Failure mechanisms in high temperature composite materials; Proceedings of the Symposium, 112th ASME Winter Annual Meeting, Atlanta, GA, Dec. 1-6, 1991
Conference
·
OSTI ID:6237858
The physical deformation and failure mechanisms in high temperature composite materials are addressed. Particular attention is given to thermomechanical fatigue of ceramic matrix composites; creep and stress relaxation modeling of polycrystalline ceramic fibers; transverse ductility of metal matrix composites; microfracture in high-temperature metal matrix crossply laminates; the fatigue life prediction of an intermetallic matrix composite at elevated temperatures; and deformation and failure mechanisms in metal matrix composites.
- OSTI ID:
- 6237858
- Report Number(s):
- CONF-911213--; ISBN: 0-7918-0841-6
- Country of Publication:
- United States
- Language:
- English
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Mon Dec 31 23:00:00 EST 1990
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Related Subjects
36 MATERIALS SCIENCE
360603* -- Materials-- Properties
COMPOSITE MATERIALS
CREEP
CRYSTALLIZATION
CRYSTALS
DUCTILITY
FATIGUE
FRACTURE MECHANICS
MATERIALS
MATRIX MATERIALS
MECHANICAL PROPERTIES
MECHANICS
MEETINGS
PHASE TRANSFORMATIONS
POLYCRYSTALS
RELAXATION
STRESS RELAXATION
STRESSES
TENSILE PROPERTIES
THERMAL STRESSES
360603* -- Materials-- Properties
COMPOSITE MATERIALS
CREEP
CRYSTALLIZATION
CRYSTALS
DUCTILITY
FATIGUE
FRACTURE MECHANICS
MATERIALS
MATRIX MATERIALS
MECHANICAL PROPERTIES
MECHANICS
MEETINGS
PHASE TRANSFORMATIONS
POLYCRYSTALS
RELAXATION
STRESS RELAXATION
STRESSES
TENSILE PROPERTIES
THERMAL STRESSES