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Computer simulation of the martensite transformation in a model two-dimensional body

Description: An analytical model of a martensitic transformation in an idealized body is constructed and used to carry out a computer simulation of the transformation in a pseudo-two-dimensional crystal. The reaction is assumed to proceed through the sequential transformation of elementary volumes (elementary martensitic particles, EMP) via the Bain strain. The elastic interaction between these volumes is computed and the transformation path chosen so as to minimize the total free energy. The model transfor… more
Date: May 1, 1979
Creator: Chen, S.; Khachaturyan, A.G. & Morris, J.W. Jr.
Partner: UNT Libraries Government Documents Department
open access

Computer simulation of the martensite transformation in a model two-dimensional body

Description: An analytical model of a martensitic transformation in an idealized body is constructed and used to carry out a computer simulation of the transformation in a pseudo-two-dimensional crystal. The reaction is assumed to proceed through the sequential transformation of elementary volumes (elementary martensitic particles, EMP) via the Bain strain. The elastic interaction between these volumes is computed and the transformation path chosen so as to minimize the total free energy. The model transfor… more
Date: June 1, 1979
Creator: Chen, S.; Khachaturyan, A.G. & Morris, J.W. Jr.
Partner: UNT Libraries Government Documents Department
open access

Computer simulation of the formation of tweed and modulated structures in decomposition reactions

Description: A model of coarsening in a heterogeneous cubic alloy with cubic or tetragonal precipitates is proposed. According to the model the coarsening is controlled by the relaxation of the elastic strain energy. The computer simulation of coarsening demonstrates good agreement with electron microscopic observation of the structure and diffraction pattern.
Date: March 1, 1979
Creator: Chen, S.; Morris, J.W. Jr. & Khachaturyan, A.G.
Partner: UNT Libraries Government Documents Department
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