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Article Dans Une Revue Composite Structures Année : 2020

Bearing damage identification in oxide/oxide ceramic matrix composite with a new test design

Marion Broutelle
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  • PersonId : 1064033
Frederic Lachaud
Ludovic Barriere
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Alain Daidié
Alexandre Chardonneau
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  • PersonId : 1064035
Florent Bouillon
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  • PersonId : 1061982

Résumé

In this paper, the mechanisms of damage of an oxide/oxide ceramic matrix composite bearing are studied with a new experimental setup, the balanced quarter hole device (BQH). This test was designed to allow direct observation of the damage development on a material subjected to bearing failure. In a standard bearing experiment, real time monitoring is extremely difficult to set up, and post mortem observations of the bearing plane can be biased by the cutting operation. High speed cameras were used to take pictures of the bearing plane so that the damage development could be studied and a damage chronology established. The validity of the setup was verified by comparing the results obtained with those of a standard bearing test. Two different stacking sequences were studied, and the influence of the material microstructure and composite machining was investigated. It was shown that the first critical damage, matrix cracks, appeared before the load drop, and then led to delamination and kink bands, causing the final failure of the material.
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Dates et versions

hal-02462012 , version 1 (21-07-2022)

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Paternité - Pas d'utilisation commerciale

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Marion Broutelle, Frederic Lachaud, Ludovic Barriere, Alain Daidié, Alexandre Chardonneau, et al.. Bearing damage identification in oxide/oxide ceramic matrix composite with a new test design. Composite Structures, 2020, 236, pp.111902 1-17. ⟨10.1016/j.compstruct.2020.111902⟩. ⟨hal-02462012⟩
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