Geometric Error Modeling, Separation, and Compensation of Tilted Toric Wheel in Fewer-Axis Grinding for Large Complex Optical Mirrors

Author:

Jiang Zhenhua1,Yin Yuehong1,Chen Xing1

Affiliation:

1. State Key Laboratory of Mechanism System and Vibration, Institute of Robotics, Shanghai Jiao Tong University, Shanghai 200240, China e-mail:

Abstract

In ultraprecision grinding, especially for large complex optical mirrors, the geometric accuracy of grinding wheel plays a vital role and almost dominates the success of the entire grinding process. In this paper, a complete set of geometric error modeling, separation, and compensation methods of tilted toric wheel is established for fewer-axis grinding of large complex optical mirrors. Based on the kinematic equations with the assumptions of virtual axes for toric wheel, a mirror surface error model including all wheel error components is established, providing an error prediction for mirror surface. By linearizing the mirror surface error model and using the error information of mirror surface, solving and separating wheel error components are achieved. Then, the mirror surface with highly improved accuracy is obtained after the compensation of wheel trajectories with calculated wheel error components. Finally, the above method is well verified by the simulation.

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Control and Systems Engineering

Reference33 articles.

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1. Error separation and compensation of arc wheel grinding for SiC segmented mirror considering wheel wear;The International Journal of Advanced Manufacturing Technology;2023-04-03

2. Robotic grinding of complex components: A step towards efficient and intelligent machining – challenges, solutions, and applications;Robotics and Computer-Integrated Manufacturing;2020-10

3. Online force control of large optical grinding machine for brittle materials assisted by force prediction;Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture;2019-04-24

4. Research on arc-shaped wheel wear and error compensation in arc envelope grinding;The International Journal of Advanced Manufacturing Technology;2019-04-12

5. Radial Error Motion Measurement of Ultraprecision Axes of Rotation With Nanometer Level Precision;Journal of Manufacturing Science and Engineering;2017-04-18

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