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Laser based impedance measurement for pipe corrosion and bolt-loosening detection

机译:基于激光的阻抗测量,用于管道腐蚀和螺栓松动检测

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This study proposes a laser based impedance measurement system and impedance based pipe corrosion and bolt-loosening monitoring techniques under temperature variations. For impedance measurement, the laser based impedance measurement system is optimized and adopted in this paper. First, a modulated laser beam is radiated to a photodiode, converting the laser beam into an electric signal. Then, the electric signal is applied to a MFC transducer attached on a target structure for ultrasonic excitation. The corresponding impedance signals are measured, re-converted into a laser beam, and radiated back to the other photodiode located in a data interrogator. The transmitted impedance signals are treated with an outlier analysis using generalized extreme value (GEV) statistics to reliably signal off structural damage. Validation of the proposed technique is carried out to detect corrosion and bolt-loosening in lab-scale carbon steel elbow pipes under varying temperatures. It has been demonstrated that the proposed technique has a potential to be used for structural health monitoring (SHM) of pipe structures.
机译:这项研究提出了一种基于激光的阻抗测量系统,以及在温度变化下基于阻抗的管道腐蚀和螺栓松动监测技术。对于阻抗测量,本文优化并采用了基于激光的阻抗测量系统。首先,将调制的激光束辐射到光电二极管,将激光束转换为电信号。然后,将电信号施加到安装在目标结构上的MFC换能器上,以进行超声激励。测量相应的阻抗信号,将其重新转换为激光束,然后辐射回位于数据询问器中的另一个光电二极管。通过使用广义极值(GEV)统计数据进行离群分析来处理传输的阻抗信号,从而可靠地发出结构损坏的信号。对所提出的技术进行了验证,以检测在不同温度下实验室规模的碳钢弯管中的腐蚀和螺栓松动。已经证明,提出的技术具有用于管道结构的结构健康监测(SHM)的潜力。

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