Adaptive Identification of the Position-independent Geometric Errors for the Rotary Axis of Five-axis Machine Tools to Directly Improve Workpiece Geometric Errors

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초록

Identification of, and compensation for, geometric errors is a cost-effective way to reduce the volumetric errors of five-axis machine tools and thus reduce workpiece geometric errors. An adaptive identification method is introduced to directly reduce workpiece geometric errors. We determined the relation between the root-sum-square values of geometric error sensitivity coefficients and workpiece geometric errors. Then, an optimal measurement path minimizing those values was adaptively determined to identify position-independent geometric errors of the rotary axis. We applied our method to improve the radial deviation of the cone-shaped ISO 10791-7 testpiece, as an example. The radial deviations were 22.6 and 27.6 mu m in the counterclockwise (CCW) and clockwise (CW) directions, respectively, after compensating for the position-independent geometric errors identified using a common measurement path. These values improved by 27% and 17% to 16.4 and 22.9 mu m in the CCW and CW directions, respectively, after compensating for the position-independent geometric errors identified using the optimal measurement path, thus confirming the validity of our approach.

키워드

Adaptive identification; Position-independent geometric error; Measurement uncertainty; Sensitivity coefficient; Workpiece geometric error; LOCATION ERRORS; COMPENSATION; AXES; MOTIONS; TESTS; CALIBRATION; METHODOLOGY; DEVIATIONS
제목
Adaptive Identification of the Position-independent Geometric Errors for the Rotary Axis of Five-axis Machine Tools to Directly Improve Workpiece Geometric Errors
저자
Yang, Seung-Han; Lee, Kwang-Il
DOI
10.1007/s12541-024-00966-0
발행일
2024-05
유형
Article
저널명
International Journal of Precision Engineering and Manufacturing
권
25
호
5
페이지
995 ~ 1010