Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE · 2010 · 10 citations · 0 references
EngineeringAe ParametersAcoustic Emission CharacterizationAcoustic EmissionPhysical AcousticCivil EngineeringMechanical EngineeringReinforced ConcreteStructural Health MonitoringStructural AnalysisSeismic AnalysisAe Hit RateStructural PerformanceAcoustic MaterialFiber-reinforced Cement CompositeStructural MechanicsStructural EngineeringStructural Vibration
The acoustic emission (AE) behaviour of steel fibre reinforced concrete is studied in this paper. The experiments were conducted in four-point bending with concurrent monitoring of AE signals. The sensors used, were of broadband response in order to capture a wide range of fracturing phenomena. The results indicate that AE parameters undergo significant changes much earlier than the final fracture of the specimens, even if the AE hit rate seems approximately constant. Specifically, the Ib-value which takes into account the amplitude distribution of the recent AE hits decreases when the load reaches about 60-70 % of its maximum value. Additionally, the average frequency of the signals decreases abruptly when a fracture incident occurs, indicating that matrix cracking events produce higher frequencies than fibre pull-out events. It is concluded that proper study of AE parameters enables the characterization of structural health of large structures in cases where remote monitoring is applied.