Cargando…

Evolution of Structure and Properties of Nickel-Enriched NiTi Shape Memory Alloy Subjected to Bi-Axial Deformation

The effect of a promising method of performing a thermomechanical treatment which provides the nanocrystalline structure formation in bulk NiTi shape memory alloy samples and a corresponding improvement to their properties was studied in the present work. The bi-axial severe plastic deformation of T...

Descripción completa

Detalles Bibliográficos
Autores principales: Komarov, Victor, Karelin, Roman, Khmelevskaya, Irina, Cherkasov, Vladimir, Yusupov, Vladimir, Korpala, Grzegorz, Kawalla, Rudolf, Prahl, Ulrich, Prokoshkin, Sergey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9862455/
https://www.ncbi.nlm.nih.gov/pubmed/36676248
http://dx.doi.org/10.3390/ma16020511
_version_ 1784875096747278336
author Komarov, Victor
Karelin, Roman
Khmelevskaya, Irina
Cherkasov, Vladimir
Yusupov, Vladimir
Korpala, Grzegorz
Kawalla, Rudolf
Prahl, Ulrich
Prokoshkin, Sergey
author_facet Komarov, Victor
Karelin, Roman
Khmelevskaya, Irina
Cherkasov, Vladimir
Yusupov, Vladimir
Korpala, Grzegorz
Kawalla, Rudolf
Prahl, Ulrich
Prokoshkin, Sergey
author_sort Komarov, Victor
collection PubMed
description The effect of a promising method of performing a thermomechanical treatment which provides the nanocrystalline structure formation in bulk NiTi shape memory alloy samples and a corresponding improvement to their properties was studied in the present work. The bi-axial severe plastic deformation of Ti-50.7at.%Ni alloy was carried out on the MaxStrain module of the Gleeble system at 350 and 330 °C with accumulated true strains of e = 6.6–9.5. The obtained structure and its mechanical and functional properties and martensitic transformations were studied using DSC, X-ray diffractometry, and TEM. A nanocrystalline structure with a grain/subgrain size of below 80 nm was formed in bulk nickel-enriched NiTi alloy after the MaxStrain deformation at 330 °C with e = 9.5. The application of MaxStrain leads to the formation of a nanocrystalline structure that is characterized by the appearance of a nano-sized grains and subgrains with equiaxed and elongated shapes and a high free dislocation density. After the MaxStrain deformation at 330 °C with e = 9.5 was performed, the completely nanocrystalline structure with the grain/subgrain size of below 80 nm was formed in bulk nickel-enriched NiTi alloy for the first time. The resulting structure provides a total recoverable strain of 12%, which exceeds the highest values that have been reported for bulk nickel-enriched NiTi samples.
format Online
Article
Text
id pubmed-9862455
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-98624552023-01-22 Evolution of Structure and Properties of Nickel-Enriched NiTi Shape Memory Alloy Subjected to Bi-Axial Deformation Komarov, Victor Karelin, Roman Khmelevskaya, Irina Cherkasov, Vladimir Yusupov, Vladimir Korpala, Grzegorz Kawalla, Rudolf Prahl, Ulrich Prokoshkin, Sergey Materials (Basel) Article The effect of a promising method of performing a thermomechanical treatment which provides the nanocrystalline structure formation in bulk NiTi shape memory alloy samples and a corresponding improvement to their properties was studied in the present work. The bi-axial severe plastic deformation of Ti-50.7at.%Ni alloy was carried out on the MaxStrain module of the Gleeble system at 350 and 330 °C with accumulated true strains of e = 6.6–9.5. The obtained structure and its mechanical and functional properties and martensitic transformations were studied using DSC, X-ray diffractometry, and TEM. A nanocrystalline structure with a grain/subgrain size of below 80 nm was formed in bulk nickel-enriched NiTi alloy after the MaxStrain deformation at 330 °C with e = 9.5. The application of MaxStrain leads to the formation of a nanocrystalline structure that is characterized by the appearance of a nano-sized grains and subgrains with equiaxed and elongated shapes and a high free dislocation density. After the MaxStrain deformation at 330 °C with e = 9.5 was performed, the completely nanocrystalline structure with the grain/subgrain size of below 80 nm was formed in bulk nickel-enriched NiTi alloy for the first time. The resulting structure provides a total recoverable strain of 12%, which exceeds the highest values that have been reported for bulk nickel-enriched NiTi samples. MDPI 2023-01-05 /pmc/articles/PMC9862455/ /pubmed/36676248 http://dx.doi.org/10.3390/ma16020511 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
Komarov, Victor
Karelin, Roman
Khmelevskaya, Irina
Cherkasov, Vladimir
Yusupov, Vladimir
Korpala, Grzegorz
Kawalla, Rudolf
Prahl, Ulrich
Prokoshkin, Sergey
Evolution of Structure and Properties of Nickel-Enriched NiTi Shape Memory Alloy Subjected to Bi-Axial Deformation
title Evolution of Structure and Properties of Nickel-Enriched NiTi Shape Memory Alloy Subjected to Bi-Axial Deformation
title_full Evolution of Structure and Properties of Nickel-Enriched NiTi Shape Memory Alloy Subjected to Bi-Axial Deformation
title_fullStr Evolution of Structure and Properties of Nickel-Enriched NiTi Shape Memory Alloy Subjected to Bi-Axial Deformation
title_full_unstemmed Evolution of Structure and Properties of Nickel-Enriched NiTi Shape Memory Alloy Subjected to Bi-Axial Deformation
title_short Evolution of Structure and Properties of Nickel-Enriched NiTi Shape Memory Alloy Subjected to Bi-Axial Deformation
title_sort evolution of structure and properties of nickel-enriched niti shape memory alloy subjected to bi-axial deformation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9862455/
https://www.ncbi.nlm.nih.gov/pubmed/36676248
http://dx.doi.org/10.3390/ma16020511
work_keys_str_mv AT komarovvictor evolutionofstructureandpropertiesofnickelenrichednitishapememoryalloysubjectedtobiaxialdeformation
AT karelinroman evolutionofstructureandpropertiesofnickelenrichednitishapememoryalloysubjectedtobiaxialdeformation
AT khmelevskayairina evolutionofstructureandpropertiesofnickelenrichednitishapememoryalloysubjectedtobiaxialdeformation
AT cherkasovvladimir evolutionofstructureandpropertiesofnickelenrichednitishapememoryalloysubjectedtobiaxialdeformation
AT yusupovvladimir evolutionofstructureandpropertiesofnickelenrichednitishapememoryalloysubjectedtobiaxialdeformation
AT korpalagrzegorz evolutionofstructureandpropertiesofnickelenrichednitishapememoryalloysubjectedtobiaxialdeformation
AT kawallarudolf evolutionofstructureandpropertiesofnickelenrichednitishapememoryalloysubjectedtobiaxialdeformation
AT prahlulrich evolutionofstructureandpropertiesofnickelenrichednitishapememoryalloysubjectedtobiaxialdeformation
AT prokoshkinsergey evolutionofstructureandpropertiesofnickelenrichednitishapememoryalloysubjectedtobiaxialdeformation