智能制造技术、装备与系统、大数据驱动制造与数字孪生技术等。E-mail:jianghan@hfut.edu.cn
  • 基金资助:
    国家重点研发计划(2022YFA1005204)

Abstract:

In order to improve the blade processing quality and solve the problems that the existing blade spiral machining trajectory generation method might not be used for trimmed surfaces, a new spiral finishing trajectory generation method was proposed for combined curved surface modeling blades with cutting surfaces. Firstly, using the Coons reparameterization method to calculate the control lines relied on for spiral machining trajectory generation, suitable for blades with trimmed surfaces. Then, based on the model of blade with compound surfaces, a method for generating tool path and the spiral cutter contact point’s calculation formula were proposed. The cutter contact point is modified by introducing sensitivity analysis. Finally, the tool axis vector is optimized by introducing spherical interpolation to minimize the acceleration of the rotation axis. An automatic programming software based on this method was developed to generate a continuous and smooth blade spiral finishing tool path. Simulation and experimental results show that the proposed method improves the blade profile accuracy compared to UG/NX, the pressure surface roughness is reduced by 11.28%, and the suction surface is reduced by 20.32%. After the optimization of the tool axis vector, the acceleration of the rotation axis is reduced by 88.72 %.

Key words: blade, compound surface, trimmed surfaces, Coons patch, tool path generation

摘要:

为提高叶片加工质量和解决现有叶片螺旋加工轨迹生成方法无法用于裁剪曲面的问题,提出了一种新的针对有裁剪曲面存在的组合曲面造型叶片的螺旋精加工轨迹生成方法。首先使用基于Coons重参数化的方式计算螺旋加工轨迹生成所依赖的控制线,适用于有裁剪曲面的叶片。然后根据组合曲面叶片造型,给出组合曲面叶片螺旋加工刀位轨迹生成方法和切触点的计算公式,通过引入敏感度分析来修正刀触点。最后通过引入球面插值,最小化旋转轴的加速度来优化刀轴矢量。开发了基于所提方法的自动编程软件,仿真和实验结果表明,所提方法相较于UG/NX叶片轮廓精度得到了提高,压力面粗糙度减小了11.28%,吸力面减小了20.32%。刀轴矢量优化后旋转轴加速度最大减小了88.72%。

关键词: 叶片, 组合曲面, 裁剪曲面, Coons面片, 刀位轨迹生成

CLC Number: