首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Influence mechanism of Fe content on the magnetic properties of Sm2Co17-type sintered magnets: Microstructure and Microchemistry
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Influence mechanism of Fe content on the magnetic properties of Sm2Co17-type sintered magnets: Microstructure and Microchemistry

机译:Fe含量对SM2CO17型烧结磁体磁性的影响:微观结构和微化学

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摘要

The effects of the Fe content on the magnetic properties and the microstructures of the Sm(Co0.925-xFexCu0.05Zr0.025)(7.74) (x = 0.21-0.31) sintered magnets were investigated. The influence mechanism of the Fe content on the remanence (B-r) and intrinsic coercivity (H-cj) of the magnets were studied depending on the comprehensive analysis of the cellular/lamellar structures and the element distribution of the cell and cell wall phases. The incomplete cellular structure, lower Cu content and higher Fe content of the cell wall phases were considered as the main reasons for the low H-cj of the magnet with x = 0.31. The slope of linear increase of the B-r of the magnet with x range from 0.27 to 0.31 is lower than that of the magnet with x range from 0.21 to 0.27 indicating a lower B-r enhancement efficiency which is mainly caused by the high Fe content of the cell wall phase of the magnet with x > 0.27. A high maximum energy product ((BH)(max)) of 32.36 MGOe with a H-cj of 34.62 kOe was obtained for the Sm(Co0.655Fe0.27Cu0.05Zr0.025) 7.74 magnet. (C) 2019 Elsevier B.V. All rights reserved.
机译:研究了Fe含量对SM的磁性和微观结构的影响(COO.925-XFEXCU0.05ZR0.025)(7.74)(X = 0.21-0.31)烧结磁体。研究了Fe含量对磁体的剩磁(B-R)和固有矫顽力(H-CJ)的影响机理,这取决于细胞/层状结构的综合分析和细胞和细胞壁相的元素分布。细胞壁相的不完全细胞结构,低Cu含量和更高的Fe含量被认为是磁体的低H-CJ的主要原因,具有X = 0.31。 X范围为0.27至0.31的磁体的线性斜率低于0.21至0.27的磁体的斜率低于0.21至0.27的磁体,表示较低的BR增强效率,主要由细胞的高Fe含量引起磁铁的壁相,x> 0.27。为32.36MgO的高最大能量产品((BH)(最大值))为SM(COO.655FE0.27CU0.05ZR0.025)7.74磁铁获得了34.62ko的H-CJ。 (c)2019 Elsevier B.v.保留所有权利。

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