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Production, Mechanical Properties and Biomedical Characterization of ZrTi-Based Bulk Metallic Glasses in Comparison with 316L Stainless Steel and Ti6Al4V Alloy

Microstructure, mechanical properties, corrosion resistance, and biocompatibility were studied for rapidly cooled 3 mm rods of Zr(40)Ti(15)Cu(10)Ni(10)Be(25), Zr(50)Ti(5)Cu(10)Ni(10)Be(25), and Zr(40)Ti(15)Cu(10)Ni(5)Si(5)Be(25) (at.%) alloys, as well as for the reference 316L stainless steel and Ti...

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Autores principales: Hasiak, Mariusz, Sobieszczańska, Beata, Łaszcz, Amadeusz, Biały, Michał, Chęcmanowski, Jacek, Zatoński, Tomasz, Bożemska, Edyta, Wawrzyńska, Magdalena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8746055/
https://www.ncbi.nlm.nih.gov/pubmed/35009398
http://dx.doi.org/10.3390/ma15010252
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author Hasiak, Mariusz
Sobieszczańska, Beata
Łaszcz, Amadeusz
Biały, Michał
Chęcmanowski, Jacek
Zatoński, Tomasz
Bożemska, Edyta
Wawrzyńska, Magdalena
author_facet Hasiak, Mariusz
Sobieszczańska, Beata
Łaszcz, Amadeusz
Biały, Michał
Chęcmanowski, Jacek
Zatoński, Tomasz
Bożemska, Edyta
Wawrzyńska, Magdalena
author_sort Hasiak, Mariusz
collection PubMed
description Microstructure, mechanical properties, corrosion resistance, and biocompatibility were studied for rapidly cooled 3 mm rods of Zr(40)Ti(15)Cu(10)Ni(10)Be(25), Zr(50)Ti(5)Cu(10)Ni(10)Be(25), and Zr(40)Ti(15)Cu(10)Ni(5)Si(5)Be(25) (at.%) alloys, as well as for the reference 316L stainless steel and Ti-based Ti6Al4V alloy. Microstructure investigations confirm that Zr-based bulk metallic samples exhibit a glassy structure with minor fractions of crystalline phases. The nanoindentation tests carried out for all investigated composite materials allowed us to determine the mechanical parameters of individual phases observed in the samples. The instrumental hardness and elastic to total deformation energy ratio for every single phase observed in the manufactured Zr-based materials are higher than for the reference materials (316L stainless steel and Ti6Al4V alloy). A scratch tester used to determine the wear behavior of manufactured samples and reference materials revealed the effect of microstructure on mechanical parameters such as residual depth, friction force, and coefficient of friction. Electrochemical investigations in simulated body fluid performed up to 120 h show better or comparable corrosion resistance of Zr-based bulk metallic glasses in comparison with 316L stainless steel and Ti6Al4V alloy. The fibroblasts viability studies confirm the good biocompatibility of the produced materials. All obtained results show that fabricated biocompatible Zr-based materials are promising candidates for biomedical implants that require enhanced mechanical properties.
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spelling pubmed-87460552022-01-11 Production, Mechanical Properties and Biomedical Characterization of ZrTi-Based Bulk Metallic Glasses in Comparison with 316L Stainless Steel and Ti6Al4V Alloy Hasiak, Mariusz Sobieszczańska, Beata Łaszcz, Amadeusz Biały, Michał Chęcmanowski, Jacek Zatoński, Tomasz Bożemska, Edyta Wawrzyńska, Magdalena Materials (Basel) Article Microstructure, mechanical properties, corrosion resistance, and biocompatibility were studied for rapidly cooled 3 mm rods of Zr(40)Ti(15)Cu(10)Ni(10)Be(25), Zr(50)Ti(5)Cu(10)Ni(10)Be(25), and Zr(40)Ti(15)Cu(10)Ni(5)Si(5)Be(25) (at.%) alloys, as well as for the reference 316L stainless steel and Ti-based Ti6Al4V alloy. Microstructure investigations confirm that Zr-based bulk metallic samples exhibit a glassy structure with minor fractions of crystalline phases. The nanoindentation tests carried out for all investigated composite materials allowed us to determine the mechanical parameters of individual phases observed in the samples. The instrumental hardness and elastic to total deformation energy ratio for every single phase observed in the manufactured Zr-based materials are higher than for the reference materials (316L stainless steel and Ti6Al4V alloy). A scratch tester used to determine the wear behavior of manufactured samples and reference materials revealed the effect of microstructure on mechanical parameters such as residual depth, friction force, and coefficient of friction. Electrochemical investigations in simulated body fluid performed up to 120 h show better or comparable corrosion resistance of Zr-based bulk metallic glasses in comparison with 316L stainless steel and Ti6Al4V alloy. The fibroblasts viability studies confirm the good biocompatibility of the produced materials. All obtained results show that fabricated biocompatible Zr-based materials are promising candidates for biomedical implants that require enhanced mechanical properties. MDPI 2021-12-29 /pmc/articles/PMC8746055/ /pubmed/35009398 http://dx.doi.org/10.3390/ma15010252 Text en © 2021 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
Hasiak, Mariusz
Sobieszczańska, Beata
Łaszcz, Amadeusz
Biały, Michał
Chęcmanowski, Jacek
Zatoński, Tomasz
Bożemska, Edyta
Wawrzyńska, Magdalena
Production, Mechanical Properties and Biomedical Characterization of ZrTi-Based Bulk Metallic Glasses in Comparison with 316L Stainless Steel and Ti6Al4V Alloy
title Production, Mechanical Properties and Biomedical Characterization of ZrTi-Based Bulk Metallic Glasses in Comparison with 316L Stainless Steel and Ti6Al4V Alloy
title_full Production, Mechanical Properties and Biomedical Characterization of ZrTi-Based Bulk Metallic Glasses in Comparison with 316L Stainless Steel and Ti6Al4V Alloy
title_fullStr Production, Mechanical Properties and Biomedical Characterization of ZrTi-Based Bulk Metallic Glasses in Comparison with 316L Stainless Steel and Ti6Al4V Alloy
title_full_unstemmed Production, Mechanical Properties and Biomedical Characterization of ZrTi-Based Bulk Metallic Glasses in Comparison with 316L Stainless Steel and Ti6Al4V Alloy
title_short Production, Mechanical Properties and Biomedical Characterization of ZrTi-Based Bulk Metallic Glasses in Comparison with 316L Stainless Steel and Ti6Al4V Alloy
title_sort production, mechanical properties and biomedical characterization of zrti-based bulk metallic glasses in comparison with 316l stainless steel and ti6al4v alloy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8746055/
https://www.ncbi.nlm.nih.gov/pubmed/35009398
http://dx.doi.org/10.3390/ma15010252
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