• CN:11-2187/TH
  • ISSN:0577-6686

›› 2013, Vol. 49 ›› Issue (9): 144-150.

• 论文 • 上一篇    下一篇

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基于轴对称非球面子午线的步长不变式双圆弧插补算法

张学忱;陈锦昌;申艺杰   

  1. 长春理工大学机电工程学院;华南理工大学设计学院;华南理工大学机械与汽车工程学院
  • 发布日期:2013-05-05

The Step Constant Double Circular Interpolation Algorithm Research Based on Axisymmetric Aspheric Meridian

ZHANG Xuechen;CHEN Jinchang;SHEN Yijie   

  1. Mechanical and Electrical Engineering College, Changchun University of Science and Technology Institute of Design, South China University of Technology Machinery and Automobile Engineering Institute, South China University of Technology
  • Published:2013-05-05

摘要: 在数控机床上提高曲面加工的精度,很大程度上在于数控插补算法的选择,因圆弧插补算法在圆弧连接处可达C1连续成为常用的数控插补算法。提出一种步长不变式双圆弧插补算法,基于几何条件推导步长不变式双圆弧公切点的数学模型,建立基本数控曲线任两点构造双圆弧的局部坐标系与绝对坐标系的数学变换,给出误差分析的公切点斜率的调整方法及误差判别模型。因其插补误差的调整与插补步长无关联,使插补误差的调整不需要改变加工工艺参数。步长不变式双圆弧插补算法能适应不同加工环境下不同加工工差的多样性要求,具有较好的数控加工柔性,便于实现高效快速的数控加工。通过对中大口径轴对称非球面元件超精密磨削加工实例验证了算法的可行性,其插补允差范围小于0.002 μm。

关键词: 步长不变, 插补算法, 超精密磨削, 数控加工, 双圆弧

Abstract: It largely depended on the selection of NC interpolation algorithm to improve the accuracy of surface machining on NC machine tools, because circular interpolation algorithm can be up to geometric continuity C1 in the arc joint which made it become widely used. It proposed a step constant double circular interpolation algorithm, and deduce a mathematical model of step constant double circular interpolation algorithm common point of tangency based on the geometric conditions, also establish a mathematical transformation of the local coordinate system and the absolute coordinate system of the double circular constructed by any two points of the basic NC curve, and it give the adjustment method of error analysis of the slope of common point of tangency and error discriminant model. Because the adjustment of interpolation error is not relevant with interpolation step which made the adjustment of interpolation error not need changing the process parameters. This step constant double circular interpolation algorithm could adapt to various requirements of different processing tolerance in different processing environment with good NC machining flexibility and rapid and efficient NC processing. It verifies the feasibility of the algorithm through the example of large-diameter axisymmetric aspheric ultra-precision grinding with the interpolation tolerance range is less than 0.002 μm.

Key words: Double circular, Interpolation algorithm, Numerical control processing, Step constant, Ultra-precision grinding

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