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Paper | Open Access

On-machine inspection and compensation for thin-walled parts with sculptured surface considering cutting vibration and probe posture

Yanpeng Hao1, Lida Zhu1 ( ), Shaoqing Qin, Xiaoyu Pei, Tianming Yan, Qiuyu Qin, Hao Lu, Boling Yan
School of Mechanical Engineering and Automation, Northeastern university, Shenyang 110819, People’s Republic of China

1 Co-first authors.

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Abstract

On-machine inspection has a significant impact on improving high-precision and efficient machining of sculptured surfaces. Due to the lack of machining information and the inability to adapt the parameters to the dynamic cutting conditions, theoretical modeling of profile inspection usually leads to insufficient adaptation, which causes inaccuracy problems. To address the above issues, a novel coupled model for profile inspection is proposed by combining the theoretical model and the data-driven model. The key process is to first realize local feature extraction based on the acquired vibration signals. The hybrid sampling model, which fuses geometric feature terms and vibration feature terms, is modeled by the lever principle. Then, the weight of each feature term is adaptively assigned by a multi-objective multi-verse optimizer. Finally, an inspection error compensation model based on the attention mechanism considering different probe postures is proposed to reduce the impact of pre-travel and radius errors on inspection accuracy. The anisotropy of the probe system error and its influence mechanism on the inspection accuracy are analyzed quantitatively and qualitatively. Compared with the previous models, the proposed hybrid profile inspection model can significantly improve the accuracy and efficiency of on-machine sampling. The proposed compensation model is able to correct the inspection errors with better accuracy. Simulations and experiments demonstrate the feasibility and validity of the proposed methods. The proposed model and corresponding new findings contribute to high-precision and efficient on-machine inspection, and help to understand the coupling mechanism of inspection errors.

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International Journal of Extreme Manufacturing
Article number: 065602

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Cite this article:
Hao Y, Zhu L, Qin S, et al. On-machine inspection and compensation for thin-walled parts with sculptured surface considering cutting vibration and probe posture. International Journal of Extreme Manufacturing, 2024, 6(6): 065602. https://doi.org/10.1088/2631-7990/ad6de3

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Received: 26 November 2023
Revised: 13 June 2024
Accepted: 11 August 2024
Published: 22 August 2024
© 2024 The Author(s).

Original content from this work may be used under the terms of the Creative Commons Attribution 4.0 licence. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.