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Influence of dislocations on the spatial variation of microstructure in martensites

  • Czech Academy of Sciences
  • Los Alamos National Laboratory Theoretical Division

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

The continuum theory of dislocations, as developed predominantly by Kröner and Kosevich, views each dislocation as a source of incompatibility of strains. We show that this concept can be employed efficiently in the Landau free energy functional to develop a mean-field mesoscopic model of materials with dislocations. The order parameters that represent the distortion of the parent phase (often of cubic symmetry) are written in terms of elastic strains which are themselves coupled by incompatibility constraints. Since the "strength" of the incompatibility depends on the local density of dislocations, the presence of dislocations affects the evolution of the microstructure and vice versa. An advantage of this formulation is that long range anisotropic interactions between dislocations appear naturally in the formulation of the free energy. Owing to the distortion of the crystal structure around dislocations, their presence in multiphase materials causes heterogeneous nucleation of the product phase and thus also shifts of the transformation temperature. This novel field-theoretical approach is very convenient as it allows to bridge the gap in studying the behavior of materials at the length and time scales that are not attainable by atomistic or macroscopic models.

源语言英语
主期刊名Materials Structure and Micromechanics of Fracture VI
出版商Trans Tech Publications Ltd
77-80
页数4
ISBN(印刷版)9783037850060
DOI
出版状态已出版 - 2011
已对外发布

出版系列

姓名Key Engineering Materials
465
ISSN(印刷版)1013-9826
ISSN(电子版)1662-9795

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