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An experimental feasibility study of pipeline corrosion pit detection using a piezoceramic time reversal mirror

机译:利用压电陶瓷时间倒转镜检测管道腐蚀坑的实验可行性研究

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Corrosion pits on pipelines lead to the formation of small holes, which cause further pipeline damage and even catastrophic consequences. Since many pipelines are located underground, the detection of corrosion pits on pipelines in real time is still an engineering challenge. In this paper, an experimental feasibility study on pipeline corrosion pit detection using the time reversal technique with a piezoceramic transducer as a time reversal mirror was investigated. A specimen of steel pipeline section was fabricated with an artificially drilled hole, which was to mimic a corrosion pit. By gradually increasing the depth of the hole, the evolution of the corrosion pit on the pipeline was simulated and studied. Two piezoceramic transducers were employed to generate a stress wave to propagate along the pipeline and to detect the propagated stress wave. With both the properties of sensing and actuating functions, a piezoceramic transducer was used as a time reversal mirror, which first detected the propagated stress wave signal and then sent 'back' the time-reversed signal as a propagating stress wave. With the inherent auto-focusing property of the time reversal technique, the detected time-reversed stress wave had a distinct focused peak. A corrosion pit on a pipeline, as a structural defect, reduces the energy of the focused signal received by the piezoceramic sensor and the attenuation ratio of the focused signal depends strongly on the degree of corrosion depth. Experimental results show that the amplitudes of the focused signal peak decrease with the increase of corrosion pit depth and we can use the peak amplitude of the focused signal to determine the state of pipeline corrosion. The time reversal based method proposed in this paper shows the potential to quantitatively monitor the damage degree of corrosion pits on pipelines in real time.
机译:管道上的腐蚀坑会导致形成小孔,这会进一步造成管道损坏,甚至造成灾难性后果。由于许多管道位于地下,因此实时检测管道上的腐蚀坑仍然是工程上的挑战。本文以压电陶瓷换能器为时间倒转镜,采用时间倒转技术进行管道腐蚀点检测的实验可行性研究。用模拟钻孔制作的人工钻制的钢管截面样品被制成。通过逐渐增加孔的深度,对管道上腐蚀坑的演变进行了模拟和研究。使用两个压电陶瓷换能器产生应力波,以沿管道传播并检测传播的应力波。具有传感和致动功能的特性,压电陶瓷换能器被用作时间倒转镜,它首先检测传播的应力波信号,然后将时间倒转的信号作为传播的应力波发回。借助时间反转技术固有的自动聚焦特性,检测到的时间反转应力波具有明显的聚焦峰。管道上的腐蚀坑(作为结构缺陷)会减少压电陶瓷传感器接收到的聚焦信号的能量,并且聚焦信号的衰减比很大程度上取决于腐蚀深度的程度。实验结果表明,聚焦信号的峰值幅度随腐蚀坑深度的增加而减小,可以利用聚焦信号的峰值幅度确定管道腐蚀的状态。本文提出的基于时间反转的方法显示了实时定量监测管道腐蚀点损伤程度的潜力。

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