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Advanced Fatigue Crack Detection Using Nonlinear Self-Sensing Impedance Technique for Automated NDE of Metallic Structures

机译:基于非线性自感应阻抗技术的金属结构自动NDE的高级疲劳裂纹检测

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摘要

This article reports the application of a nonlinear impedance technique under a low-frequency vibration to detect contact-type structural defects such as fatigue cracks. If the contact-type damage is developed within the structure due to the low-frequency dynamic load, the vibration can cause a nonlinear fluctuation of the structural impedance because of the contact acoustic nonlinearity (CAN). This nonlinear effect can lead to amplitude modulation and phase modulation of the current flow. The nonlinear characteristics of the structural impedance can be extracted by observing the coupled electromechanical impedance of a piezoelectric active sensor and utilizing nonlinear wave modulation spectroscopy. Experimentally, a low-frequency vibration was applied to a notched coupon at a certain natural frequency by a shaker, so that a nonlinear fatigue crack can be artificially formed at the notch tip. Then, the nonlinear features are extracted based on a self-sensing impedance measurement from a host structure under a low-frequency vibration. The damage metric was established based on the nonlinear fluctuation of the impedance due to the CAN.
机译:本文报道了在低频振动下非线性阻抗技术在检测接触型结构缺陷(例如疲劳裂纹)方面的应用。如果由于低频动态载荷而在结构内产生接触型损坏,则由于接触声非线性(CAN),振动会引起结构阻抗的非线性波动。这种非线性效应会导致电流的幅度调制和相位调制。可以通过观察压电有源传感器的耦合机电阻抗并利用非线性波调制光谱来提取结构阻抗的非线性特征。实验上,通过振动器以一定的固有频率将低频振动施加于带缺口的试片,从而可以在带缺口的尖端人工地形成非线性疲劳裂纹。然后,基于自感阻抗测量,在低频振动下从主体结构中提取非线性特征。基于CAN引起的阻抗的非线性波动来建立损伤度量。

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