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Effects of Nitrogen Content on the Structure and Mechanical Properties of (Al(0.5)CrFeNiTi(0.25))N(x) High-Entropy Films by Reactive Sputtering

In this study, (Al(0.5)CrFeNiTi(0.25))N(x) high-entropy films are prepared by a reactive direct current (DC) magnetron sputtering at different N(2) flow rates on silicon wafers. It is found that the structure of (Al(0.5)CrFeNiTi(0.25))N(x) high-entropy films is amorphous, with x = 0. It transforms f...

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Autores principales: Zhang, Yong, Yan, Xue-Hui, Liao, Wei-Bing, Zhao, Kun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7513145/
https://www.ncbi.nlm.nih.gov/pubmed/33265713
http://dx.doi.org/10.3390/e20090624
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author Zhang, Yong
Yan, Xue-Hui
Liao, Wei-Bing
Zhao, Kun
author_facet Zhang, Yong
Yan, Xue-Hui
Liao, Wei-Bing
Zhao, Kun
author_sort Zhang, Yong
collection PubMed
description In this study, (Al(0.5)CrFeNiTi(0.25))N(x) high-entropy films are prepared by a reactive direct current (DC) magnetron sputtering at different N(2) flow rates on silicon wafers. It is found that the structure of (Al(0.5)CrFeNiTi(0.25))N(x) high-entropy films is amorphous, with x = 0. It transforms from amorphous to a face-centered-cubic (FCC) structure with the increase of nitrogen content, while the bulk Al(0.5)CrFeNiTi(0.25) counterpart prepared by casting features a body-centered-cubic (BCC) phase structure. The phase formation can be explained by the atomic size difference (δ). Lacking nitrogen, δ is approximately 6.4% for the five metal elements, which is relatively large and might form a BCC or ordered-BCC structure, while the metallic elements in this alloy system all have a trend to form nitrides like TiN, CrN, AlN, and FeN. Therefore, nitride components are becoming very similar in size and structure and solve each other easily, thus, an FCC (Al-Cr-Fe-Ni-Ti)N solid solution forms. The calculated value of δ is approximately 23% for this multicomponent nitride solid solution. The (Al(0.5)CrFeNiTi(0.25))N(x) films achieve a pronounced hardness and a Young’s modulus of 21.45 GPa and 253.8 GPa, respectively, which is obviously much higher than that of the as-cast Al(0.5)CrFeNiTi(0.25) bulk alloys.
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spelling pubmed-75131452020-11-09 Effects of Nitrogen Content on the Structure and Mechanical Properties of (Al(0.5)CrFeNiTi(0.25))N(x) High-Entropy Films by Reactive Sputtering Zhang, Yong Yan, Xue-Hui Liao, Wei-Bing Zhao, Kun Entropy (Basel) Article In this study, (Al(0.5)CrFeNiTi(0.25))N(x) high-entropy films are prepared by a reactive direct current (DC) magnetron sputtering at different N(2) flow rates on silicon wafers. It is found that the structure of (Al(0.5)CrFeNiTi(0.25))N(x) high-entropy films is amorphous, with x = 0. It transforms from amorphous to a face-centered-cubic (FCC) structure with the increase of nitrogen content, while the bulk Al(0.5)CrFeNiTi(0.25) counterpart prepared by casting features a body-centered-cubic (BCC) phase structure. The phase formation can be explained by the atomic size difference (δ). Lacking nitrogen, δ is approximately 6.4% for the five metal elements, which is relatively large and might form a BCC or ordered-BCC structure, while the metallic elements in this alloy system all have a trend to form nitrides like TiN, CrN, AlN, and FeN. Therefore, nitride components are becoming very similar in size and structure and solve each other easily, thus, an FCC (Al-Cr-Fe-Ni-Ti)N solid solution forms. The calculated value of δ is approximately 23% for this multicomponent nitride solid solution. The (Al(0.5)CrFeNiTi(0.25))N(x) films achieve a pronounced hardness and a Young’s modulus of 21.45 GPa and 253.8 GPa, respectively, which is obviously much higher than that of the as-cast Al(0.5)CrFeNiTi(0.25) bulk alloys. MDPI 2018-08-21 /pmc/articles/PMC7513145/ /pubmed/33265713 http://dx.doi.org/10.3390/e20090624 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Yong
Yan, Xue-Hui
Liao, Wei-Bing
Zhao, Kun
Effects of Nitrogen Content on the Structure and Mechanical Properties of (Al(0.5)CrFeNiTi(0.25))N(x) High-Entropy Films by Reactive Sputtering
title Effects of Nitrogen Content on the Structure and Mechanical Properties of (Al(0.5)CrFeNiTi(0.25))N(x) High-Entropy Films by Reactive Sputtering
title_full Effects of Nitrogen Content on the Structure and Mechanical Properties of (Al(0.5)CrFeNiTi(0.25))N(x) High-Entropy Films by Reactive Sputtering
title_fullStr Effects of Nitrogen Content on the Structure and Mechanical Properties of (Al(0.5)CrFeNiTi(0.25))N(x) High-Entropy Films by Reactive Sputtering
title_full_unstemmed Effects of Nitrogen Content on the Structure and Mechanical Properties of (Al(0.5)CrFeNiTi(0.25))N(x) High-Entropy Films by Reactive Sputtering
title_short Effects of Nitrogen Content on the Structure and Mechanical Properties of (Al(0.5)CrFeNiTi(0.25))N(x) High-Entropy Films by Reactive Sputtering
title_sort effects of nitrogen content on the structure and mechanical properties of (al(0.5)crfeniti(0.25))n(x) high-entropy films by reactive sputtering
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7513145/
https://www.ncbi.nlm.nih.gov/pubmed/33265713
http://dx.doi.org/10.3390/e20090624
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