Acoustic emission and lifetime prediction during static fatigue tests on ceramic-matrix-composite at high temperature under air

The present work deals with two types of ceramic matrix composites CMC: SiC f/[Si–B–C] and C f/[Si–B–C], loaded in static fatigue at high temperature. An acoustic emission-based technique is proposed to predict the residual fatigue life. Indeed, two approaches based on the analysis of released energ...

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Veröffentlicht in:Composites. Part A, Applied science and manufacturing Applied science and manufacturing, 2010, Vol.41 (7), p.913-918
Hauptverfasser: Momon, S., Moevus, M., Godin, N., R’Mili, M., Reynaud, P., Fantozzi, G., Fayolle, G.
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Sprache:eng
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Zusammenfassung:The present work deals with two types of ceramic matrix composites CMC: SiC f/[Si–B–C] and C f/[Si–B–C], loaded in static fatigue at high temperature. An acoustic emission-based technique is proposed to predict the residual fatigue life. Indeed, two approaches based on the analysis of released energy are applied. A coefficient denoted R AE is evaluated. Moreover, a cumulative Benioff law commonly used for pre-seismic activations is applied. Under constant stress, micro-cracks are created, which generate elastic waves in a manner similar to earthquakes. The law predicted satisfactorily the time-to-failure of SiC f/[Si–B–C] composite under a constant load.
ISSN:1359-835X
1878-5840
DOI:10.1016/j.compositesa.2010.03.008