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Preparation and Electromagnetic Absorption Properties of Fe(73.2)Si(16.2)B(6.6)Nb(3)Cu(1) Nanocrystalline Powder

In order to decrease and control electromagnetic pollution, absorbing materials with better electromagnetic wave absorption properties should be developed. In this paper, a nanocrystalline alloy ribbon with the composition of Fe(73.2)Si(16.2)B(6.6)Nb(3)Cu(1) was designed and prepared. Nanocrystallin...

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Detalles Bibliográficos
Autores principales: Zhou, Bingwen, Lv, Mengnan, Wu, Jiali, Ya, Bin, Meng, Linggang, Jianglin, Lanqing, Zhang, Xingguo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8999653/
https://www.ncbi.nlm.nih.gov/pubmed/35407892
http://dx.doi.org/10.3390/ma15072558
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author Zhou, Bingwen
Lv, Mengnan
Wu, Jiali
Ya, Bin
Meng, Linggang
Jianglin, Lanqing
Zhang, Xingguo
author_facet Zhou, Bingwen
Lv, Mengnan
Wu, Jiali
Ya, Bin
Meng, Linggang
Jianglin, Lanqing
Zhang, Xingguo
author_sort Zhou, Bingwen
collection PubMed
description In order to decrease and control electromagnetic pollution, absorbing materials with better electromagnetic wave absorption properties should be developed. In this paper, a nanocrystalline alloy ribbon with the composition of Fe(73.2)Si(16.2)B(6.6)Nb(3)Cu(1) was designed and prepared. Nanocrystalline alloy powder was obtained by high-energy ball milling treatment. The effects of ball milling time on the soft magnetic properties, microstructure, morphology, and electromagnetic wave absorption properties of alloy powder were investigated. The results showed that, as time increased, α-(Fe, Si) gradually transformed into the amorphous phase, and the maximum saturation magnetization (M(s)) reached 135.25 emu/g. The nanocrystalline alloy powder was flakelike, and the minimum average particle size of the powder reached 6.87 μm. The alloy powder obtained by ball milling for 12 h had the best electromagnetic absorption performance, and the minimum reflection loss RL(min) at the frequency of 6.52 GHz reached −46.15 dB (matched thickness was 3.5 mm). As time increased, the best matched frequency moved to the high-frequency direction, and the best matched thickness decreased, while the maximum effective absorption bandwidth Δf(RL)(<−10 dB) was 7.22 GHz (10.78–18 GHz).
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spelling pubmed-89996532022-04-12 Preparation and Electromagnetic Absorption Properties of Fe(73.2)Si(16.2)B(6.6)Nb(3)Cu(1) Nanocrystalline Powder Zhou, Bingwen Lv, Mengnan Wu, Jiali Ya, Bin Meng, Linggang Jianglin, Lanqing Zhang, Xingguo Materials (Basel) Article In order to decrease and control electromagnetic pollution, absorbing materials with better electromagnetic wave absorption properties should be developed. In this paper, a nanocrystalline alloy ribbon with the composition of Fe(73.2)Si(16.2)B(6.6)Nb(3)Cu(1) was designed and prepared. Nanocrystalline alloy powder was obtained by high-energy ball milling treatment. The effects of ball milling time on the soft magnetic properties, microstructure, morphology, and electromagnetic wave absorption properties of alloy powder were investigated. The results showed that, as time increased, α-(Fe, Si) gradually transformed into the amorphous phase, and the maximum saturation magnetization (M(s)) reached 135.25 emu/g. The nanocrystalline alloy powder was flakelike, and the minimum average particle size of the powder reached 6.87 μm. The alloy powder obtained by ball milling for 12 h had the best electromagnetic absorption performance, and the minimum reflection loss RL(min) at the frequency of 6.52 GHz reached −46.15 dB (matched thickness was 3.5 mm). As time increased, the best matched frequency moved to the high-frequency direction, and the best matched thickness decreased, while the maximum effective absorption bandwidth Δf(RL)(<−10 dB) was 7.22 GHz (10.78–18 GHz). MDPI 2022-03-31 /pmc/articles/PMC8999653/ /pubmed/35407892 http://dx.doi.org/10.3390/ma15072558 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
Zhou, Bingwen
Lv, Mengnan
Wu, Jiali
Ya, Bin
Meng, Linggang
Jianglin, Lanqing
Zhang, Xingguo
Preparation and Electromagnetic Absorption Properties of Fe(73.2)Si(16.2)B(6.6)Nb(3)Cu(1) Nanocrystalline Powder
title Preparation and Electromagnetic Absorption Properties of Fe(73.2)Si(16.2)B(6.6)Nb(3)Cu(1) Nanocrystalline Powder
title_full Preparation and Electromagnetic Absorption Properties of Fe(73.2)Si(16.2)B(6.6)Nb(3)Cu(1) Nanocrystalline Powder
title_fullStr Preparation and Electromagnetic Absorption Properties of Fe(73.2)Si(16.2)B(6.6)Nb(3)Cu(1) Nanocrystalline Powder
title_full_unstemmed Preparation and Electromagnetic Absorption Properties of Fe(73.2)Si(16.2)B(6.6)Nb(3)Cu(1) Nanocrystalline Powder
title_short Preparation and Electromagnetic Absorption Properties of Fe(73.2)Si(16.2)B(6.6)Nb(3)Cu(1) Nanocrystalline Powder
title_sort preparation and electromagnetic absorption properties of fe(73.2)si(16.2)b(6.6)nb(3)cu(1) nanocrystalline powder
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8999653/
https://www.ncbi.nlm.nih.gov/pubmed/35407892
http://dx.doi.org/10.3390/ma15072558
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