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Using the Segmented Iterative Learning Control Method to Generate Volumetric Error-Compensated Part Programs for Three-Axis CNC Milling Machine Tools

机译:使用分段迭代学习控制方法生成三轴CNC铣床的体积误差补偿零件程序

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This study proposes using the iterative learning control method to adjust the volumetric error-compensated tool path, where the working volume motion accuracy of three-axis computerized numerical control (CNC) milling machine tools is increased by segmented modification of the part program. As the three-axis CNC milling machine tools generally have volumetric error of working volume, this study refers to the measured and established table of volumetric errors and uses the method of the modifying part program for volumetric error compensation of machine tools. This study proposes using part-program single-block positioning segmented for volumetric error compensation, as the generated compensated part program with multiple compensated blocks can effectively compensate the volumetric error of working volume in the tool moving process. In terms of the compensated tool path computing method, this study uses the iterative learning control (ILC) method and refers to compensated tool path and volumetric errors along the compensated tool path for iterative computation. Finally, a part program with multiple blocks is modified by the converged optimal compensated tool path, in order that the modified part program has higher-precision volumetric error compensation effect. The simulation result shows that the rate of improvement of error of the volumetric error compensation method proposed in this study is 70%. The result of cutting tests shows that the average rate of improvement of the straightness error of the test workpiece is 60%, while the average rate of improvement of height error is 80%. Therefore, the results of simulation and cutting tests can prove the feasibility of using the ILC method for segmented modification of the volumetric error-compensated part programs proposed in this study.
机译:这项研究提出使用迭代学习控制方法来调整体积误差补偿的刀具路径,其中通过零件程序的分段修改来提高三轴计算机数控铣削机床的工作体积运动精度。由于三轴数控铣床一般具有工作体积的体积误差,因此本研究参考已建立的体积误差表,并采用修正零件程序的方法对机床的体积误差进行补偿。这项研究建议使用分段的单程序段定位进行体积误差补偿,因为生成的带有多个补偿程序段的补偿零件程序可以有效地补偿刀具移动过程中工作体积的体积误差。就补偿刀具路径计算方法而言,本研究使用迭代学习控制(ILC)方法,并参考补偿刀具路径和沿着补偿刀具路径的体积误差进行迭代计算。最后,通过收敛的最优补偿刀具路径对具有多个程序段的零件程序进行修改,以使修改后的零件程序具有更高的体积误差补偿效果。仿真结果表明,本文提出的体积误差补偿方法的误差改善率为70%。切削试验的结果表明,被测工件的直线度误差的平均改善率为60%,而高度误差的平均改善率为80%。因此,仿真和切削试验的结果可以证明使用ILC方法对本研究中提出的体积误差补偿零件程序进行分段修改的可行性。

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