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Microstructure of the Advanced Titanium Alloy VT8M-1 Subjected to Rotary Swaging

In this study, the microstructural behavior of the advanced Ti-5.7Al-3.8Mo-1.2Zr-1.3Sn-0.15Si (VT8M-1) alloy during rotary swaging (RS) was investigated. VT8M-1 has increased heat resistance and is considered a replacement for the Ti-6Al-4V alloy. It was shown that, during RS, the evolution of the p...

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Autores principales: Dyakonov, Grigory S., Yakovleva, Tatyana V., Mironov, Sergei Y., Stotskiy, Andrey G., Modina, Iulia M., Semenova, Irina P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10650628/
https://www.ncbi.nlm.nih.gov/pubmed/37959448
http://dx.doi.org/10.3390/ma16216851
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author Dyakonov, Grigory S.
Yakovleva, Tatyana V.
Mironov, Sergei Y.
Stotskiy, Andrey G.
Modina, Iulia M.
Semenova, Irina P.
author_facet Dyakonov, Grigory S.
Yakovleva, Tatyana V.
Mironov, Sergei Y.
Stotskiy, Andrey G.
Modina, Iulia M.
Semenova, Irina P.
author_sort Dyakonov, Grigory S.
collection PubMed
description In this study, the microstructural behavior of the advanced Ti-5.7Al-3.8Mo-1.2Zr-1.3Sn-0.15Si (VT8M-1) alloy during rotary swaging (RS) was investigated. VT8M-1 has increased heat resistance and is considered a replacement for the Ti-6Al-4V alloy. It was shown that, during RS, the evolution of the primary a phase is characterized by the formation of predominantly low-angle boundaries according to the mechanism of continuous dynamic recrystallization. The density of low-angle boundaries increases three times: from 0.38 µm(−1) to 1.21 µm(−1) after RS. The process of spheroidization of the lamellar (a + b) component is incomplete. The average size of globular a and b particles was 0.3 μm (TEM). It is shown that the microstructures after RS (ε = 1.56) and equal-channel angular pressing (ECAP) (ε = 1.4) are significantly different. The temperature–velocity regime and the predominance of shear deformations during ECAP contributed to a noticeable refinement of the primary a-phase and a more complete development of globularization of the lamellar (a+b) component. EBSD studies have shown that RS leads to the formation of a structure with a higher density of low- and high-angle boundaries compared to the structure after ECAP. The results are useful for predicting alloy microstructure in the production of long rods that are further used in forging operations.
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spelling pubmed-106506282023-10-25 Microstructure of the Advanced Titanium Alloy VT8M-1 Subjected to Rotary Swaging Dyakonov, Grigory S. Yakovleva, Tatyana V. Mironov, Sergei Y. Stotskiy, Andrey G. Modina, Iulia M. Semenova, Irina P. Materials (Basel) Article In this study, the microstructural behavior of the advanced Ti-5.7Al-3.8Mo-1.2Zr-1.3Sn-0.15Si (VT8M-1) alloy during rotary swaging (RS) was investigated. VT8M-1 has increased heat resistance and is considered a replacement for the Ti-6Al-4V alloy. It was shown that, during RS, the evolution of the primary a phase is characterized by the formation of predominantly low-angle boundaries according to the mechanism of continuous dynamic recrystallization. The density of low-angle boundaries increases three times: from 0.38 µm(−1) to 1.21 µm(−1) after RS. The process of spheroidization of the lamellar (a + b) component is incomplete. The average size of globular a and b particles was 0.3 μm (TEM). It is shown that the microstructures after RS (ε = 1.56) and equal-channel angular pressing (ECAP) (ε = 1.4) are significantly different. The temperature–velocity regime and the predominance of shear deformations during ECAP contributed to a noticeable refinement of the primary a-phase and a more complete development of globularization of the lamellar (a+b) component. EBSD studies have shown that RS leads to the formation of a structure with a higher density of low- and high-angle boundaries compared to the structure after ECAP. The results are useful for predicting alloy microstructure in the production of long rods that are further used in forging operations. MDPI 2023-10-25 /pmc/articles/PMC10650628/ /pubmed/37959448 http://dx.doi.org/10.3390/ma16216851 Text en © 2023 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
Dyakonov, Grigory S.
Yakovleva, Tatyana V.
Mironov, Sergei Y.
Stotskiy, Andrey G.
Modina, Iulia M.
Semenova, Irina P.
Microstructure of the Advanced Titanium Alloy VT8M-1 Subjected to Rotary Swaging
title Microstructure of the Advanced Titanium Alloy VT8M-1 Subjected to Rotary Swaging
title_full Microstructure of the Advanced Titanium Alloy VT8M-1 Subjected to Rotary Swaging
title_fullStr Microstructure of the Advanced Titanium Alloy VT8M-1 Subjected to Rotary Swaging
title_full_unstemmed Microstructure of the Advanced Titanium Alloy VT8M-1 Subjected to Rotary Swaging
title_short Microstructure of the Advanced Titanium Alloy VT8M-1 Subjected to Rotary Swaging
title_sort microstructure of the advanced titanium alloy vt8m-1 subjected to rotary swaging
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10650628/
https://www.ncbi.nlm.nih.gov/pubmed/37959448
http://dx.doi.org/10.3390/ma16216851
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