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Propagation Characteristic of Elastic Wave in Pipe

机译:管道中弹性波的传播特性

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摘要

In this study, elastic waves of ultrasonic and acoustic emission were used to evaluate the propagation characteristic of the wave in pipe, and study on mode conversion of the elastic wave due to the cracks in the pipe was also performed. An acoustic emission (AE) sensor was used to receive the propagated ultrasonic wave. AE technique has a merit that it can identify the received ultrasonic wave by the analysis of the AE parameters such as count, energy, frequency, duration time and amplitude. For transmitting and receiving of the wave, a wedge for universal angle was manufactured. The optimum angles for transmitting of ultrasonic wave and signal receiving at the attached AE sensor on the pipe were determined. Theoretical dispersion curve was compared with the results of the time-frequency analysis based on the wavelet transformation. The received modes showed a good agreement with theoretical one. The used ultrasonic sensor was 1MHz, and AE sensor was broadband (100kHz - 1200kHz). The artificial cracks were induced in the pipe to measure the propagation characteristics of the elastic wave for the cracks. AE parameters for the received signals were also varied with the crack types in the pipe. AE parameters of amplitude and duration time were more effective factors than the analysis of mode conversion for evaluation of the cracks in the pipe.
机译:在这项研究中,超声波和声发射的弹性波被用来评估波在管道中的传播特性,并且还研究了由于管道破裂而引起的弹性波的模式转换。声发射(AE)传感器用于接收传播的超声波。声发射技术的一个优点是可以通过分析声发射参数,例如计数,能量,频率,持续时间和振幅来识别接收到的超声波。为了发射和接收波,制造了用于通用角度的楔子。确定了在管道上连接的AE传感器的超声波发射和信号接收的最佳角度。将理论色散曲线与基于小波变换的时频分析结果进行了比较。接收到的模式与理论上的显示出很好的一致性。使用的超声波传感器为1MHz,AE传感器为宽带(100kHz-1200kHz)。在管道中引发了人工裂缝,以测量裂缝的弹性波传播特性。接收信号的AE参数也随管道中的裂纹类型而变化。 AE参数的振幅和持续时间是比模式转换分析更有效的因素,以评估管道中的裂纹。

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