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Conceptual Design of a Novel Four-Axis Free-Bending Equipment with Smooth Processing Trajectories for Spatial Tube High-Precision Manufacturing

  • Yongzhe Xiang
  • , Zili Wang*
  • , Shuyou Zhang
  • , Zheyi Li
  • , Xinlei Hu
  • , Jianrong Tan
  • *此作品的通讯作者
  • Zhejiang University

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

Spatial bent tubes with variable curvature and torsion are widely used in high-end manufacturing. Traditional free-bending (FB) equipment with discrete processing trajectories has limited processing capabilities, which restricts the forming quality of spatial bent tubes. This paper first proposes a novel four-axis FB equipment with smooth processing trajectories. The design of this equipment is inspired by the six-axis FB equipment, with the C-axis repositioned to the front and redundant translational and rotational axes eliminated. On this basis, a springback behavior-guided process parameter optimization method is introduced. This method consists of two components: springback behavior prediction using Parallel FNO (P-FNO) and process parameter optimization using Robustness-Enhanced AGE-MOEA2 (RE-AGE-MOEA2). P-FNO is considered as the fitness function during parameter optimization. RE-AGE-MOEA2 employs Monte Carlo sampling and multiple predictions to eliminate the effects of uncertainty in P-FNO. The proposed FB equipment and parameter optimization method are validated through numerical simulations. The results indicate that bent tubes processed by the four-axis FB equipment exhibit higher geometric stability compared to those processed by the six-axis FB equipment. The process parameter optimization method can provide FB parameters that effectively compensate for springback. Integrating the novel four-axis FB equipment with the process parameter optimization method enables high-precision FB forming of spatially complex tubes.

源语言英语
主期刊名Advances in Mechanical Design - Proceedings of the 2025 International Conference on Mechanical Design ICMD 2025
编辑Jianrong Tan, Zhenyu Liu, Weifei Hu
出版商Springer Science and Business Media B.V.
12-29
页数18
ISBN(印刷版)9789819573417
DOI
出版状态已出版 - 2026
已对外发布
活动International Conference on Mechanical Design, ICMD 2025 - Hangzhou, 中国
期限: 9 5月 202511 5月 2025

出版系列

姓名Mechanisms and Machine Science
204
ISSN(印刷版)2211-0984
ISSN(电子版)2211-0992

会议

会议International Conference on Mechanical Design, ICMD 2025
国家/地区中国
Hangzhou
时期9/05/2511/05/25

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