The possibility of inheritance of the elastic field in the zone of appearance of the initial excited state by the wave process controlling growth of the martensite crystal is shown. The case when the wave vectors of the control waves belong to plane {110}c of the original cubic phase is analyzed. Implementability of such inheritance is demonstrated with the use of elastic moduli for single-crystal bcc titanium, which advances the predictive capacity of the dynamic theory. © 2017, Springer Science+Business Media, LLC, part of Springer Nature.The work has been performed with financial support of the Russian Foundation for Basic Research (Project Number 14-08-00734)
The role of dislocations and the dynamical mechanism controlling the structural reconstruction in th...
The role of dislocations and the dynamical mechanism controlling the structural reconstruction in th...
Morphological characteristics of martensite after B2-B19 transformation are considered within the li...
The possibility of inheritance of the elastic field in the region of forming initial excited state b...
The analysis performed in this paper is based on the concepts of a heterogeneous nucleation and rela...
Formation of crystals with habit planes {443}α in titanium with BCC-HCP (α – ε) reorganization is co...
A dynamic theory of the formation of martensite crystals upon the bcc-hcp transformation based on th...
Formation of crystals with {334}α habitus planes often observed in titanium during the BCC-HCP (α-ε)...
Morphological characteristics of martensite after B2-B19 transformation are considered within the li...
A plane strain tensor is introduced for the driving wave process of martensitic crystal growth. A ca...
The paper analyzes the possibility of describing morphological features in the B2→B19 transformation...
The basic features of martensitic transformations are reviewed using the fcc-bcc (bct) transformatio...
Within the framework of the dynamic theory based on the synthesis of concepts of heterogeneous nucle...
The formation of twinned crystals with habits close to {443}α in titanium with BCC–HCP (α − ε) reorg...
In terms of the concepts of heterogeneous nucleation and the related driving wave process, a version...
The role of dislocations and the dynamical mechanism controlling the structural reconstruction in th...
The role of dislocations and the dynamical mechanism controlling the structural reconstruction in th...
Morphological characteristics of martensite after B2-B19 transformation are considered within the li...
The possibility of inheritance of the elastic field in the region of forming initial excited state b...
The analysis performed in this paper is based on the concepts of a heterogeneous nucleation and rela...
Formation of crystals with habit planes {443}α in titanium with BCC-HCP (α – ε) reorganization is co...
A dynamic theory of the formation of martensite crystals upon the bcc-hcp transformation based on th...
Formation of crystals with {334}α habitus planes often observed in titanium during the BCC-HCP (α-ε)...
Morphological characteristics of martensite after B2-B19 transformation are considered within the li...
A plane strain tensor is introduced for the driving wave process of martensitic crystal growth. A ca...
The paper analyzes the possibility of describing morphological features in the B2→B19 transformation...
The basic features of martensitic transformations are reviewed using the fcc-bcc (bct) transformatio...
Within the framework of the dynamic theory based on the synthesis of concepts of heterogeneous nucle...
The formation of twinned crystals with habits close to {443}α in titanium with BCC–HCP (α − ε) reorg...
In terms of the concepts of heterogeneous nucleation and the related driving wave process, a version...
The role of dislocations and the dynamical mechanism controlling the structural reconstruction in th...
The role of dislocations and the dynamical mechanism controlling the structural reconstruction in th...
Morphological characteristics of martensite after B2-B19 transformation are considered within the li...