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Дата публикацииНазваниеАвторы
2013Dynamic Model of the B2 → B19′ Martensitic Transformations Taking into Account an Intermediate Mesoscopic StateKashchenko, M. P.; Chashchina, V. G.
2013Dynamic Model of the Formation of an Intermediate Mesorcopic State During B2 → B19 Martensitic TransformationKashchenko, M. P.; Chashchina, V. G.
2010Dynamic model of the formation of twinned martensite crystals: II. Pretransition states and relationships between the volumes of the twin componentsKashchenko, M. P.; Chashchina, V. G.; Vikharev, S. V.
2017Dynamic options for forming transformation twinsKashchenko, M. P.; Kashchenko, N. M.; Chashchina, V. G.
2019Dynamic Scenarios of the Formation of Martensite with the {110} Habits in the Ni50Mn50 AlloyKashchenko, M. P.; Kashchenko, N. M.; Chashchina, V. G.; Belosludtseva, E. S.; Pushin, V. G.; Uksusnikov A. N.
2015Dynamic theory of morphological characteristics of crystals of ε and γ phases, including Headley–Brooks orientation relationships upon the α–ε and α–ε–γ martensitic transformationsKashchenko, M. P.; Chashchina, V. G.
2015Dynamic theory of possible morphological characteristics of austenite nanocrystals formed upon the α–ε–γ transformation in Fe–Ni alloys via deformation and shuffling of {110}α planesKashchenko, M. P.; Chashchina, V. G.
2021Dynamic theory of the effect of a strong magnetic field on the martensitic transformation in steels with austenite grain sizes close to a critical valueKashchenko, M. P.; Kashchenko, N. M.; Chashchina, V. G.
2018Effect of Change in the Wavelengths of Short Wave Shifts on the Formation of a Twin Structure Fragment in Thin Lamellar α-Martensite CrystalsKashchenko, M. P.; Kashchenko, N. M.; Chashchina, V. G.
2017Effect of the attenuation of short-wavelength displacements on the formation of transformation twins in α-martensite crystalsKashchenko, M. P.; Chashchina, V. G.
2008Effect of uniaxial deformation on the number of pairs of inversely populated electronic statesKashchenko, M. P.; Skorikova, N. A.; Chashchina, V. G.
2013Elastic fields of (774)γ[4414]γ crystons and the formation of a lath structure of bainitic ferriteKashchenko, M. P.; Chashchina, V. G.
2013Estimation of the effective growth rate of a plate of bainitic ferrite in dynamic theoryKashchenko, M. P.; Chashchina, V. G.
2018The formation of martensite crystals with a degenerate structure of transformation twinsKashchenko, M. P.; Kashchenko, N. M.; Chashchina, V. G.
2013Fundamental achievements of the dynamic theory of reconstructive martensitic transformationsKashchenko, M. P.; Chashchina, V. G.
2010Grain size dependence of the γ→α martensite transformation starting temperatureKashchenko, M. P.; Chashchina, V. G.
2015Inheritance of the Elastic Field of a Dislocation Center for Martensite Nucleation by a Driving Wave ProcessKashchenko, M. P.; Latypov, I. F.; Chashchina, V. G.
2017Inheritance of the Elastic Field of Martensite Nucleation Center by the Control Wave Process Initiating Deformations of Planes {110}c of Cubic CrystalsKashchenko, M. P.; Chashchina, V. G.
2016Inheritance of the Strain Tensor by a Driving Wave Process in the Region of Martensite Nucleation on an Example of Fe–Ni AlloysKashchenko, M. P.; Latypov, I. F.; Chashchina, V. G.
2019Initial Excited State and Divergence of Wave Beams as Factors Responsible for the Realization of the Wave Process that Controls the Growth of Transformation TwinsKashchenko, M. P.; Kashchenko, N. M.; Chashchina, V. G.