Home /Research /Integrated Error Compensation for Robotic Arm Polishing of Cylindrical Aspheric Optical Components
OTHER

Integrated Error Compensation for Robotic Arm Polishing of Cylindrical Aspheric Optical Components

Yao Liu, Ruoguang Li, Jingjing Xie, Yiming Wang, Lin Sun

Year
2025
Citations
1
Access
Open access

Abstract

This research tackles the intricate machining properties of cylindrical aspheric surfaces with a versatile adaption approach utilizing a robotic arm and a compact tool head, incorporating trajectory optimization. A three-step integrated error compensation framework was established as the core to address spatial inaccuracies in robotic systems, incorporating coordinate measuring machine (CMM)-based cylindrical generatrix offset correction, laser tracker-assisted progressive coordinate calibration, and contour profiler-driven feedback compensation. Complemented by a curvature-driven trajectory design, the method ensures uniform polishing coverage for non-uniform curvature surfaces. Experimental validation on S-TiH53 glass cylindrical aspheric components demonstrated a surface profile accuracy of peak-to-valley (PV) value ≤ 2 μm, meeting stringent requirements for high-power laser applications. This systematic approach enhances both efficiency and accuracy in robotic polishing, offering a viable solution for high-end optical manufacturing.

Keywords

PolishingMachiningCompensation (psychology)TrajectoryNumerical controlRobotic armOffset (computer science)Coordinate-measuring machineCurvature

Related papers

Browse all OTHER papers