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The kinetics of lath martensitic transformation
G. Ghosh
*
,
G. B. Olson
*
Corresponding author for this work
Materials Science and Engineering
Research output
:
Contribution to journal
›
Conference article
›
peer-review
9
Scopus citations
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INIS
alloys
16%
austenite
16%
defects
16%
geometry
16%
kinetics
50%
martensitic steels
16%
microstructure
16%
nucleation
16%
phase transformations
50%
shear
16%
solutions
16%
temperature dependence
16%
thermodynamics
16%
volume
16%
Chemistry
Alloy
16%
Analytical Method
16%
Aqueous Solution
16%
Chemical Kinetics Characteristics
33%
Martensitic Transformation
100%
Microstructure
16%
Pharmacokinetics
16%
Shear Modulus
16%
Thermodynamics
16%
Volume
16%
Physics
Alloy
16%
Austenite
16%
Defects
16%
Fractions
16%
Kinetics
33%
Microstructure
16%
Model
50%
Shear Modulus
16%
Temperature Dependence
16%
Thermodynamics
16%
Volume
16%
Engineering
Alloy
16%
Composition Dependence
16%
Defects
16%
Kinetic
33%
Microstructure
16%
Models
50%
Shear Modulus
16%
Temperature Dependence
16%
Thermodynamics
16%
Material Science
Defect
16%
Elastic Moduli
16%
Nucleation
66%
Solution
16%
Biochemistry, Genetics and Molecular Biology
Austenite
16%
Kinetics
33%
Solution and Solubility
16%
Temperature Dependence
16%
Thermodynamics
16%
Volume
16%