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后张法预应力混凝土梁损伤监测的声发射信号强度分析方法

Intensity Analysis Method of Acoustic Emission Signals for the Damage Monitoring of Post-Tensioned Concrete Beams.

作者信息

Bruno Ezio, Scionti Giuseppe, Calabrese Luigi, Proverbio Edoardo

机构信息

Department of Engineering, University of Messina, Contrada di Dio, Sant'Agata di Messina, 98166 Messina, Italy.

出版信息

Materials (Basel). 2024 Aug 10;17(16):3981. doi: 10.3390/ma17163981.

Abstract

Acoustic emission (AE) is well suited for the real-time monitoring and detection of damage in reinforced concrete structures. In this study, loading/unloading cycles up to failure were applied on three different full-scale beams, each with varying defect morphologies. An intensity analysis method was employed to assess the damage sensitivities of the defective structures under stress conditions. Specifically, the calm ratio, load ratio, severity, and historical index were identified as statistical parameters that can provide global information on the damage level. Consequently, they can be easily used as damage evolution indexes for reinforced concrete structures. Correlations between these parameters were investigated to better discriminate between their potentials and identify critical levels that might not be evident using parametric analysis. The AEI chart helps locate damaging areas, aiding focused repairs. For defected beams with broken strands, at low load, HI and SI fall in zone B (damage detected). At cycles 4 and 6, with significant deflection, they fall into a critical zone, E (severe damage). Comparing post-tensioned beams revealed defects correlating with damage susceptibility. B3 beams with diffused defects displayed high activity at higher loads. Applying a load-calm ratio chart, initial minor damage worsened progressively. Severe damage was prominent in defective B2 and B3 beams, reaching zone 3. The variation in the acquired parameters over time can then be considered as an affordable and reliable indicator of damage progression.

摘要

声发射(AE)非常适合对钢筋混凝土结构中的损伤进行实时监测和检测。在本研究中,对三根不同的足尺梁施加直至破坏的加载/卸载循环,每根梁具有不同的缺陷形态。采用强度分析方法来评估缺陷结构在应力条件下的损伤敏感性。具体而言,平静比、荷载比、严重程度和历史指数被确定为能够提供损伤水平全局信息的统计参数。因此,它们可以很容易地用作钢筋混凝土结构的损伤演化指标。研究了这些参数之间的相关性,以便更好地区分它们的潜力,并识别使用参数分析可能不明显的临界水平。声发射强度(AEI)图表有助于定位损伤区域,便于进行有针对性的修复。对于钢绞线断裂的缺陷梁,在低荷载下,历史指数(HI)和严重程度指数(SI)落在B区(检测到损伤)。在第4和第6个循环时,出现明显挠度,它们进入临界区E(严重损伤)。比较后张梁发现缺陷与损伤敏感性相关。具有分散缺陷的B3梁在较高荷载下表现出高活性。应用荷载平静比图表,初始轻微损伤逐渐恶化。严重损伤在有缺陷的B2和B3梁中很突出,达到3区。那么,所获取参数随时间的变化可以被视为损伤进展的一种经济且可靠的指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5075/11356072/cfb2eaf59760/materials-17-03981-g001.jpg

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