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Fatigue crack tip opening behavior in particulate reinforced Al-alloy composites
Gang Liu, J. K. Shang
Materials Science and Engineering
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Dive into the research topics of 'Fatigue crack tip opening behavior in particulate reinforced Al-alloy composites'. Together they form a unique fingerprint.
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Keyphrases
Tip Opening
100%
Particulate Reinforced
100%
Opening Behaviour
100%
Matrix Alloy
100%
Al Alloy Composites
100%
Fatigue Crack Tip
100%
Crack Tip
66%
Fatigue Crack Growth Rate
66%
Stress Intensity
66%
Crack Opening Displacement
66%
Aluminum Oxide
33%
High Stress
33%
Reinforced
33%
Fatigue Crack Growth
33%
Low Growth Rate
33%
Small Displacement
33%
Aging Condition
33%
Crack Opening
33%
Fatigue Crack Growth Resistance
33%
Al-Cu Composite
33%
Engineering
Fatigue Crack Growth
100%
Al Alloy
100%
Fatigue Crack
100%
Crack Tip Opening
100%
Reinforced Al
100%
Crack Growth Rate
50%
Stress Intensity
50%
Crack Tip Opening Displacement
50%
Crack Tip
25%
Crack Opening
25%
Low Growth Rate
25%
Material Science
Crack Tip
100%
Fatigue Crack Growth
100%
Fatigue Crack
100%
Stress Intensity
50%
Crack Tip Opening Displacement
50%
Al2O3
25%
Matrix Composite
25%