Production and Characterization of Nanostructured Powders of Nd2Fe14B and Fe90Al10 by Mechanical Alloying

被引:1
|
作者
Gomez Rodriguez, Alvaro Javier [1 ]
Oyola Lozano, Dagoberto [1 ]
Bustos Rodriguez, Humberto [1 ]
Rojas Martinez, Yebrail [1 ]
Perez Alcazar, German Antonio [2 ,3 ]
Zamora Alfonso, Ligia Edith [2 ,3 ]
Trujillo Hernandez, Juan Sebastian [2 ,3 ]
机构
[1] Univ Tolima, Dept Fis, Ibague 730006299, Colombia
[2] Univ Valle, Dept Fis, Grp Met Fis & Teoria Transic Fase, Cali 25360, Colombia
[3] Univ Valle, Ctr Excelencia Nuevos Mat CENM, Cali 25360, Colombia
来源
MOLECULES | 2022年 / 27卷 / 21期
关键词
magnetic materials; Mossbauer spectrometry; mechanical alloying; nanoparticle; MAGNETIC-PROPERTIES; NANOCOMPOSITE; PHASES; MICROSTRUCTURE; MOSSBAUER;
D O I
10.3390/molecules27217190
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The objective of this work is to evaluate the applicability of exchange coupling between nanoparticles of Nd2Fe14B (hard magnetic material) and Fe90Al10 (soft magnetic material), as permanent magnets produced by surfactant-assisted mechanical alloying. The obtained powders were then mixed with 85% of the Nd2Fe14B system and 15% of the Fe90Al10 system and subsequently sintered at 300 degrees C, 400 degrees C and 500 degrees C for one hour. The results obtained by Mossbauer spectrometry (MS) show a ferromagnetic behavior with six magnetic sites represented by sextets (16k1, 16k2, 8j1, 8j2, 4c and 4e), characteristic of the Nd2Fe14B system. X-ray diffraction (XRD) results show a tetragonal and BCC structure for the Nd2Fe14B and FeAl systems, respectively. The results obtained by vibrating sample magnetometry (VSM), for mixtures of the Nd2Fe14B and Fe90Al10 sy stems sintered at 300 degrees C, 400 degrees C and 500 degrees C, allow for the conclusion that the coercive field (Hc) decreases drastically with temperature and the percentage of soft phase at values of Hc = 132 Oe compared to the coercive field values reported for Nd2Fe14B Hc = 6883 Oe, respectively. Images obtained by transmission electron microscopy (TEM), for the Fe90Al10 system, show a tendency for the nanoparticles to agglomerate.
引用
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页数:12
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