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Magnetocaloric effect of melt-extracted high-entropy Gd19Tb19Er18Fe19Al25 amorphous microwires.

Authors :
Luo, Lin
Shen, Hongxian
Bao, Ying
Yin, Hangboce
Jiang, Sida
Huang, Yongjiang
Guo, Shu
Gao, Shenyuan
Xing, Dawei
Li, Ze
Sun, Jianfei
Source :
Journal of Magnetism & Magnetic Materials. Aug2020, Vol. 507, pN.PAG-N.PAG. 1p.
Publication Year :
2020

Abstract

• High entropy Gd 19 Tb 19 Er 18 Fe 19 Al 25 microwires were fabricated by melt-extraction. • Gd 19 Tb 19 Er 18 Fe 19 Al 25 microwires show amorphous structure and SOMT. • Gd 19 Tb 19 Er 18 Fe 19 Al 25 microwires show broaden working temperature range. In this paper, the magnetocaloric effect (MCE) of a high-entropy Gd 19 Tb 19 Er 18 Fe 19 Al 25 amorphous microwires fabricated by melt-extracted method are investigated systematically. These microwires exhibit a second-order phase transition from ferromagnetic to paramagnetic states at the Curie temperature of 97 K. The zero-field-cooling (ZFC) and field-cooling (FC) magnetization curves are irreversible when the temperature lower than the Curie temperature due to the spin glassy freezing behavior. The peak magnetic entropy change (Δ S M pk ) for a field change from 0 to 5 T reaches ~5.94 J/kg∙K. In accordance to two criteria refrigerant capacity, the values of refrigerant capacity (RC) and relative cooling power (RCP) reach ~569 J/kg and ~733 J/kg at a field change of 5 T, respectively. These results suggest that the melt-extracted Gd 19 Tb 19 Er 18 Fe 19 Al 25 microwires exhibit good MCE and have great potential to use as one kind of high temperature magnetic refrigeration material. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03048853
Volume :
507
Database :
Academic Search Index
Journal :
Journal of Magnetism & Magnetic Materials
Publication Type :
Academic Journal
Accession number :
142888414
Full Text :
https://doi.org/10.1016/j.jmmm.2020.166856