J. Lamon et al., Probabilistic-statistical approach to matrix damage and stress-strain behavior of 2-D woven SiC/SiC ceramic matrix composites, J EUR CERAM, 18(13), 1998, pp. 1797-1808
The matrix damage evolution in a 2-D SiC/SiC composite reinforced with fabr
ics of fiber bundles was predicted from properties of basic constituents us
ing a finite element analysis of failure probabilities. Failure probabiliti
es were computed using a finite element post processor including the multia
xial elemental strength model for handling fracture statistics under multia
xial stress-states. The associated stress-strain behavior of the selected e
lementary cell was derived from the stress analysis. The predicted matrix d
amage evolution was found in good agreement with that identified by microsc
opy on practical 2-D SiC/SiC woven composites under tension. The predicted
stress-strain behavior and Young's moduli compared satisfactorily with the
experimental data. The approach was then applied to a cell of fully dense 2
-D woven SiC/SiC composite under tension, and then to a cell of conventiona
l 2-D woven SiC/SiC composite subject to a gradient of forces. (C) 1998 Els
evier Science Limited. All rights reserved.