Processing and mechanical properties of high temperature/high performance composites. Book 3. Constituent properties and macroscopic performance: MMCS. Annual report, March 1992-April 1993
Technical Report
·
OSTI ID:5985581
Partial Contents: Mode I Fatigue Cracking in a Fiber Reinforced Metal Matrix Composite; Fatigue Crack Growth in Fiber-Reinforced Metal-Matrix Composites; The Anisotropic Mechanical Properties of a Ti Matrix Composite Reinforced with SiC Fibers; Models for the Creep of Ceramic Matrix Composite Materials; The Creep and Fracture Resistance of Gamma-TiAl Reinforced with Al2O3 Fibers; The Mechanical Properties of Al Alloys Reinforced with Continuous Al2O3 Fibers; The Mode Fracture Resistance of Unidirectional Fiber-Reinforced Aluminum Matrix Composites; The Ultimate Tensile Strength of Metal and Ceramic-Matrix Composites; Cracking and Damage Mechanisms in Ceramic/Metal Multilayers.
- Research Organization:
- California Univ., Santa Barbara, CA (United States). Dept. of Materials
- OSTI ID:
- 5985581
- Report Number(s):
- AD-A-266396/1/XAB; CNN: N00014-92-J-1808
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
36 MATERIALS SCIENCE
360603* -- Materials-- Properties
ALUMINIUM COMPOUNDS
ALUMINIUM OXIDES
CARBIDES
CARBON COMPOUNDS
CERAMICS
CHALCOGENIDES
COMPOSITE MATERIALS
CRACKS
CREEP
DEFORMATION
ELASTICITY
FATIGUE
FIBERS
FRACTURE MECHANICS
MATERIALS
MATRIX MATERIALS
MECHANICAL PROPERTIES
MECHANICS
OXIDES
OXYGEN COMPOUNDS
REINFORCED MATERIALS
RESEARCH PROGRAMS
SILICON CARBIDES
SILICON COMPOUNDS
SLIP
STRESSES
TEMPERATURE DEPENDENCE
TENSILE PROPERTIES
360603* -- Materials-- Properties
ALUMINIUM COMPOUNDS
ALUMINIUM OXIDES
CARBIDES
CARBON COMPOUNDS
CERAMICS
CHALCOGENIDES
COMPOSITE MATERIALS
CRACKS
CREEP
DEFORMATION
ELASTICITY
FATIGUE
FIBERS
FRACTURE MECHANICS
MATERIALS
MATRIX MATERIALS
MECHANICAL PROPERTIES
MECHANICS
OXIDES
OXYGEN COMPOUNDS
REINFORCED MATERIALS
RESEARCH PROGRAMS
SILICON CARBIDES
SILICON COMPOUNDS
SLIP
STRESSES
TEMPERATURE DEPENDENCE
TENSILE PROPERTIES