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Ultrasonic Detection of Stress Corrosion Cracks in Pipe Samples Using Guided Waves

机译:用导波超声检测管道样品中的应力腐蚀裂纹

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Stress corrosion cracking (SCC) is a serious problem in gas pipelines. The detection of such cracks are difficult with currently available in-line inspection technologies. Recent work demonstrated the crack detection potential of using guided waves and gas-coupled broad band ultrasound by experimental detection of machined crack-like defects based on Halfwave's ART Scan® tool [1]. The present study experimentally investigated the detection of real SCC, with crack depths of up to 4.3 mm, on a real pipe, with a nominal wall thickness of 12.7mm, using broadband (0.3-1.3 MHz) transducers in a pitch-catch set-up. Acoustic signals were received by eight transducers, surrounding the transmitter, at cylindrical scan locations, and different processing parameters were extracted. 2D parameter scans displayed the crack and pitting corrosion areas. The summed power parameter resulted in signal differences of up to 8 dB for the crack area as compared to the surrounding area. In conclusion, the detection of real SCC by using an ART Scan® based set-up was successfully demonstrated on a real pipe section in water.
机译:应力腐蚀开裂(SCC)是天然气管道中的一个严重问题。使用当前可用的在线检查技术很难检测到此类裂纹。最近的工作通过基于Halfwave的ARTScan®工具对机加工的裂纹状缺陷进行实验检测,证明了使用导波和气体耦合宽带超声检测裂纹的潜力[1]。本研究实验性地研究了在节距捕获装置中使用宽带(0.3-1.3 MHz)传感器在标称壁厚为12.7mm的真实管道上检测裂纹深度最大为4.3 mm的真实SCC的方法。向上。在圆柱扫描位置上,由围绕变送器的八个换能器接收到声波信号,并提取了不同的处理参数。二维参数扫描显示了裂纹和点蚀区域。与周围区域相比,裂纹区域的总功率参数导致信号差高达8 dB。总而言之,使用基于ARTScan®的设置对真实SCC的检测已在水中的真实管道截面上成功展示。

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