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Comparative Investigation of the Influence of Ultrafine-Grained State on Deformation and Temperature Behavior and Microstructure Formed during Quasi-Static Tension of Pure Titanium and Ti-45Nb Alloy by Means of Infrared Thermography

A comprehensive study was performed of the deformation and temperature behavior during quasi-static tension, as well as the peculiarities of accumulation and dissipation of energy during plastic deformation. Microstructural analysis at the pre-fracture stage of pure titanium and Ti-45Nb alloy in the...

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Autores principales: Legostaeva, Elena, Eroshenko, Anna, Vavilov, Vladimir, Skripnyak, Vladimir A., Chulkov, Arsenii, Kozulin, Alexander, Skripnyak, Vladimir V., Glukhov, Ivan, Sharkeev, Yurii
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9740083/
https://www.ncbi.nlm.nih.gov/pubmed/36499978
http://dx.doi.org/10.3390/ma15238480
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author Legostaeva, Elena
Eroshenko, Anna
Vavilov, Vladimir
Skripnyak, Vladimir A.
Chulkov, Arsenii
Kozulin, Alexander
Skripnyak, Vladimir V.
Glukhov, Ivan
Sharkeev, Yurii
author_facet Legostaeva, Elena
Eroshenko, Anna
Vavilov, Vladimir
Skripnyak, Vladimir A.
Chulkov, Arsenii
Kozulin, Alexander
Skripnyak, Vladimir V.
Glukhov, Ivan
Sharkeev, Yurii
author_sort Legostaeva, Elena
collection PubMed
description A comprehensive study was performed of the deformation and temperature behavior during quasi-static tension, as well as the peculiarities of accumulation and dissipation of energy during plastic deformation. Microstructural analysis at the pre-fracture stage of pure titanium and Ti-45Nb alloy in the coarse grain (CG) and ultrafine-grained (UFG) states was also conducted. It was shown that substructural and dispersion hardening leads to a change in the regularities of dissipation and accumulation energies during deformation of the samples of the pure titanium and Ti-45Nb alloy in the UFG state. Some features of structural transformations during deformation of the pure titanium and Ti-45Nb alloy samples in the CG and UFG states were studied. A band and cellular-network and fragmented dislocation structure was formed in the case of the CG state, while large anisotropic fragments were formed in the UFG state, thus specifying a local softening of the material before fracture.
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spelling pubmed-97400832022-12-11 Comparative Investigation of the Influence of Ultrafine-Grained State on Deformation and Temperature Behavior and Microstructure Formed during Quasi-Static Tension of Pure Titanium and Ti-45Nb Alloy by Means of Infrared Thermography Legostaeva, Elena Eroshenko, Anna Vavilov, Vladimir Skripnyak, Vladimir A. Chulkov, Arsenii Kozulin, Alexander Skripnyak, Vladimir V. Glukhov, Ivan Sharkeev, Yurii Materials (Basel) Article A comprehensive study was performed of the deformation and temperature behavior during quasi-static tension, as well as the peculiarities of accumulation and dissipation of energy during plastic deformation. Microstructural analysis at the pre-fracture stage of pure titanium and Ti-45Nb alloy in the coarse grain (CG) and ultrafine-grained (UFG) states was also conducted. It was shown that substructural and dispersion hardening leads to a change in the regularities of dissipation and accumulation energies during deformation of the samples of the pure titanium and Ti-45Nb alloy in the UFG state. Some features of structural transformations during deformation of the pure titanium and Ti-45Nb alloy samples in the CG and UFG states were studied. A band and cellular-network and fragmented dislocation structure was formed in the case of the CG state, while large anisotropic fragments were formed in the UFG state, thus specifying a local softening of the material before fracture. MDPI 2022-11-28 /pmc/articles/PMC9740083/ /pubmed/36499978 http://dx.doi.org/10.3390/ma15238480 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Legostaeva, Elena
Eroshenko, Anna
Vavilov, Vladimir
Skripnyak, Vladimir A.
Chulkov, Arsenii
Kozulin, Alexander
Skripnyak, Vladimir V.
Glukhov, Ivan
Sharkeev, Yurii
Comparative Investigation of the Influence of Ultrafine-Grained State on Deformation and Temperature Behavior and Microstructure Formed during Quasi-Static Tension of Pure Titanium and Ti-45Nb Alloy by Means of Infrared Thermography
title Comparative Investigation of the Influence of Ultrafine-Grained State on Deformation and Temperature Behavior and Microstructure Formed during Quasi-Static Tension of Pure Titanium and Ti-45Nb Alloy by Means of Infrared Thermography
title_full Comparative Investigation of the Influence of Ultrafine-Grained State on Deformation and Temperature Behavior and Microstructure Formed during Quasi-Static Tension of Pure Titanium and Ti-45Nb Alloy by Means of Infrared Thermography
title_fullStr Comparative Investigation of the Influence of Ultrafine-Grained State on Deformation and Temperature Behavior and Microstructure Formed during Quasi-Static Tension of Pure Titanium and Ti-45Nb Alloy by Means of Infrared Thermography
title_full_unstemmed Comparative Investigation of the Influence of Ultrafine-Grained State on Deformation and Temperature Behavior and Microstructure Formed during Quasi-Static Tension of Pure Titanium and Ti-45Nb Alloy by Means of Infrared Thermography
title_short Comparative Investigation of the Influence of Ultrafine-Grained State on Deformation and Temperature Behavior and Microstructure Formed during Quasi-Static Tension of Pure Titanium and Ti-45Nb Alloy by Means of Infrared Thermography
title_sort comparative investigation of the influence of ultrafine-grained state on deformation and temperature behavior and microstructure formed during quasi-static tension of pure titanium and ti-45nb alloy by means of infrared thermography
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9740083/
https://www.ncbi.nlm.nih.gov/pubmed/36499978
http://dx.doi.org/10.3390/ma15238480
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