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Surface Wave Propagation in Concrete Structures by Using Piezoelectric Actuators/Sensors

机译:压电致动器/传感器在混凝土结构中的表面波传播

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Concrete structures have been used widely in civil infrastructural systems especially in bridges. Due to the complex nature of its microstructure, nondestructive testing (NDT) of concrete inherently imposes many challenges, which can cause severe limitations to both the resolution and sensitivity of the observed signals. In this study, surface wave propagation in concrete is examined and simulated by using a surface bonded active piezoelectric actuators/sensors system experimentally and numerically, especially at high frequency. First, different experimental tests are conducted to evaluate effects of the loading frequency upon the resulting surface wave propagation. Secondly, the numerical results are compared with experimental data. The very good agreement shows the great feasibility and potential of surface wave signals by using piezoelectric actuators/sensors to locate and characteristics of surface damages.
机译:混凝土结构已广泛用于民用基础设施系统中,尤其是桥梁。由于其微观结构的复杂性,混凝土的无损检测(NDT)固有地带来了许多挑战,这可能会严重限制所观察信号的分辨率和灵敏度。在这项研究中,通过使用表面结合的有源压电致动器/传感器系统,特别是在高频下,通过表面结合的有源压电致动器/传感器系统对混凝土中的表面波传播进行了检查和模拟。首先,进行了不同的实验测试,以评估加载频率对所得表面波传播的影响。其次,将数值结果与实验数据进行了比较。很好的协议显示了通过使用压电致动器/传感器来定位和确定表面损伤的特征,表面波信号的巨大可行性和潜力。

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