Microstructure and magnetocaloric properties of melt-extracted SmGdDyCoAl high-entropy amorphous microwires
Author:
Funder
NSFC
Publisher
Springer Science and Business Media LLC
Subject
Materials Chemistry,Metals and Alloys,Physical and Theoretical Chemistry,Condensed Matter Physics
Link
https://link.springer.com/content/pdf/10.1007/s12598-023-02501-y.pdf
Reference47 articles.
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2. Tegus O, Bruck E, Buschow KH, de Boer FR. Transition-metal-based magnetic refrigerants for room-temperature applications. Nature. 2002;415(6868):150. https://doi.org/10.1038/415150a.
3. Law JY, Díaz-García Á, Moreno-Ramírez LM, Franco V, Conde A, Giri AK. How concurrent thermomagnetic transitions can affect magnetocaloric effect: the Ni49+xMn36-xIn15 Heusler alloy case. Acta Mater. 2019;166:459. https://doi.org/10.1016/j.actamat.2019.01.007.
4. Yin HBC, Law JY, Huang YJ, Franco V, Shen HX, Jiang SD, Bao Y, Sun JF. Design of Fe-containing GdTbCoAl high-entropy-metallic-glass composite microwires with tunable Curie temperatures and enhanced cooling efficiency. Mater Des. 2021;206:109824. https://doi.org/10.1016/j.matdes.2021.109824.
5. Zhou H, Long Y, Miraglia S, Porcher F, Zhang H. Age stability of La (Fe, Si)13 hydrides with giant magnetocaloric effects. Rare Met. 2022;41(3):992. https://doi.org/10.1007/s12598-021-01849-3.
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