Thermal Stability and Soft Magnetic Properties of Novel Low-Coercivity Fe-B-Ce-La Alloys
- Authors
- Choi, Youngsin; Kwon, Do-Hun; Lee, Min-Woo; Kim, Jong-Ryoul; Kim, Hwi-Jun
- Issue Date
- Sep-2024
- Publisher
- 한국자기학회
- Keywords
- Fe-B-Ce-La alloys; Coercivity, Saturation magnetization; Activation energy; EBSD microstructure
- Citation
- Journal of Magnetics, v.29, no.3, pp 325 - 337
- Pages
- 13
- Indexed
- SCIE
SCOPUS
KCI
- Journal Title
- Journal of Magnetics
- Volume
- 29
- Number
- 3
- Start Page
- 325
- End Page
- 337
- URI
- https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/122139
- DOI
- 10.4283/JMAG.2024.29.3.325
- ISSN
- 1226-1750
2233-6656
- Abstract
- In this study, Febal. B16(CeLa)x amorphous soft magnetic alloy ribbons with x ranging from 0 to 3.5 at.% werefabricated and the effects of Ce and La additions on their magnetic and thermal properties were analyzed. Thefabricated ribbons were subjected to stress relief annealing at 375 degrees C for five minutes, and their microstruc-tures were compared and analyzed using Electron Backscatter Diffraction. The saturation magnetization in theFebal.B16 at.% ribbons decreased due to the atomic size differences among Fe, B, Ce, and La, while the coerciv-ity stabilized at 20.75 A/m when the CeLa content exceeded 2.0 at.%. After stress relief annealing, furtherreductions in coercivity were observed, with the CeLa 3.5 at.% sample exhibiting the lowest coercivity of 12.74A/m. When the CeLa content exceeded 1.5 at.%, the activation energy increased to over 515.41 kJ/mol, result-ing in a stable reduction in coercivity and high thermal stability. In compositions with CeLa content of 2.0 at.%or higher crystallization did not occur, and as a result these alloys maintained low coercivity and high thermalstability and demonstrated excellent properties.
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