Cargando…

Mechanical and Structural Characterization of Laser-Cladded Medium-Entropy FeNiCr-B(4)C Coatings

Equiatomic medium-entropy alloy (MEA) FeNiCr-B(4)C (0, 1, and 3 wt.% B(4)C) coatings were deposited onto an AISI 1040 steel substrate using pulsed laser cladding. Based on an SEM microstructural analysis, it was found that the cross-sections of all the obtained specimens were characterized by an ave...

Descripción completa

Detalles Bibliográficos
Autores principales: Okulov, Artem, Korobov, Yury, Stepchenkov, Alexander, Makarov, Aleksey, Iusupova, Olga, Korkh, Yulia, Kuznetsova, Tatyana, Kharanzhevskiy, Evgeny, Liu, Kun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10419838/
https://www.ncbi.nlm.nih.gov/pubmed/37570183
http://dx.doi.org/10.3390/ma16155479
_version_ 1785088624573808640
author Okulov, Artem
Korobov, Yury
Stepchenkov, Alexander
Makarov, Aleksey
Iusupova, Olga
Korkh, Yulia
Kuznetsova, Tatyana
Kharanzhevskiy, Evgeny
Liu, Kun
author_facet Okulov, Artem
Korobov, Yury
Stepchenkov, Alexander
Makarov, Aleksey
Iusupova, Olga
Korkh, Yulia
Kuznetsova, Tatyana
Kharanzhevskiy, Evgeny
Liu, Kun
author_sort Okulov, Artem
collection PubMed
description Equiatomic medium-entropy alloy (MEA) FeNiCr-B(4)C (0, 1, and 3 wt.% B(4)C) coatings were deposited onto an AISI 1040 steel substrate using pulsed laser cladding. Based on an SEM microstructural analysis, it was found that the cross-sections of all the obtained specimens were characterized by an average coating thickness of 400 ± 20 μm, a sufficiently narrow (100 ± 20 μm) “coating–substrate” transition zone, and the presence of a small number of defects, including cracks and pores. An XRD analysis showed that the formed coatings consisted of a single face-centered cubic (FCC) γ-phase and the space group Fm-3m, regardless of the B(4)C content. However, additional TEM analysis of the FeNiCr coating with 3 wt.% B(4)C revealed a two-phase FCC structure consisting of grains (FCC-1 phase, Fm-3m) up to 1 µm in size and banded interlayers (FCC-2 phase, Fm-3m) between the grains. The grains were clean with a low density of dislocations. Raman spectroscopy confirmed the presence of B(4)C carbides inside the FeNiCr (1 and 3 wt.% B(4)C) coatings, as evidenced by detected peaks corresponding to amorphous carbon and peaks indicating the stretching of C-B-C chains. The mechanical characterization of the FeNiCr-B(4)C coatings specified that additions of 1 and 3 wt.% B(4)C resulted in a notable increase in microhardness of 16% and 38%, respectively, with a slight decrease in ductility of 4% and 10%, respectively, compared to the B(4)C-free FeNiCr coating. Thus, the B(4)C addition can be considered a promising method for strengthening laser-cladded MEA FeNiCr-B(4)C coatings.
format Online
Article
Text
id pubmed-10419838
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-104198382023-08-12 Mechanical and Structural Characterization of Laser-Cladded Medium-Entropy FeNiCr-B(4)C Coatings Okulov, Artem Korobov, Yury Stepchenkov, Alexander Makarov, Aleksey Iusupova, Olga Korkh, Yulia Kuznetsova, Tatyana Kharanzhevskiy, Evgeny Liu, Kun Materials (Basel) Article Equiatomic medium-entropy alloy (MEA) FeNiCr-B(4)C (0, 1, and 3 wt.