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Detecting of the Longitudinal Grouting Quality in Prestressed Curved Tendon Duct Using Piezoceramic Transducers

机译:用压电陶瓷传感器检测预应力弯曲牛筋管道的纵向灌浆质量

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摘要

To understand the characteristics of longitudinal grouting quality, this paper developed a stress wave-based active sensing method using piezoceramic transducers to detect longitudinal grouting quality of the prestressed curved tendon ducts. There were four lead zirconate titanate (PZT) transducers installed in the same longitudinal plane. One of them, mounted on the bottom of the curved tendon duct, was called as an actuator for generating stress waves. The other three, pasted on the top of the curved tendon duct, were called as sensors for detecting the wave responses. The experimental process was divided into five states during the grouting, which included 0%, 50%, 75%, 90%, and 100% grouting. The voltage signals, power spectral density (PSD) energy and wavelet packet energy were adopted in this research. Experimental results showed that all the amplitudes of the above analysis indicators were small before the grouting reached 90%. Only when the grouting degree reached the 100% grouting, these parameters increased significantly. The results of different longitudinal PZT sensors were mainly determined by the distance from the generator, the position of grouting holes, and the fluidity of grouting materials. These results showed the longitudinal grouting quality can be effectively evaluated by analyzing the difference between the signals received by the PZT transducers in the curved tendon duct. The devised method has certain application value in detecting the longitudinal grouting quality of prestressed curved tendon duct.
机译:为了了解纵向灌浆质量的特征,本文开发了一种基于应力波的主动传感方法,该方法使用压电陶瓷换能器来检测预应力弯筋管道的纵向灌浆质量。在同一纵向平面上安装了四个锆钛酸铅(PZT)传感器。其中之一安装在弯曲的肌腱管的底部,被称为产生应力波的致动器。粘贴在弯曲肌腱管顶部的其他三个被称为检测波响应的传感器。在灌浆过程中,实验过程分为五个状态,分别为0%,50%,75%,90%和100%灌浆。本研究采用电压信号,功率谱密度(PSD)能量和小波包能量。实验结果表明,在灌浆达到90%之前,上述分析指标的幅值均很小。仅当灌浆度达到100%灌浆时,这些参数才会显着增加。不同的纵向PZT传感器的结果主要取决于距发生器的距离,注浆孔的位置以及注浆材料的流动性。这些结果表明,通过分析弯曲肌腱管中PZT传感器接收到的信号之间的差异,可以有效地评估纵向灌浆质量。该方法在预应力弯筋管道纵向注浆质量检测中具有一定的应用价值。

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