Please use this identifier to cite or link to this item: http://earchive.tpu.ru/handle/11683/72787
Title: Transformations of the Microstructure and Phase Compositions of Titanium Alloys during Ultrasonic Impact Treatment. Part I. Commercially Pure Titanium
Authors: Panin, Alexey Viktorovich
Dmitriev, Andrey Ivanovich
Nikonov, Anton Yurjevich
Kazachenok, Marina Sergeevna
Perevalova, Olga Borisovna
Sklyarova, Elena Aleksandrovna
Keywords: титан; фазовое превращение; электронная структура; микроструктура; молекулярная динамика; titanium; phase transformation; electronic structure; microstructure; molecular dynamics; ultrasonic impact treatment; transmission electron microscopy
Issue Date: 2021
Publisher: MDPI AG
Citation: Transformations of the Microstructure and Phase Compositions of Titanium Alloys during Ultrasonic Impact Treatment. Part I. Commercially Pure Titanium / A. V. Panin, A. I. Dmitriev, A. Yu. Nikonov [et al.] // Metals. — 2021. — Vol. 11, iss. 4. — [562, 12 p.].
Abstract: Experimental and theoretical studies helped to reveal patterns of surface roughening and the microstructure refinement in the surface layer of commercial pure titanium during ultrasonic impact treatment. Applying transmission electron microscopy technique, a gradient microstructure in the surface layer of the ultrasonically treated sample, where the grain size is varied from nano- to micrometers was revealed. It was shown that the surface plastic strains of the titanium sample proceeded according to the plastic ploughing mechanism, which was accompanied by dislocation sliding, twinning, and the transformations of the microstructure and phase composition. The molecular dynamics method was applied to demonstrate the mechanism of the phase transformations associated with the formation of stacking faults, as well as the reversible displacement of atoms from their sites in the hcp lattice, causing a change in coordination numbers. The role of the electronic subsystem in the development of the strain-induced phase transformations during ultrasonic impact treatment was discussed.
URI: http://earchive.tpu.ru/handle/11683/72787
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