% B(4)C) coatings were deposited onto an AISI 1040 steel substrate using pulsed laser cladding. Based on an SEM microstructural analysis, it was found that the cross-sections of all the obtained specimens were characterized by an average coating thickness of 400 ± 20 μm, a sufficiently narrow (100 ± 20 μm) “coating–substrate” transition zone, and the presence of a small number of defects, including cracks and pores. An XRD analysis showed that the formed coatings consisted of a single face-centered cubic (FCC) γ-phase and the space group Fm-3m, regardless of the B(4)C content. However, additional TEM analysis of the FeNiCr coating with 3 wt.% B(4)C revealed a two-phase FCC structure consisting of grains (FCC-1 phase, Fm-3m) up to 1 µm in size and banded interlayers (FCC-2 phase, Fm-3m) between the grains. The grains were clean with a low density of dislocations. Raman spectroscopy confirmed the presence of B(4)C carbides inside the FeNiCr (1 and 3 wt.% B(4)C) coatings, as evidenced by detected peaks corresponding to amorphous carbon and peaks indicating the stretching of C-B-C chains. The mechanical characterization of the FeNiCr-B(4)C coatings specified that additions of 1 and 3 wt.% B(4)C resulted in a notable increase in microhardness of 16% and 38%, respectively, with a slight decrease in ductility of 4% and 10%, respectively, compared to the B(4)C-free FeNiCr coating. Thus, the B(4)C addition can be considered a promising method for strengthening laser-cladded MEA FeNiCr-B(4)C coatings. MDPI 2023-08-04 /pmc/articles/PMC10419838/ /pubmed/37570183 http://dx.doi.org/10.3390/ma16155479 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
Okulov, Artem
Korobov, Yury
Stepchenkov, Alexander
Makarov, Aleksey
Iusupova, Olga
Korkh, Yulia
Kuznetsova, Tatyana
Kharanzhevskiy, Evgeny
Liu, Kun
Mechanical and Structural Characterization of Laser-Cladded Medium-Entropy FeNiCr-B(4)C Coatings
title Mechanical and Structural Characterization of Laser-Cladded Medium-Entropy FeNiCr-B(4)C Coatings
title_full Mechanical and Structural Characterization of Laser-Cladded Medium-Entropy FeNiCr-B(4)C Coatings
title_fullStr Mechanical and Structural Characterization of Laser-Cladded Medium-Entropy FeNiCr-B(4)C Coatings
title_full_unstemmed Mechanical and Structural Characterization of Laser-Cladded Medium-Entropy FeNiCr-B(4)C Coatings
title_short Mechanical and Structural Characterization of Laser-Cladded Medium-Entropy FeNiCr-B(4)C Coatings
title_sort mechanical and structural characterization of laser-cladded medium-entropy fenicr-b(4)c coatings
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10419838/
https://www.ncbi.nlm.nih.gov/pubmed/37570183
http://dx.doi.org/10.3390/ma16155479
work_keys_str_mv AT okulovartem mechanicalandstructuralcharacterizationoflasercladdedmediumentropyfenicrb4ccoatings
AT korobovyury mechanicalandstructuralcharacterizationoflasercladdedmediumentropyfenicrb4ccoatings
AT stepchenkovalexander mechanicalandstructuralcharacterizationoflasercladdedmediumentropyfenicrb4ccoatings
AT makarovaleksey mechanicalandstructuralcharacterizationoflasercladdedmediumentropyfenicrb4ccoatings
AT iusupovaolga mechanicalandstructuralcharacterizationoflasercladdedmediumentropyfenicrb4ccoatings
AT korkhyulia mechanicalandstructuralcharacterizationoflasercladdedmediumentropyfenicrb4ccoatings
AT kuznetsovatatyana mechanicalandstructuralcharacterizationoflasercladdedmediumentropyfenicrb4ccoatings
AT kharanzhevskiyevgeny mechanicalandstructuralcharacterizationoflasercladdedmediumentropyfenicrb4ccoatings
AT liukun mechanicalandstructuralcharacterizationoflasercladdedmediumentropyfenicrb4ccoatings