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Dynamic Model of Spatial Scaling of the Initial Excited State upon Reconstructive Martensitic Transformations

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Заглавие Dynamic Model of Spatial Scaling of the Initial Excited State upon Reconstructive Martensitic Transformations
 
Автор Kashchenko, M. P.
Kashchenko, N. M.
Chashchina, V. G.
 
Тематика MARTENSITIC TRANSFORMATIONS
CYLINDRICAL WAVE
DISLOCATION NUCLEATION
DISLOCATION NUCLEATION CENTER
DYNAMICS THEORY
EXCITED-STATES
INITIAL EXCITED STATE
NANO GRAINS
NUCLEATION CENTER
SPATIAL SCALING
TRANSFORMATION OF NANOGRAIN
EXCITED STATES
 
Описание Abstract: In the dynamic theory of martensitic transformations, the possibility of rapid spatial scaling of the excited state, accompanied by an increase in the transverse size of the region of the initial excited state, was postulated. In this work, it is shown that this postulate corresponds to the process of propagation of a cylindrical wave, which makes it possible to translate information on the type of threshold strain from the nanoscale to the micron level. This model allows one to give a qualitative description of not only the completely twinned midrib of lenticular crystals, but also the partially twinned zone framing the midrib. Another fundamental conclusion is made about the martensitic transformation of austenite nanograins as a whole during the propagation of a cylindrical wave. © 2021, Pleiades Publishing, Ltd.
 
Дата 2021-10-06T10:01:50Z
2021-10-06T10:01:50Z
2021
 
Тип Article
Journal article (info:eu-repo/semantics/article)
Published version (info:eu-repo/semantics/publishedVersion)
 
Идентификатор Kashchenko, M. P. Dynamic Model of Spatial Scaling of the Initial Excited State upon Reconstructive Martensitic Transformations / M. P. Kashchenko, N. M. Kashchenko, V. G. Chashchina // Physics of Metals and Metallography. – 2021. – Vol. 122. – Iss. 9. – P. 834-840.
0031-918X
https://elar.usfeu.ru/handle/123456789/11229
 
Язык en
 
Права Open Access
 
Издатель Pleiades journals
 
Источник Physics of Metals and Metallography