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Crystallography and microstructural studies of phase transformations in the Dy
2
O
3
system
Youn Joong Kim,
Waltraud M. Kriven
Materials Science and Engineering
Mechanical Science and Engineering
Prairie Research Institute
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2
O
3
system'. Together they form a unique fingerprint.
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Keyphrases
B to C
50%
Beta Phase
100%
Bond Energy
50%
C-phase
50%
Ca2SiO4
50%
Charge Repulsion
50%
Cubic Transformation
50%
Diffraction
50%
Displacive
50%
Dy2O3
100%
Dysprosia
50%
Ferroelastic
50%
Lattice Parameter
50%
Lattice Strain
50%
Microstructural Study
100%
Microstructure Transformation
50%
Modulated Structure
50%
Monoclinic
100%
Orthorhombic
50%
Phase Transformation
100%
Phase Transformation Mechanism
50%
Spontaneous Strain
50%
Transmission Electron Spectroscopy
50%
β-structure
100%
Chemistry
Cation
100%
Dissociation Energy
100%
Electron Transmission Spectroscopy
100%
Grinding (Machining)
100%
Lattice Parameter
100%
Engineering
Driving Force
50%
Energy Engineering
50%
Grinding (Machining)
50%
Interlayer
50%
Lattice Parameter
50%
Microstructure
50%
Monoclinic
100%
Ray Diffraction
50%
Transmissions
50%
Material Science
Crystallography
100%
Electron Spectroscopy
50%
Lattice Constant
50%