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Fracture mechanics of a composite with ductile fibers
W. W. Gerberich
Research output
:
Contribution to journal
›
Article
›
peer-review
38
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Scopus citations
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Keyphrases
Fracture Mechanics
100%
Crack Propagation
100%
Ductile Fiber
100%
Volume Fraction
66%
Plastic Energy Dissipation
66%
Critical Stress
66%
Experimental Verification
33%
High Energy Density
33%
Fiber Content
33%
Theoretical Description
33%
Decreasing Function
33%
Metal Matrix Composites
33%
Fiber Spacing
33%
Increasing Function
33%
Metallic Fiber
33%
Stainless Steel Fiber
33%
Aluminum Composite
33%
Fiber Contribution
33%
Engineering
Crack Propagation
100%
Fracture Mechanics
100%
Energy Dissipation
66%
Directional
33%
Critical Stress Intensity Factor
33%
Stress Intensity
33%
Critical Stress
33%
Fiber Content
33%
Stainless Steel
33%
Steel Fiber
33%
Metal Matrix Composite
33%
Metallic Fiber
33%
Flux Density
33%
Aluminum
33%
Material Science
Fracture Mechanics
100%
Crack Propagation
100%
Volume Fraction
66%
Aluminum
33%
Stress Intensity Factor
33%
Stainless Steel
33%
Stress Intensity
33%
Metal Matrix Composite
33%
Steel Fiber
33%
High Energy Density
33%