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An effective trajectory scheduling method for a 5-DOF hybrid machining robot

Haitao Liu (Key Laboratory of Mechanism Theory and Equipment Design of Ministry of Education and School of Mechanical Engineering, Tianjin University, Tianjin, China)
Junfu Zhou (Key Laboratory of Mechanism Theory and Equipment Design of State Ministry of Education, Tianjin University, Tianjin, China)
Guangxi Li (School of Mechanical Engineering, Dongguan University of Technology, Dongguan, China)
Juliang Xiao (Key Laboratory of Mechanism Theory and Equipment Design of Ministry of Education and School of Mechanical Engineering, Tianjin University, Tianjin, China)
Xucang Zheng (Key Laboratory of Mechanism Theory and Equipment Design of State Ministry of Education, Tianjin University, Tianjin, China)

Industrial Robot

ISSN: 0143-991X

Article publication date: 27 August 2024

37

Abstract

Purpose

This paper aims to present a new trajectory scheduling method to generate a smooth and continuous trajectory for a hybrid machining robot.

Design/methodology/approach

The trajectory scheduling method includes two steps. First, a G3 continuity local smoothing approach is proposed to smooth the toolpath. Then, considering the tool/joint motion and geometric error constraints, a jerk-continuous feedrate scheduling method is proposed to generate the trajectory.

Findings

The simulations and experiments are conducted on the hybrid robot TriMule-800. The simulation results demonstrate that this method is effectively applicable to machining trajectory scheduling for various parts and is computationally friendly. Moreover, it improves the robot machining speed and ensures smooth operation under constraints. The results of the S-shaped part machining experiment show that the resulting surface profile error is below 0.12 mm specified in the ISO standard, confirming that the proposed method can ensure the machining accuracy of the hybrid robot.

Originality/value

This paper implements an analytical local toolpath smoothing approach to address the non-high-order continuity problem of the toolpath expressed in G code. Meanwhile, the feedrate scheduling method addresses the segmented paths after local smoothing, achieving smooth and continuous trajectory generation to balance machining accuracy and machining efficiency.

Keywords

Acknowledgements

Funding: This research was supported by National Key R&D program of China (2019YFA0706702) and National Natural Science Foundation of China (91948301 and 51721003).

Citation

Liu, H., Zhou, J., Li, G., Xiao, J. and Zheng, X. (2024), "An effective trajectory scheduling method for a 5-DOF hybrid machining robot", Industrial Robot, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1108/IR-04-2024-0151

Publisher

:

Emerald Publishing Limited

Copyright © 2024, Emerald Publishing Limited

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