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Bolt Preload Identification Method Based on Multi-Frequency Guided Wave Reconstruction and Spectral Centroid Fusion
Zhangsheng Sun1, Zhen Jin1, Zhengwu Yi2
1School of Electronic Information and Electrical Engineering, Yangtze University, Jingzhou 434023, China.
This study introduces a novel method for early detection of preload loss in bolted joints, crucial for structural health monitoring. The technique uses spectral centroid analysis for stable and accurate preload identification, enhancing safety and component lifespan.
Area of Science:
- Mechanical Engineering
- Materials Science
- Structural Health Monitoring
Background:
- Bolted joints are vital for structural integrity in critical applications.
- Preload loss in bolted joints can lead to stiffness degradation, fatigue, and safety issues.
- Existing methods for monitoring preload loss using ultrasonic guided waves face challenges like frequency dependence and environmental interference.
Purpose of the Study:
- To develop an early-warning system for detecting preload reduction in bolted joints.
- To overcome limitations of current ultrasonic guided wave techniques for preload monitoring.
- To provide a robust and interpretable method for structural health monitoring of bolted connections.
Main Methods:
- Utilized broadband excitation (20-250 kHz Chirp) and multi-frequency narrowband reconstruction (50-180 kHz).
- Employed spectral centroid extraction and optimized weighted fusion for preload identification.
- Developed a fixed SC-domain linear calibration framework using a reference loading group.
Main Results:
- The fused spectral centroid index demonstrated a stable, monotonic, and linear correlation with preload.
- High Pearson correlation coefficients (>0.99) were achieved when calibration was transferred to new loading groups.
- The spectral centroid method significantly improved robustness against temperature variations compared to energy-based features.
Conclusions:
- The proposed method offers a reliable and interpretable approach for early detection of preload loss.
- The developed spectral descriptor and calibration transfer framework enable repeatable early warnings.
- This technique enhances the safety and longevity of structures utilizing bolted joints.
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