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Circumferential SH Wave Piezoelectric Transducer System for Monitoring Corrosion-Like Defect in Large-Diameter Pipes

机译:圆周SH波压电换能器系统用于监测大直径管道的腐蚀样缺陷

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摘要

The fundamental circumferential shear horizontal (CSH ) wave is of practical importance in monitoring corrosion defects in large-diameter pipes due to its virtually non-dispersive characteristics. However, so far, there have been limited CSH wave transducers which can be used to constitute a structural health monitoring (SHM) system for pipes. Moreover, the CSH wave’s capability of sizing the corrosion-like defect has not yet been confirmed by experiments. In this work, firstly, the mechanism of exciting CSH waves was analyzed. A method based on our previously developed bidirectional SH wave piezoelectric transducers was then proposed to excite the pure CSH mode and first order circumferential shear horizontal (CSH ) mode. Both finite element simulations and experiments show that the bidirectional transducer is capable of exciting pure CSH mode traveling in both circumferential directions of a 1-mm thick steel pipe from 100 to 300 kHz. Moreover, this transducer can also serve a sensor to detect CSH mode only by filtering circumferential Lamb waves over a wide frequency range from 100 to 450 kHz. After that, a method of sizing a rectangular notch defect by using CSH wave was proposed. Experiments on an 11-mm thick steel pipe show that the depth and circumferential extent of a notch can be accurately determined by using the proposed method. Finally, experiments were performed to investigate the reflection and transmission characteristics of CSH and CSH waves from notches with different depths. It was found that transmission coefficients of CSH mode decrease with the increasing of notch depth, which indicates that it is possible to monitor the depth change of corrosion defects by using CSH wave.
机译:由于基本的水平剪切波(CSH)实际上具有非分散特性,因此在监视大直径管道中的腐蚀缺陷方面具有实际意义。但是,到目前为止,有限的CSH波传感器可用于构成管道的结构健康监测(SHM)系统。此外,实验还没有证实CSH波确定腐蚀样缺陷的能力。在这项工作中,首先,分析了激发CSH波的机理。然后提出了一种基于我们先前开发的双向SH波压电换能器的方法来激发纯CSH模式和一阶周向剪切水平(CSH)模式。有限元模拟和实验均表明,双向换能器能够激发在100到300 kHz厚度的1毫米钢管的两个圆周方向上传播的纯CSH模式。此外,该换能器还可以仅在100至450 kHz的宽频率范围内对周向兰姆波进行滤波,即可充当传感器来检测CSH模式。此后,提出了一种利用CSH波确定矩形缺口缺陷尺寸的方法。在11毫米厚的钢管上进行的实验表明,使用所提出的方法可以准确地确定缺口的深度和周向范围。最后,进行了实验,以研究不同深度的陷波对CSH和CSH波的反射和透射特性。研究发现,随着切口深度的增加,CSH模式的透射系数减小,这表明利用CSH波可以监测腐蚀缺陷的深度变化。

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