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Concrete Infill Monitoring in Concrete-Filled FRP Tubes Using a PZT-Based Ultrasonic Time-of-Flight Method

机译:使用基于PZT的超声波飞行时间方法监控FRP管中的混凝土填充

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摘要

Concrete-filled fiber-reinforced polymer tubes (CFFTs) have attracted interest for their structural applications in corrosive environments. However, a weak interfacial strength between the fiber-reinforced polymer (FRP) tube and the concrete infill may develop due to concrete shrinkage and inadequate concrete compaction during concrete casting, which will destroy the confinement effect and thereby reduce the load bearing capacity of a CFFT. In this paper, the lead zirconate titanate (PZT)-based ultrasonic time-of-flight (TOF) method was adopted to assess the concrete infill condition of CFFTs. The basic idea of this method is that the velocity of the ultrasonic wave propagation in the FRP material is about half of that in concrete material. Any voids or debonding created along the interface between the FRP tube and the concrete will delay the arrival time between the pairs of PZT transducers. A comparison of the arrival times of the PZT pairs between the intact and the defected CFFT was made to assess the severity of the voids or the debonding. The feasibility of the methodology was analyzed using a finite-difference time-domain-based numerical simulation. Experiments were setup to validate the numerical results, which showed good agreement with the numerical findings. The results showed that the ultrasonic time-of-flight method is able to detect the concrete infill condition of CFFTs.
机译:填充混凝土的纤维增强聚合物管(CFFT)在腐蚀性环境中的结构应用引起了人们的兴趣。但是,由于混凝土的收缩和浇铸过程中混凝土的压实不足,可能会在纤维增强聚合物(FRP)管和混凝土填充物之间形成较弱的界面强度,这将破坏约束效果,从而降低CFFT的承载能力。本文采用锆钛酸铅(PZT)基超声飞行时间(TOF)方法评估CFFT的混凝土填充条件。这种方法的基本思想是超声波在FRP材料中的传播速度大约是在混凝土材料中的传播速度的一半。沿FRP管和混凝土之间的界面产生的任何空隙或脱胶都会延迟PZT传感器对之间的到达时间。比较完好和有缺陷的CFFT之间PZT对的到达时间,以评估空隙或脱胶的严重程度。使用基于时域的有限差分数值模拟分析了该方法的可行性。进行实验以验证数值结果,该数值结果与数值结果吻合良好。结果表明,超声飞行时间方法能够检测CFFT的混凝土填充情况。

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