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首页> 外文期刊>IEEE sensors journal >Detection of Debonding Between Fiber Reinforced Polymer Bar and Concrete Structure Using Piezoceramic Transducers and Wavelet Packet Analysis
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Detection of Debonding Between Fiber Reinforced Polymer Bar and Concrete Structure Using Piezoceramic Transducers and Wavelet Packet Analysis

机译:压电陶瓷换能器和小波包分析检测纤维增强聚合物棒与混凝土结构的剥离

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摘要

Fiber reinforced polymer (FRP), a composite material with high corrosion resistance and high strength-to-weight ratio, has been increasingly used in reinforced concrete structures. The effectiveness of the structures depends on the bonding behavior between FRP composites and concrete structures. Therefore, detection of the debonding between the FRP materials and the hosting concrete structure is of great importance to ensure the structural safety. This paper proposes a stress wave-based active sensing approach to monitor the debonding process of FRP bar with the hosting concrete structure. One shear-type lead zirconate titanate (PZT) patch bonded on the outer surface of the FRP bar was used as an actuator to generate stress wave. Two smart aggregates (SAs), which were fabricated by sandwiching a shear type PZT patch between two protection marble pieces, were embedded in the hosting concrete structure to detect the wave response. The occurrence of debonding between the FRP bar and the hosting concrete structure attenuates the wave propagation. An FRP bar reinforced concrete specimen was designed and fabricated in laboratory. A pullout test was conducted to simulate different degrees of debonding damage. The attenuation of the stress wave due to debonding was clearly observed from the signal received by SAs in both time and frequency domain. Furthermore, a damage index based on wavelet packet analysis was developed to evaluate the debonding status. Experimental results demonstrate that the proposed method has potentials to detect different degrees of debonding damage of FRP bar reinforced concrete composite structures.
机译:纤维增强聚合物(FRP)是一种具有高耐腐蚀性和高强度重量比的复合材料,已越来越多地用于钢筋混凝土结构中。结构的有效性取决于FRP复合材料与混凝土结构之间的粘结性能。因此,检测玻璃钢材料与主体混凝土结构之间的脱胶对于确保结构安全具有重要意义。本文提出了一种基于应力波的主动传感方法,以监测FRP筋与主体混凝土结构的剥离过程。粘结在FRP棒外表面上的一种剪切型钛酸锆钛酸铅(PZT)补片用作致动器,以产生应力波。通过将剪切型PZT补片夹在两块保护大理石之间而制成的两种智能骨料(SA)嵌入主体混凝土结构中,以检测波浪响应。 FRP钢筋与主体混凝土结构之间发生脱胶,削弱了波的传播。在实验室设计并制造了FRP钢筋混凝土标本。进行拉拔测试以模拟不同程度的脱胶损伤。在时域和频域中,从SA接收到的信号中可以清楚地观察到由于剥离引起的应力波衰减。此外,开发了基于小波包分析的损伤指数以评估脱胶状态。实验结果表明,该方法具有检测玻璃钢钢筋混凝土复合结构不同程度脱胶损伤的潜力。

著录项

  • 来源
    《IEEE sensors journal 》 |2017年第7期| 1992-1998| 共7页
  • 作者单位

    College of Civil Engineering and Architecture, Changsha University of Science and Technology, Changsha, China;

    Department of Mechanical Engineering, University of Houston, Houston, TX, USA;

    Department of Mechanical Engineering, University of Houston, Houston, TX, USA;

    Key Laboratory of Earthquake Geodesy, Institute of Seismology, China Earthquake Administration, Wuhan, China;

    State Key Laboratory of Coastal and Offshore Engineering, Dalian University of Technology, Dalian, China;

    Department of Mechanical Engineering, University of Houston, Houston, TX, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Concrete; Bars; Sensors; Monitoring; Wavelet packets; Wavelet analysis; Transducers;

    机译:混凝土;条形;传感器;监测;小波包;小波分析;换能器;

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