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Interfacial debonding detection in externally bonded bfrp reinforced concrete using stress wave-based sensing approach

机译:基于应力波的传感方法在外部粘合BFRP钢筋混凝土中的界面剥离检测

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摘要

Fibre-reinforced polymer (FRP) composite materials have been increasingly used for strengthening concrete members. The strengthening performance and structural capacity of FRP reinforced concrete (RC) structures are highly influenced by the interfacial bonding behaviour between FRP and concrete. A reliable technique for debonding detection, especially at its early age, is essential to ensure the strengthening efficacy and avoid premature failure of FRP RC structures. This study develops a stress wave-based sensing approach to quantitatively monitor the debonding process by using surface mounted piezoceramic-based transducers (also called as smart aggregates SAs). The scanning wave signals in swept frequency mode and single frequency mode were utilised in experimental and numerical methods, respectively. Both results showed that when the stress wave propagated through the FRP-concrete interface, the wave energy attenuation increased as the debonding developed. To quantify the debonding level and provide assessment of the interface condition, a wavelet packetbased debonding index was established and its validity was verified by the data retrieved from digital image correlation measurement. The proposed method has potential for fast determination or real-time monitoring of FRP-concrete interfacial debonding for both research and field applications.
机译:纤维增强聚合物(FRP)复合材料越来越多地用于加强混凝土构件。 FRP钢筋混凝土(RC)结构的强化性能和结构能力受到FRP和混凝土之间的界面粘合行为的高度影响。剥离检测的可靠技术,特别是在其休息时间,是至关重要的,以确保强化效力并避免FRP RC结构的过早失效。该研究开发了一种基于应力波的传感方法,通过使用表面安装的压电陶瓷基换能器来定量监测剥离过程(也称为智能聚集体SAS)。扫描频率模式和单频模式的扫描波信号分别用于实验和数值方法。两个结果表明,当通过FRP - 混凝土界面传播的应力波时,随着借方的开发,波能量衰减增加。为了量化剥离级别并提供对接口条件的评估,建立了小波包基借借方索引,并且通过从数字图像相关测量检索的数据来验证其有效性。该方法具有用于研究和现场应用的FRP - 具体界面剥离的快速确定或实时监测。

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