
doi: 10.2172/762755
OAK B188 Failure Mechanisms for Ceramic Matrix Textile Composites at High Temperature. This summary refers to work done in approximately the twelve months to the present in our contract ''Failure Mechanisms for Ceramic Matrix Textile Composites at High Temperature,'' which commenced in August, 1997. Our activities have consisted mainly of measurements of creep-controlled crack growth in ceramic matrix composites (CMCS) at high temperature; imaging of deformation fields in textile CMCS; the assessment of mechanisms of damage in textile composites, especially those with through-thickness reinforcement; the formulation of models of delamination crack growth under fatigue in textile composites; analytical models of the bridging traction law for creeping fibers in a CMC at high temperature; and an analytical model of a bridging fiber tow in a textile composite.
Fibers, Ceramics, Mathematical Models, 36 Materials Science, Textiles, Composite Materials, Failure Mode Analysis, Creep, Deformation, Crack Propagation, 620
Fibers, Ceramics, Mathematical Models, 36 Materials Science, Textiles, Composite Materials, Failure Mode Analysis, Creep, Deformation, Crack Propagation, 620
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