Journal of low frequency noise, vibration and active control · 2018 · 25 citations · 22 references
Damage MechanismEngineeringBaseline SignalMeasurementDamage IdentificationNondestructive TestingStructural EngineeringCivil EngineeringStructural AnalysisStructural Health MonitoringGuided WavesDistance CompensationStructural MechanicsSignal ProcessingStructural VibrationStructural Identification
The baseline signal in structural inspection based on guided waves is difficult to be obtained under varying environmental conditions. To guarantee the precision of damage identification, developing baseline-free damage detection methods is significant in practical structural monitoring work. Conventional instantaneous baseline measurement needs a large number of PZT transducers. In this paper, a novel damage identification method for plate-like structures based on distance compensation is proposed to overcome this shortage. Combining with the concept of instantaneous baseline measurement, pitch-catch pairs of different propagation distance can be compared together to reveal the health information of the measured paths. This method overcomes the drawback of instantaneous measurement, which can only monitor the paths of identical wave travelling distance. Both simulations and experiments are conducted to validate the proposed method. Using this method, the influence of damage size and classification on amplitude variation is discussed. Finally, a baseline-free damage imaging technique is developed based on amplitude loss ratio of the first arriving wave package. The result shows a good agreement of the predicted result and the real damage location.
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Xiaoliang Zhao, Huidong Gao, Guangfan Zhang et al. · Smart Materials and Structures · 2007 · 723 citations
Time reversal active sensing for health monitoring of a composite plate
Hyun Woo Park, Hoon Sohn, Kincho H. Law et al. · Journal of Sound and Vibration · 2007 · 314 citations