Acoustic emission is one of the powerful techniques that can be used for in situ structural health monitoring of composite laminates. One of the main issues of AE is to characterize the different damage mechanisms from the detected AE signals. In this present work, pure resin and GFRP composites laminates with different stacking sequences such as 0o , 90o , angle ply[±45o ], crossply [0o /90o ] are used to trigger different failure mechanisms when subjected to tensile test with AE monitoring. The study of failure mechanisms is facilitated by the choice of different oriented specimens in which one or two such mechanisms predominate. Range of Peak frequencies in each orientation is investigated using FFT analysis. Fast Fourier Transform (FFT) enabled calculating the frequency content of each damage mechanism. Randomly chosen hits from each range of peak frequencies for the specimens with different orientations subjected to tensile test with acoustic emission monitoring are analyzed using STFFT analysis. STFFT analysis is used to highlight the possible failure mechanism associated with each signal. The predominance of failure modes in each orientation is useful in the study of discrimination of failure modes in composite laminates from acoustic emission data.

Effect of fiber orientation in uni-directional glass epoxy laminate using acoustic emission monitoring

SANTULLI, CARLO;
2011-01-01

Abstract

Acoustic emission is one of the powerful techniques that can be used for in situ structural health monitoring of composite laminates. One of the main issues of AE is to characterize the different damage mechanisms from the detected AE signals. In this present work, pure resin and GFRP composites laminates with different stacking sequences such as 0o , 90o , angle ply[±45o ], crossply [0o /90o ] are used to trigger different failure mechanisms when subjected to tensile test with AE monitoring. The study of failure mechanisms is facilitated by the choice of different oriented specimens in which one or two such mechanisms predominate. Range of Peak frequencies in each orientation is investigated using FFT analysis. Fast Fourier Transform (FFT) enabled calculating the frequency content of each damage mechanism. Randomly chosen hits from each range of peak frequencies for the specimens with different orientations subjected to tensile test with acoustic emission monitoring are analyzed using STFFT analysis. STFFT analysis is used to highlight the possible failure mechanism associated with each signal. The predominance of failure modes in each orientation is useful in the study of discrimination of failure modes in composite laminates from acoustic emission data.
2011
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11581/310024
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