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Development of a novel nonrigid support friction stir welding repair robot for aluminum alloy train

Taotao Jin (School of Mechanical-Electronic and Vehicle Engineering, Beijing University of Civil Engineering and Architecture, Beijing, China)
Xiuhui Cui (School of Mechanical-Electronic and Vehicle Engineering, Beijing University of Civil Engineering and Architecture, Beijing, China)
Chuanyue Qi (School of Mechanical-Electronic and Vehicle Engineering, Beijing University of Civil Engineering and Architecture, Beijing, China)
Xinyu Yang (School of Mechanical-Electronic and Vehicle Engineering, Beijing University of Civil Engineering and Architecture, Beijing, China)

Industrial Robot

ISSN: 0143-991x

Article publication date: 18 March 2024

16

Abstract

Purpose

This paper aims to develop a specific type of mobile nonrigid support friction stir welding (FSW) robot, which can adapt to aluminum alloy trucks for rapid online repair.

Design/methodology/approach

The friction stir welding robot is designed to complete online repair according to the surface damage of large aluminum alloy trucks. A rotatable telescopic arm unit and a structure for a cutting board in the shape of a petal that was optimized by finite element analysis are designed to give enough top forging force for welding to address the issues of inadequate support and significant deformation in the repair process.

Findings

The experimental results indicate that the welding robot is capable of performing online surface repairs for large aluminum alloy trucks without rigid support on the backside, and the welding joint exhibits satisfactory performance.

Practical implications

Compared with other heavy-duty robotic arms and gantry-type friction stir welding robots, this robot can achieve online welding without disassembling the vehicle body, and it requires less axial force. This lays the foundation for the future promotion of lightweight equipment.

Originality/value

The designed friction stir welding robot is capable of performing online repairs without dismantling the aluminum alloy truck body, even in situations where sufficient upset force is unavailable. It ensures welding quality and exhibits high efficiency. This approach is considered novel in the field of lightweight online welding repairs, both domestically and internationally.

Keywords

Acknowledgements

The authors would like to thank the anonymous reviewers for valuable suggestions and corrections. This research was supported by Beijing University of Civil Engineering and Architecture “Twin Towers Program” (YXZJ20220807).

Citation

Jin, T., Cui, X., Qi, C. and Yang, X. (2024), "Development of a novel nonrigid support friction stir welding repair robot for aluminum alloy train", Industrial Robot, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1108/IR-10-2023-0241

Publisher

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Emerald Publishing Limited

Copyright © 2024, Emerald Publishing Limited

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