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Characteristic strength of quasi-brittle materials
J. F. Labuz
, L. Biolzi
Civil, Environmental, and Geo- Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
75
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Scopus citations
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Keyphrases
Process Zone
100%
Quasi-brittle Materials
100%
Character Strengths
100%
Size Effect
50%
Intrinsic Mechanism
50%
Maximum Stress
33%
Stress Concentration
16%
Failure Criterion
16%
System Behavior
16%
Microcracks
16%
Strength of Materials
16%
Radius of Curvature
16%
Peak Load
16%
Acoustic Emission
16%
Structural Behavior
16%
Theoretical Strength
16%
Cohesive Interaction
16%
Nominal Strength
16%
Notch Effect
16%
Neuber
16%
Stress Strength
16%
Geometrically Similar
16%
Notch Tip
16%
Rock-like
16%
Engineering
Process Zone
100%
Quasi-Brittle Material
100%
Size Effect
50%
Maximum Stress
33%
Failure Criterion
16%
Peak Load
16%
Notch Tip
16%
Stress Concentration
16%
System Behavior
16%
Ultimate Tensile Strength
16%
Nominal Strength
16%
Microcracking
16%
Acoustic Emission
16%
Material Science
Quasi-Brittle Material
100%
Ultimate Tensile Strength
33%
Stress Concentration
33%
Microcracking
33%
Acoustic Emission
33%