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In Situ Intermetallics-Reinforced Composite Prepared Using Multi-Pass Friction Stir Processing of Copper Powder on a Ti6Al4V Alloy

Multi-pass friction stir processing (FSP) was used to obtain a titanium alloy/copper hybrid composite layer by intermixing copper powder with a Ti6Al4V alloy. A macrostructurally inhomogeneous stir zone was obtained with both its top and middle parts composed of fine dynamically recrystallized α- an...

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Autores principales: Zykova, Anna, Vorontsov, Andrey, Chumaevskii, Andrey, Gurianov, Denis, Savchenko, Nickolai, Gusarova, Anastasija, Kolubaev, Evgeny, Tarasov, Sergei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9000171/
https://www.ncbi.nlm.nih.gov/pubmed/35407759
http://dx.doi.org/10.3390/ma15072428
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author Zykova, Anna
Vorontsov, Andrey
Chumaevskii, Andrey
Gurianov, Denis
Savchenko, Nickolai
Gusarova, Anastasija
Kolubaev, Evgeny
Tarasov, Sergei
author_facet Zykova, Anna
Vorontsov, Andrey
Chumaevskii, Andrey
Gurianov, Denis
Savchenko, Nickolai
Gusarova, Anastasija
Kolubaev, Evgeny
Tarasov, Sergei
author_sort Zykova, Anna
collection PubMed
description Multi-pass friction stir processing (FSP) was used to obtain a titanium alloy/copper hybrid composite layer by intermixing copper powder with a Ti6Al4V alloy. A macrostructurally inhomogeneous stir zone was obtained with both its top and middle parts composed of fine dynamically recrystallized α- and β-Ti grains, as well as coarse intermetallic compounds (IMCs) of Ti(2)Cu and TiCu(2), respectively. Some β grains experienced β → α decomposition with the formation of acicular α-Ti microstructures either inside the former β-Ti grains or at their grain boundaries. Both types of β → α decomposition were especially clearly manifested in the vicinity of the Ti(2)Cu grains, i.e., in the copper-lean regions. The middle part of the stir zone additionally contained large dislocation-free β-Ti grains that resulted from static recrystallization. Spinodal decomposition, as well as solid-state amorphization of copper-rich β-Ti grains, were discovered. The FSPed stir zone possessed hardness that was enhanced by 25% as compared to that of the base metal, as well as higher strength, ductility, and wear resistance than those obtained using four-pass FSPed Ti6Al4V.
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spelling pubmed-90001712022-04-12 In Situ Intermetallics-Reinforced Composite Prepared Using Multi-Pass Friction Stir Processing of Copper Powder on a Ti6Al4V Alloy Zykova, Anna Vorontsov, Andrey Chumaevskii, Andrey Gurianov, Denis Savchenko, Nickolai Gusarova, Anastasija Kolubaev, Evgeny Tarasov, Sergei Materials (Basel) Article Multi-pass friction stir processing (FSP) was used to obtain a titanium alloy/copper hybrid composite layer by intermixing copper powder with a Ti6Al4V alloy. A macrostructurally inhomogeneous stir zone was obtained with both its top and middle parts composed of fine dynamically recrystallized α- and β-Ti grains, as well as coarse intermetallic compounds (IMCs) of Ti(2)Cu and TiCu(2), respectively. Some β grains experienced β → α decomposition with the formation of acicular α-Ti microstructures either inside the former β-Ti grains or at their grain boundaries. Both types of β → α decomposition were especially clearly manifested in the vicinity of the Ti(2)Cu grains, i.e., in the copper-lean regions. The middle part of the stir zone additionally contained large dislocation-free β-Ti grains that resulted from static recrystallization. Spinodal decomposition, as well as solid-state amorphization of copper-rich β-Ti grains, were discovered. The FSPed stir zone possessed hardness that was enhanced by 25% as compared to that of the base metal, as well as higher strength, ductility, and wear resistance than those obtained using four-pass FSPed Ti6Al4V. MDPI 2022-03-25 /pmc/articles/PMC9000171/ /pubmed/35407759 http://dx.doi.org/10.3390/ma15072428 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
Zykova, Anna
Vorontsov, Andrey
Chumaevskii, Andrey
Gurianov, Denis
Savchenko, Nickolai
Gusarova, Anastasija
Kolubaev, Evgeny
Tarasov, Sergei
In Situ Intermetallics-Reinforced Composite Prepared Using Multi-Pass Friction Stir Processing of Copper Powder on a Ti6Al4V Alloy
title In Situ Intermetallics-Reinforced Composite Prepared Using Multi-Pass Friction Stir Processing of Copper Powder on a Ti6Al4V Alloy
title_full In Situ Intermetallics-Reinforced Composite Prepared Using Multi-Pass Friction Stir Processing of Copper Powder on a Ti6Al4V Alloy
title_fullStr In Situ Intermetallics-Reinforced Composite Prepared Using Multi-Pass Friction Stir Processing of Copper Powder on a Ti6Al4V Alloy
title_full_unstemmed In Situ Intermetallics-Reinforced Composite Prepared Using Multi-Pass Friction Stir Processing of Copper Powder on a Ti6Al4V Alloy
title_short In Situ Intermetallics-Reinforced Composite Prepared Using Multi-Pass Friction Stir Processing of Copper Powder on a Ti6Al4V Alloy
title_sort in situ intermetallics-reinforced composite prepared using multi-pass friction stir processing of copper powder on a ti6al4v alloy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9000171/
https://www.ncbi.nlm.nih.gov/pubmed/35407759
http://dx.doi.org/10.3390/ma15072428
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