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The master curve method: A new concept for brittle fracture
Kim Wallin
Research output
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Contribution to journal
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Article
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Scientific
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peer-review
121
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Keyphrases
Fracture Toughness
100%
Brittle Fracture
100%
Master Curve Model
100%
Miniature Specimen
66%
Toughness
33%
Fracture Resistance
33%
Structural Steel
33%
Fracture Mechanics
33%
Aviation
33%
Ferritic Steel
33%
Structural Integrity Assessment
33%
Cleavage Fracture
33%
Testing Standards
33%
Large Specimen
33%
Specimen Size
33%
Statistical Treatment
33%
ASTM E1921
33%
Ductile to Brittle Transition Region
33%
Fracture Model
33%
Offshore Industry
33%
Linear Elastic Fracture
33%
Transition Range
33%
Elastic-plastic Finite Element Analysis
33%
Validity Range
33%
Lower Shelf
33%
Resistance Parameter
33%
Treatment Methodologies
33%
INIS
fractures
100%
curves
100%
fracture toughness
100%
range
66%
testing
66%
assessments
33%
size
33%
industry
33%
plastics
33%
finite element method
33%
investigations
33%
steels
33%
cleavage
33%
fracture mechanics
33%
statistical data
33%
ferritic steels
33%
ductile-brittle transitions
33%
shores
33%
Engineering
Master Curve
100%
Brittle Fracture
100%
Fracture Strength
100%
Structural Steel
25%
Structural Integrity
25%
Offshore Industry
25%
Ferritic Stainless Steel
25%
Bend Specimen
25%
Cleavage Fracture
25%
Linear Elastic Fracture
25%
Brittle Transition
25%
Statistical Data
25%
Finite Element Analysis
25%
Fracture Resistance
25%
Fracture Mechanics
25%
Material Science
Fracture Toughness
100%
Brittle Fracture
100%
Fracture Toughness Testing
33%
Ferritic Steel
33%
Cleavage Fracture
33%
Ductile-to-Brittle Transition
33%
Fracture Mechanics
33%
Linear Elastic Fracture
33%
Finite Element Methods
33%