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Inhomogeneity of the Backward Extruded NdFeB Ring Magnet Prepared from Amorphous Powders

Back extrusion is an important process to prepare radially oriented NdFeB ring magnets. In this work, we fabricate the ring magnets using amorphous magnetic powders as the raw material. The microstructure, magnetic properties, corrosion resistance, and mechanical properties of the backward extruded...

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Autores principales: Huang, Weida, Xu, Ke, Liao, Xuefeng, Zhou, Bang, Yu, Hongya, Zhong, Xichun, Liu, Zhongwu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10385155/
https://www.ncbi.nlm.nih.gov/pubmed/37512390
http://dx.doi.org/10.3390/ma16145117
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author Huang, Weida
Xu, Ke
Liao, Xuefeng
Zhou, Bang
Yu, Hongya
Zhong, Xichun
Liu, Zhongwu
author_facet Huang, Weida
Xu, Ke
Liao, Xuefeng
Zhou, Bang
Yu, Hongya
Zhong, Xichun
Liu, Zhongwu
author_sort Huang, Weida
collection PubMed
description Back extrusion is an important process to prepare radially oriented NdFeB ring magnets. In this work, we fabricate the ring magnets using amorphous magnetic powders as the raw material. The microstructure, magnetic properties, corrosion resistance, and mechanical properties of the backward extruded magnet at different positions along the axial direction have been investigated, and the inhomogeneity of the magnet is clarified. The results showed that the grains in the middle region of the ring magnet exhibit a strong c-axis orientation, whereas the grains at the bottom and top regions are disordered with random orientation. The microstructure variation is related to the distribution of the grain boundary phase and the degree of grain deformation. Due to the microstructure difference, the magnetic properties, temperature stability, corrosion resistance, and mechanical properties in the middle region of the magnet are higher than those in the top and bottom regions. The exchange coupling between grains also varies in different regions, which is related to the grain size and grain boundary thickness. In addition, different Co element segregations were observed in different regions, which has a crucial effect on the Curie temperature and thermal stability of the magnet. The microstructure difference also leads to the variation of corrosion resistance and mechanical properties for the samples from different regions of the magnet. This work suggests that the amorphous powder can be used to directly prepare radially oriented ring magnets, and the inhomogeneity of the magnet should be fully understood.
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spelling pubmed-103851552023-07-30 Inhomogeneity of the Backward Extruded NdFeB Ring Magnet Prepared from Amorphous Powders Huang, Weida Xu, Ke Liao, Xuefeng Zhou, Bang Yu, Hongya Zhong, Xichun Liu, Zhongwu Materials (Basel) Article Back extrusion is an important process to prepare radially oriented NdFeB ring magnets. In this work, we fabricate the ring magnets using amorphous magnetic powders as the raw material. The microstructure, magnetic properties, corrosion resistance, and mechanical properties of the backward extruded magnet at different positions along the axial direction have been investigated, and the inhomogeneity of the magnet is clarified. The results showed that the grains in the middle region of the ring magnet exhibit a strong c-axis orientation, whereas the grains at the bottom and top regions are disordered with random orientation. The microstructure variation is related to the distribution of the grain boundary phase and the degree of grain deformation. Due to the microstructure difference, the magnetic properties, temperature stability, corrosion resistance, and mechanical properties in the middle region of the magnet are higher than those in the top and bottom regions. The exchange coupling between grains also varies in different regions, which is related to the grain size and grain boundary thickness. In addition, different Co element segregations were observed in different regions, which has a crucial effect on the Curie temperature and thermal stability of the magnet. The microstructure difference also leads to the variation of corrosion resistance and mechanical properties for the samples from different regions of the magnet. This work suggests that the amorphous powder can be used to directly prepare radially oriented ring magnets, and the inhomogeneity of the magnet should be fully understood. MDPI 2023-07-20 /pmc/articles/PMC10385155/ /pubmed/37512390 http://dx.doi.org/10.3390/ma16145117 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
Huang, Weida
Xu, Ke
Liao, Xuefeng
Zhou, Bang
Yu, Hongya
Zhong, Xichun
Liu, Zhongwu
Inhomogeneity of the Backward Extruded NdFeB Ring Magnet Prepared from Amorphous Powders
title Inhomogeneity of the Backward Extruded NdFeB Ring Magnet Prepared from Amorphous Powders
title_full Inhomogeneity of the Backward Extruded NdFeB Ring Magnet Prepared from Amorphous Powders
title_fullStr Inhomogeneity of the Backward Extruded NdFeB Ring Magnet Prepared from Amorphous Powders
title_full_unstemmed Inhomogeneity of the Backward Extruded NdFeB Ring Magnet Prepared from Amorphous Powders
title_short Inhomogeneity of the Backward Extruded NdFeB Ring Magnet Prepared from Amorphous Powders
title_sort inhomogeneity of the backward extruded ndfeb ring magnet prepared from amorphous powders
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10385155/
https://www.ncbi.nlm.nih.gov/pubmed/37512390
http://dx.doi.org/10.3390/ma16145117
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