Research on the Fault Diagnosis Method for Key Components of Inertial Friction Welding Equipment

2026-99-0309

8/14/2026

Authors
Abstract
Content
Inertial Friction Welding (IFW) equipment is essential for the welding process of aircraft engine shaft components. However, the absence of comprehensive fault-handling standards for domestically produced inertial friction welding equipment has hindered its further development. This study focuses on the connecting rod and motor of the 30T-IFW equipment, employing a model-based fault detection method. Through simulation, the deformation of the connecting rod and the frequency response of motor vibration acceleration under different working conditions are obtained. Additionally, a monitoring platform is proposed to collect real-time data on connecting rod deformation and motor vibration from actual welding equipment. By establishing a quantitative correlation model of connecting rod deformation-force and revealing the coupling mechanism between motor eccentricity faults and modal frequency vibrations, a hybrid diagnostic framework that combines simulation of primitive warning and measurement of calibration is proposed. At last, the simulation and experimental results verify the effectiveness of the fault diagnosis method proposed in this paper.
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DOI
https://doi.org/10.4271/2026-99-0309
Citation
Yang, H., Yuan, M., Sun, T., Liang, W., et al., "Research on the Fault Diagnosis Method for Key Components of Inertial Friction Welding Equipment," 2025 International Conference on Intelligent Manufacturing and Mechatronics (ICIMM 2025), Nanchang, China, October 24, 2025, https://doi.org/10.4271/2026-99-0309.
Additional Details
Publisher
Published
Yesterday
Product Code
2026-99-0309
Content Type
Technical Paper
Language
English