Manipulation of magnetocaloric and elastocaloric effects in Ni–Mn–In alloys by lattice volume and magnetic variation: Effect of Co and Fe co-doping
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Polymers and Plastics,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites
Reference61 articles.
1. Composition-dependent crystal structure and martensitic transformation in Heusler Ni–Mn–Sn alloys
2. Structural properties and magnetic interactions in martensitic Ni-Mn-Sb alloys
3. Effect of high-temperature quenching on the magnetostructural transformations and the long-range atomic order of Ni–Mn–Sn and Ni–Mn–Sb metamagnetic shape memory alloys
4. Influence of Ni/Mn concentration ratio on microstructure and martensitic transformation in melt spun Ni–Mn–Sn Heusler alloy ribbons
5. Effect of Si doping on microstructure and martensite transformation in Ni-Mn-Sb ferromagnetic shape memory alloys
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1. Designing gadolinium-transition metals-based perovskite type high entropy oxides with good cryogenic magnetocaloric performances;Journal of Materials Science & Technology;2025-02
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4. Synergistic manipulation of physical properties of Ni-Mn-In-B alloys by atomic occupancy and magnetic states;Materials Today Communications;2024-06
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