Acoustic emission-driven fractal analysis for damage warning in FRP-strengthened corroded RC beams

IF 5.3 2区 工程技术 Q1 MECHANICS
Tanbo Pan , Xubing Xu , Yonglai Zheng , Liangqin Wu , Chao Yang , Beyazit Bestami Aydin , Yang Li , Yubao Zhou
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引用次数: 0

Abstract

This study introduces a novel approach that integrates Acoustic Emission monitoring with fractal analysis to assess and predict damage progression in FRP-strengthened reinforced concrete beams subjected to corrosion-induced deterioration. By combining AE signals with fractal measures, specifically the correlation dimension, the research provides an effective tool for tracking internal damage evolution and offering early-warning indicators for structural health. The developed damage model identifies three distinct stages of damage: initial damage, damage evolution, and sustained growth. The study reveals that corrosion accelerates both the accumulation and rate of damage, with AE ring counts significantly increasing in moderately to severely corroded beams, indicating heightened crack activity and reduced structural capacity. The correlation dimension shows a strong relationship with the degree of damage, with higher values corresponding to more disordered internal damage. The correlation dimension evolves from an initial increase to a decrease as damage progresses, marking the transition from early to advanced degradation. These findings highlight that corrosion not only accelerates damage but also lowers the detection threshold for significant structural damage.
frp加固腐蚀RC梁损伤预警的声发射驱动分形分析
本研究引入了一种将声发射监测与分形分析相结合的新方法,以评估和预测frp增强钢筋混凝土梁受到腐蚀引起的退化的损伤进展。通过将声发射信号与分形测度,特别是相关维数相结合,为跟踪结构内部损伤演化提供有效工具,为结构健康预警提供指标。所开发的损伤模型确定了三个不同的损伤阶段:初始损伤、损伤演变和持续增长。研究表明,腐蚀加速了损伤的积累和速度,在中度到重度腐蚀的梁中,声发射环数显著增加,表明裂缝活性增加,结构能力降低。相关维数与损伤程度有较强的相关性,值越大,内部损伤越无序。随着损伤的进展,相关维数由最初的增加到减少,标志着从早期退化到晚期退化的过渡。这些发现表明,腐蚀不仅加速了损伤,而且降低了重大结构损伤的检测阈值。
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来源期刊
CiteScore
8.70
自引率
13.00%
发文量
606
审稿时长
74 days
期刊介绍: EFM covers a broad range of topics in fracture mechanics to be of interest and use to both researchers and practitioners. Contributions are welcome which address the fracture behavior of conventional engineering material systems as well as newly emerging material systems. Contributions on developments in the areas of mechanics and materials science strongly related to fracture mechanics are also welcome. Papers on fatigue are welcome if they treat the fatigue process using the methods of fracture mechanics.
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