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Interaction of oxygen interstitials with lattice faults in Ti
M. Ghazisaeidi,
D. R. Trinkle
Materials Science and Engineering
Nuclear, Plasma, and Radiological Engineering
Materials Research Lab
National Center for Supercomputing Applications (NCSA)
Beckman Institute for Advanced Science and Technology
Research output
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peer-review
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Dive into the research topics of 'Interaction of oxygen interstitials with lattice faults in Ti'. Together they form a unique fingerprint.
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Engineering
Dislocation Core
100%
Energetics
100%
Stacking Fault Energy
100%
Dislocation Interaction
100%
Plastic Deformation
100%
Interstitial Site
100%
Hexagonal Close Packed
100%
Packed Metal
100%
Prism Plane
100%
Interstitial Oxygen
100%
Keyphrases
Twin Boundary
100%
Oxygen Interstitials
100%
Stacking Faults
66%
Defect Interaction
33%
Dislocation Core
33%
Rutile
33%
Mechanical Properties
33%
Stacking Fault Energy
33%
Interstitial Site
33%
Plastic Deformation
33%
Dislocation Interaction
33%
{10-12} Twinning
33%
Hexagonal Close-packed Metals
33%
Dislocation Boundaries
33%
Octahedral Sites
33%
Boundary Influence
33%
Physics
Crystal Defect
100%
Energetics
50%
Plastic Deformation
50%
Stacking Fault Energy
50%
Material Science
Crystal Defect
100%
Titanium
33%
Plastic Deformation
33%