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Phase equilibria and transformations in adiabatic systems
A. Umantsev
*
,
G. B. Olson
*
Corresponding author for this work
Materials Science and Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
15
Scopus citations
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Keyphrases
Adiabatic System
100%
By Stages
50%
Classical nucleation Theory
50%
Continuous Modulation
50%
Displacive Transformation
50%
Domain Formation
50%
Domain Structure
50%
Domain Walls
50%
Dynamic Analysis
50%
Dynamic Regime
50%
Energy Conservation
50%
First-order Phase Transformation
50%
First-order Phase Transition
50%
Heat Trap
50%
Homogeneous Phase
50%
Hybrid Mechanism
50%
Kinetic Parameters
50%
Local Temperature
50%
Metastable Phases
50%
Nonlinear Dynamics
50%
One-dimensional numerical Simulation
50%
Order Parameter
100%
Period Doubling
50%
Phase Decomposition
50%
Phase Equilibria
100%
Phase Structure
50%
Phase Transformation
100%
Small Particles
50%
Stability Analysis
50%
Thermodynamic Parameters
50%
Thermodynamic Stability
50%
Unstable States
50%
Engineering
Computer Simulation
100%
Conservation of Energy
100%
Displacive Transformation
100%
Domain Formation
100%
Domain Structure
100%
Domain Wall
100%
Dynamic Regime
100%
Intermediate Phase
100%
Kinetic Parameter
100%
Metastable Phase
100%
Non-Linear Dynamics
100%
One Dimensional
100%
Order Phase Transition
100%
Phase Structure
100%
Stability Analysis
100%
Thermodynamic Parameter
100%
Thermodynamic Stability
100%
Transients
100%
Material Science
Coarsening
100%
Domain Wall
50%
Dynamic Analysis
50%
Nucleation
50%
Phase Structure
50%