Theory for diffusional transformation kinetics: multicomponent and multiphase systems
Theory for diffusional transformation kinetics: multicomponent and multiphase systems
Expressions for describing the simultaneous diffusion controlled multicomponent growth and dissolution of several phases are presented. Local equilibrium at the interface is assumed. TTT and CCT diagrams for systems with any number of solutes may be calculated from the theory.
Kinetics, Micromechanical modeling, Phase transformation kinetics, Theory, Thermodynamics
1089-1094
Rivera-Díaz-Del-Castillo, P.E.J.
6e0abc1c-2aee-4a18-badc-bac28e7831e2
Reischig, P.
874feb57-8ddb-4190-a6c1-44f5e32629a6
Xu, W.
ee9701c4-ccf9-41b7-9cb9-d5a2e160b5e2
van der Zwaag, S.
ad11f134-8a43-4635-9feb-7c3d01158f4b
November 2005
Rivera-Díaz-Del-Castillo, P.E.J.
6e0abc1c-2aee-4a18-badc-bac28e7831e2
Reischig, P.
874feb57-8ddb-4190-a6c1-44f5e32629a6
Xu, W.
ee9701c4-ccf9-41b7-9cb9-d5a2e160b5e2
van der Zwaag, S.
ad11f134-8a43-4635-9feb-7c3d01158f4b
Rivera-Díaz-Del-Castillo, P.E.J., Reischig, P., Xu, W. and van der Zwaag, S.
(2005)
Theory for diffusional transformation kinetics: multicomponent and multiphase systems.
Scripta Materialia, 53 (9), .
(doi:10.1016/j.scriptamat.2005.06.038).
Abstract
Expressions for describing the simultaneous diffusion controlled multicomponent growth and dissolution of several phases are presented. Local equilibrium at the interface is assumed. TTT and CCT diagrams for systems with any number of solutes may be calculated from the theory.
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Accepted/In Press date: 16 June 2005
e-pub ahead of print date: 2 August 2005
Published date: November 2005
Keywords:
Kinetics, Micromechanical modeling, Phase transformation kinetics, Theory, Thermodynamics
Identifiers
Local EPrints ID: 492385
URI: http://eprints.soton.ac.uk/id/eprint/492385
ISSN: 1359-6462
PURE UUID: cbcc7fe1-2773-418c-bbff-1c643ebed62d
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Date deposited: 25 Jul 2024 16:50
Last modified: 26 Jul 2024 02:09
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Contributors
Author:
P.E.J. Rivera-Díaz-Del-Castillo
Author:
P. Reischig
Author:
W. Xu
Author:
S. van der Zwaag
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