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Cavity formation and early growth in a superplastic Al-Mg alloy
D. H. Bae
, A. K. Ghosh
Department of Materials Science and Engineering
Research output
:
Contribution to journal
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Article
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peer-review
54
Citations (Scopus)
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Engineering
Cavity
100%
Strain
27%
Image Analysis
18%
Deformation
9%
Temperature Range
9%
Nanoscale
9%
Early Stage
9%
Superplastic Deformation
9%
Interfacial Defect
9%
Strain Rate Sensitivity
9%
Initial Stage
9%
Tensile Deformation
9%
High Strain Rate
9%
Mg-Al Alloy
9%
Observables
9%
Flow Stress
9%
Size Range
9%
Matrix Interface
9%
Density
9%
Kinetic
9%
Mechanisms
9%
Prediction
9%
Defects
9%
Internals
9%
Decohesion
9%
Physics
Growth
54%
Particle
27%
Matrix
18%
Microscopy
9%
Deformation
9%
Scanning Electron Microscopy
9%
Nanoscale
9%
Defects
9%
Cavitation Flow
9%
Tensile Deformation
9%
Low Temperature Tests
9%
Volume
9%
Kinetics
9%
Knowledge
9%
Starting
9%
Material Science
Strain Rate
27%
Nucleation
18%
Copper Alloys
18%
Defect
9%