Back to Search Start Over

Magnetocaloric properties of melt-spun MnFe-rich high-entropy alloy

Authors :
Huang, Shuo
Dong, Zhihua
Mu, Wangzhong
Ström, Valter
Chai, Guocai
Varga, Lajos Karoly
Eriksson, Olle
Vitos, Levente
Huang, Shuo
Dong, Zhihua
Mu, Wangzhong
Ström, Valter
Chai, Guocai
Varga, Lajos Karoly
Eriksson, Olle
Vitos, Levente
Publication Year :
2021

Abstract

High-entropy functional materials are of great interest in materials science and engineering community. In this work, ab initio electronic structure calculations of the phase stability and magnetic transition temperature of AlxCr0.25MnFeCo0.25-yNiy (x = 0-0.5, y = 0-0.25) alloys were performed to screen for compositions showing promising magnetocaloric properties in the vicinity of room temperature. The selected Al0.44Cr0.25MnFeCo0.05Ni0.2 alloy was synthesized via a rapid solidification technique and systematically characterized with respect to its structural and magnetocaloric properties. The results indicate that this alloy possesses a homogeneous microstructure based on an underlying body-centered cubic lattice and has a Curie temperature of & SIM;340 K. The temperature dependence of the adiabatic temperature change was evaluated using both direct and indirect methods. The ab initio-assisted design of 3d-metal-based high-entropy alloys, explored here, is intended to contribute to the development of magnetic refrigerators for room-temperature applications.<br />Funding agencies:Swedish Energy Agency, ST and UPPOrszagos Tudomanyos Kutatasi Alapprogramok (OTKA) 128229

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1293956993
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1063.5.0065067