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A novel spindle inclination error identification and compensation method in ultra-precision raster milling

机译:超精密光栅铣削中主轴倾斜误差识别与补偿的新方法

摘要

In the ultra-precision raster milling (UPRM) process, the existence of spindle inclination error can directly affect the dimensional accuracy of machined components. This study developed a novel spindle inclination error identification and compensation method based on the groove cutting in UPRM. In this method, the tilt angle of the intersection curve of two toruses (ICTT) generated from two neighboring rotary cuts in UPRM was measured to identify the spindle inclination error. A mathematical model was developed to simulate the ICTT profile and present the relationship between the tilt angle of ICTTs and the spindle inclination error by solving the differential of the ICTT function, by which the spindle inclination error can be solved under the given cutting parameters and the tilt angle of ICTTs. The effects of cutting parameters on the tilt angle of ICTTs were explored. An error compensation procedure was designed and a group of groove cutting experiments was conducted to identify and compensate the spindle inclination error. The theoretical and experimental results show that the proposed method can compensate for the spindle inclination error effectively and accurately.
机译:在超精密光栅铣削(UPRM)过程中,主轴倾角误差的存在会直接影响加工零件的尺寸精度。本研究开发了一种基于UPRM凹槽切削的新型主轴倾角误差识别和补偿方法。在此方法中,测量了由UPRM中两个相邻的旋转切削产生的两个圆环(ICTT)的相交曲线的倾斜角,以识别主轴倾斜误差。建立了数学模型来模拟ICTT轮廓,并通过解决ICTT函数的微分来表示ICTT的倾斜角与主轴倾斜误差之间的关系,从而可以在给定的切削参数和切削力的情况下解决主轴倾斜误差。 ICTT的倾斜角度。探讨了切削参数对ICTT倾斜角的影响。设计了误差补偿程序,并进行了一组切槽实验,以识别和补偿主轴倾斜误差。理论和实验结果表明,该方法能够有效,准确地补偿主轴倾角误差。

著录项

  • 作者

    Zhang G; To S; Xiao G;

  • 作者单位
  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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