A series of V 1− x-Fe-Co-Ni-Al 1+ x and V 1− x-Fe-Co-Ni-Cu 1+ x high entropy alloys with varying compositions (0≤ x≤ 0.75) has been investigated for magnetocaloric applications …
Abstract FeCoNi, V 0.85 FeCoNi, FeCoNiCu 1.15 and V 0.85 FeCoNiCu 1.15 alloys have been synthesized by arc melting and analyzed by powder X-ray diffraction, electron …
L Wang, Z Lu, H Guo, Y Wu, Y Zhang… - Available at SSRN …, 2023 - papers.ssrn.com
Magnetocaloric materials with enhanced magnetocaloric effect and high magnetic transition temperature are crucial for magnetic refrigeration, a novel cooling technology featuring high …
BG Fischer Eggert, EK Delczeg-Czirjak, BC Hauback… - 2023 - ife.brage.unit.no
FeCoNi, V0. 85FeCoNi, FeCoNiCu1. 15 and V0. 85FeCoNiCu1. 15 alloys have been synthesized by arc melting and analyzed by powder X-ray diffraction, electron microscopy …
ABSTRACT FeCoNi, V0. 85FeCoNi, FeCoNiCu1. 15 and V0. 85FeCoNiCu1. 15 alloys have been synthesized by arc melting and analyzed by powder X-ray diffraction, electron …