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Proceedings Papers
Aerospace and Materials
Failure Mechanisms and Mechanism-Based Modeling in High Temperature Composites
Deformation and Fracture Response of Steel at High Temperature
IMECE 1996; 23-32https://doi.org/10.1115/IMECE1996-0465
Topics:
Deformation
,
Fracture (Materials)
,
High temperature
,
Steel
,
Creep
,
Failure
,
Fatigue
,
Design
,
Energy efficiency
,
Energy generation
Micromechanical Edge Effects in Glass Matrix Composites
IMECE 1996; 61-75https://doi.org/10.1115/IMECE1996-0469
Topics:
Composite materials
,
Glass
,
Damage
,
Stress
,
Crack propagation
,
Design
,
Failure mechanisms
,
Testing
Determination of Interfacial Fracture Toughness in High Temperature Composites
IMECE 1996; 155-165https://doi.org/10.1115/IMECE1996-0475
Topics:
Composite materials
,
Fracture toughness
,
High temperature
,
Fibers
,
Temperature
,
Epoxy adhesives
,
Epoxy resins
,
Polyester fabrics
,
Stress
,
Shear (Mechanics)
Microscopic Examination of Titanium Matrix Composites Subjected to Testing Designed to Cause Varying Dominant Damage Mechanisms
IMECE 1996; 167-187https://doi.org/10.1115/IMECE1996-0476
Topics:
Composite materials
,
Damage
,
Testing
,
Titanium
,
Temperature
,
Deformation
,
Stress
,
Aircraft
,
Brittleness
,
Creep
Edge Stresses in a Laminated Composite Strip Subjected to Axial Temperature Gradients
IMECE 1996; 189-209https://doi.org/10.1115/IMECE1996-0477
Topics:
Composite materials
,
Stress
,
Strips
,
Temperature gradient
,
Finite element analysis
,
Anisotropy
,
Approximation
,
Concurrent engineering
,
Delamination
,
Design
Structural Response of Oxidation Resistant Carbon-Carbon Composites
IMECE 1996; 211-220https://doi.org/10.1115/IMECE1996-0478
Topics:
Carbon
,
Composite materials
,
Oxidation
,
Laminates
,
Materials properties
,
Boron
,
Chemical vapor deposition
,
Finite element analysis
,
Particulate matter
,
Satin
Crack Deflection and Penetration Criteria for Brittle Matrix Composites
IMECE 1996; 221-223https://doi.org/10.1115/IMECE1996-0479
Topics:
Brittleness
,
Composite materials
,
Deflection
,
Fracture (Materials)
,
Fibers
,
Damage
,
Failure
,
Fracture toughness
,
Glass
,
Silicon
Damage in Oxidized Titanium Metal Matrix Composites
IMECE 1996; 225-237https://doi.org/10.1115/IMECE1996-0480
Topics:
Damage
,
Metal matrix composites
,
Titanium
,
Surface cracks
,
Fracture (Materials)
,
Laminates
,
Stress
,
Density
,
Oxidation
,
Phase transitions
Interphase Shear Strength of Titanium Metal Matrix Composites at Elevated Temperatures
IMECE 1996; 241-249https://doi.org/10.1115/IMECE1996-0482
Topics:
Metal matrix composites
,
Shear strength
,
Temperature
,
Titanium
,
Stress
,
Composite materials
,
Fibers
,
Traction
,
Shear stress
,
Finite element analysis
A Systematic Shear-Lag Approach for Analyzing the Failure Mechanisms in Ceramic Matrix Composites
IMECE 1996; 265-270https://doi.org/10.1115/IMECE1996-0484
Topics:
Ceramic matrix composites
,
Failure mechanisms
,
Shear (Mechanics)
,
Fibers
,
Damage
,
Fracture (Materials)
,
Fatigue
,
Composite materials
,
Density
,
Failure
Fatigue Damage in Metal Matrix Composites
IMECE 1996; 325-345https://doi.org/10.1115/IMECE1996-0488
Topics:
Fatigue damage
,
Metal matrix composites
,
Damage
,
Design
,
Fatigue
,
Aircraft
,
Composite materials
,
Fibers
,
Flight
,
High cycle fatigue
Durability and Damage Tolerance of Composites
Effects of Defects in a New Form of Affordable Composite Materials-Rod Reinforcement
IMECE 1996; 349-358https://doi.org/10.1115/IMECE1996-0489
Topics:
Composite materials
,
Rods
,
Buckling
,
Stress
,
Damage
,
Laminates
,
Delamination
,
Aircraft
,
Fibers
,
Finite element analysis
Failure Analysis of Fiber Composites at Phase Interface
IMECE 1996; 359-363https://doi.org/10.1115/IMECE1996-0490
Topics:
Composite materials
,
Failure analysis
,
Fibers
,
Phase interfaces
,
Failure
,
Stress
,
Anisotropy
,
Approximation
,
Fiber reinforced composites
,
Shapes
Modeling Delamination Growth in Composites
IMECE 1996; 373-385https://doi.org/10.1115/IMECE1996-0492
Topics:
Composite materials
,
Delamination
,
Modeling
,
Shells
,
Failure
,
Laminates
,
Absorption
,
Bending (Stress)
,
Cantilever beams
,
Crashworthiness
Durability and Damage Bahavior of 2-D and 3-D SiC/SiC Composites
IMECE 1996; 387-413https://doi.org/10.1115/IMECE1996-0493
Topics:
Composite materials
,
Damage
,
Durability
,
Fibers
,
Porosity
,
Compression
,
Damage mechanics
,
Failure
,
Fracture (Materials)
,
Fracture (Process)
Failure Development in Particulate Composites
IMECE 1996; 415-425https://doi.org/10.1115/IMECE1996-0494
Topics:
Composite materials
,
Failure
,
Particulate matter
,
Fracture (Materials)
,
Brittleness
,
Crack propagation
Creep Behaviour of Hot Isostatically Pressed Metal-Matrix Composite
IMECE 1996; 443-454https://doi.org/10.1115/IMECE1996-0496
Topics:
Creep
,
Metal matrix composites
,
Composite materials
,
Failure
,
Porosity
,
Stress
,
Cavities
,
Elongation
,
High temperature
,
Hot pressing
The Effect of pH on the Mechanism of Corrosion and Stress Corrosion, and Degradation of Mechanical Properties of AA6061 and Nextel 440 Fiber Reinforced AA6061 Composite
IMECE 1996; 455-470https://doi.org/10.1115/IMECE1996-0497
Topics:
Composite materials
,
Corrosion
,
Fibers
,
Mechanical properties
,
Stress corrosion cracking
,
Alloys
,
Aluminum
,
Chemical kinetics
,
Ions
,
Stress
Fatigue Damage Evolution in a Short Fiber Reinforced Metal Matrix Composite
IMECE 1996; 471-488https://doi.org/10.1115/IMECE1996-0498
Topics:
Fatigue damage
,
Fibers
,
Metal matrix composites
,
Damage
,
Fracture (Process)
,
Composite materials
,
Fatigue
,
Acoustic emissions
,
Aluminum casting alloys
,
Cycles
Bridging Fiber Stress in Metal Matrix Composites: An Analytical Model
IMECE 1996; 489-496https://doi.org/10.1115/IMECE1996-0499
Topics:
Fibers
,
Metal matrix composites
,
Stress
,
Cycles
,
Fatigue
,
Shear (Mechanics)
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