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Full‐field characterization of a fatigue crack: crack closure revisited
Jie Tong
, S. Alshammrei
, T. Wigger
, Colin Lupton
, J. R. Yates
University of Manchester
Research output
:
Contribution to journal
›
Article
›
peer-review
427
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Dive into the research topics of 'Full‐field characterization of a fatigue crack: crack closure revisited'. Together they form a unique fingerprint.
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Engineering
Crack Tip
100%
Fatigue Crack
100%
Crack Closure
100%
Digital Image Correlation
40%
Applied Load
20%
Load Level
20%
Stress-Intensity Factor
20%
Crack Driving Force
20%
Cyclic Loading Condition
20%
Crack Tip Field
20%
Model Material
20%
Crack Opening Displacement
20%
Surface Crack
20%
INIS
fatigue
100%
crack propagation
100%
cracks
100%
correlations
18%
images
18%
loading
18%
compacts
18%
levels
9%
strains
9%
surfaces
9%
stress intensity factors
9%
attenuation
9%
series expansion
9%
unloading
9%
Material Science
Crack Closure
100%
Fatigue Crack
100%
Crack Tip
100%
Stress Intensity Factor
16%
Surface Crack
16%