Magnetostrictive properties of Tbx(Pr0.5Nd0.5)1−xFe1.93 cubic Laves alloys
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference20 articles.
1. Magnetization and magnetic anisotropy of TbFe<inf>2</inf>, DyFe<inf>2</inf>, