• CN:11-2187/TH
  • ISSN:0577-6686

›› 2011, Vol. 47 ›› Issue (11): 148-154.

• 论文 • 上一篇    下一篇

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基于平底刀端铣的叶轮流道底面精铣算法研究

樊宏周;席光   

  1. 西安交通大学能源与动力工程学院
  • 发布日期:2011-06-05

Algorithm Investigation for Numerical Control End Milling of Centrifugal Impeller Channels

FAN Hongzhou;XI Guang   

  1. School of Energy and Power Engineering, Xi’an Jiaotong University
  • Published:2011-06-05

摘要: 针对任意扭曲叶轮五轴整体铣制流道底部精铣,为提高加工质量和效率,通过球头刀和平底刀各自特点的比较和实践,提出一种基于平底刀端铣的叶轮流道底部精铣改进算法。建立法矢量控制刀轴矢量工件坐标系,结合刀倾角、刀摆角以及叶轮流道底部具体几何特征,推导出法矢量控制刀轴矢量算法;再对比球头刀端铣,建立平底刀端铣有效切削轮廓模型,推导出平底刀端铣切削轮廓的椭圆公式、固定残留高度平底刀端铣加工带宽的计算方程;参考等参数法和等残留高度法各自优点,提出一种拟三角形刀位轨迹算法并详细描述平底刀精铣流道底部的工艺过程;通过切削仿真、数控程序参数对比等分析该流道底部精铣改进算法在数控加工中的高效性;以离心叶轮实际加工,验证了算法在实践中的可行性。

关键词: 加工带宽, 离心叶轮, 流道底部, 平底刀, 球头刀

Abstract: For the finish milling of the free-form centrifugal impeller channels, based on the comparison between the ball-end milling cutter and the flat-end milling cutter, an optimizing algorithm of the channel finish milling by flat-end milling cutter is proposed to improve the surface finish milling quality and efficiency. An algorithm of the cutter axis vector based on the normal vectors of the impeller channel is deduced by combining the inclination angle and the tilt angle. Compared to the ball-end mill, a model of the flat end milling effective contour is built, the ellipse formula of the contour and the calculation equation of the tool path interval obtained by the flat end milling are deduced. By combining the advantages of the isoparametric method and the constant scallop-height method, a similar triangle calculation of the tool path generation is presented, and, the detailed machining processes of the channel finish milling by the flat-end milling cutter is introduced. The high efficiency of the optimizing algorithm is validated by the cutting simulation and the analysis of the process parameters. The numerical control program and the machining of a real centrifugal compressor impeller are provided to verify the feasibility of the proposed optimizing algorithm.

Key words: Ball-end mill, Bottom of channel, Centrifugal impeller, Flat-end mill, Tool path interval

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