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Size effect on the fracture properties of nuclear graphite
Gyanender Singh
, Haiyan Li
,
Alex Fok
,
Susan Mantell
Biomaterials
Mechanical Engineering
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
2
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Scopus citations
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Dive into the research topics of 'Size effect on the fracture properties of nuclear graphite'. Together they form a unique fingerprint.
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Keyphrases
Size Effect
100%
Nuclear Graphite
100%
Fracture Properties
100%
Fracture Toughness
42%
Specimen Size
42%
Loading Conditions
28%
Three-point Bending
28%
Tensile Strength
28%
Statistical Features
28%
Structural Heterogeneity
28%
Fracture Mechanics
14%
Numerical Modeling
14%
Fracture Behavior
14%
Numerical Prediction
14%
Notched Beam
14%
Bending Strength
14%
Monte Carlo Analysis
14%
Flexural Strength
14%
Weibull Distribution
14%
Traction-separation Relations
14%
Fracture Test
14%
Simulated Load
14%
Single-edge Notched Beam
14%
Strength-toughness
14%
Maximum Load
14%
Material Damage
14%
Complex Fracture
14%
Continuum Damage Mechanics
14%
Damage Behavior
14%
Load-displacement Curve
14%
Beam Theory
14%
Material Effect
14%
Engineering
Fracture Property
100%
Size Effect
100%
Fracture Strength
50%
Point Bending
33%
Loading Condition
33%
Mean Value
33%
Statistical Characteristic
33%
Numerical Modeling
16%
Tensiles
16%
Fracture Behavior
16%
Damage Behavior
16%
Predicted Value
16%
Simulated Result
16%
Mechanic Model
16%
Numerical Prediction
16%
Load Displacement Curve
16%
Single Edge
16%
Ultimate Tensile Strength
16%
Monte Carlo Analysis
16%
Fracture Mechanics
16%
Bending Strength
16%
Damage Mechanics
16%
Material Science
Fracture Property
100%