Laser & Optoelectronics Progress, Volume. 62, Issue 3, 0312002(2025)
Research on Axis Calibration Method for Line-laser Five-Axis Motion System
Fig. 1. Schematic diagrams of system architecture. (a) Top view of system architecture; (b) side view of system architecture
Fig. 5. Spherical measurement errors corresponding to axis errors. (a) Theoretical and actual poses in axis simulation; (b) error in X axis; (c) error in Y axis; (d) error in Z axis; (e) error in A axis; (f) error in C axis
Fig. 7. Matching error of standard sphere measurement. (a) Error distribution before calibration of XZ axes; (b) error distribution after calibration of XZ axes; (c) distribution of errors on XOZ plane before calibration of XZ axes; (d) distribution of errors on XOZ plane after calibration of XZ axes
Fig. 8. Matching error of standard sphere measurement. (a) Error distribution without incorporating XZ axes calibration results; (b) error distribution with incorporating XZ axes calibration results; (c) error distribution after Y axis calibration; (d) distribution of errors on XOZ plane without incorporating XZ axes calibration results; (e) distribution of errors on XOZ plane with incorporating XZ axes calibration results; (f) distribution of errors on XOZ plane after Y axis calibration
Fig. 10. Simulation results of A axis calibration. (a) Scan simulation results of A axis at various angles; (b) point cloud reconstruction of standard ball before calibration; (c) distribution of measurement errors of standard sphere on XOZ plane before calibration; (d) distribution of measurement errors of standard sphere on XOZ plane after calibration
Fig. 12. XZ axes calibration results. (a) Measurement point cloud and XZ axes calibration posture; (b) distribution of measurement errors on XOZ plane before calibration; (c) distribution of measurement errors on XOZ plane after calibration
Fig. 13. Y axis calibration results. (a) Measurement point cloud and Y axis calibration posture; (b) distribution of measurement errors on XOZ plane without incorporating XZ axes calibration results; (c) distribution of measurement errors on XOZ plane with incorporating XZ axes calibration results; (d) distribution of measurement errors on XOZ plane after Y axis calibration
Fig. 14. Rotation axes calibration results. (a) A axis calibration results; (b) C axis calibration results
Fig. 15. Distribution of measurement errors of standard sphere on XOY Plane. (a) Before A axis calibration; (b) after A axis calibration; (c) before C axis calibration; (d) after C axis calibration
Fig. 16. Comparison of measurement errors before and after system axes calibration
Fig. 17. Stair measurement results. (a) Measurement point cloud; (b) repeat measurement results
Fig. 18. Standard sphere registration results. (a) Schematic diagram of the measurement process; (b) distribution of matching errors on XOY plane of results from CMM measurement; (c) point cloud from measurements using system; (d) distribution of matching errors on XOY plane of measurement results by system
Fig. 21. Surface PV measurement results of the standard sphere in the uncertainty analysis experiment
Fig. 22. HUD glass measurement results. (a) HUD physical illustration; (b) measurement matching results; (c) interpolated point cloud measurement results
Fig. 23. Glue mirror measurement results. (a) Glue mirror physical and structural schematic; (b) glue mirror measurement results; (c) matching errors of sphere on glue mirror; (d) matching errors of plane on glue mirror
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Shibin Xiao, Chen Li, Zexiao Li, Xiaodong Zhang. Research on Axis Calibration Method for Line-laser Five-Axis Motion System[J]. Laser & Optoelectronics Progress, 2025, 62(3): 0312002
Category: Instrumentation, Measurement and Metrology
Received: Apr. 22, 2024
Accepted: May. 28, 2024
Published Online: Feb. 13, 2025
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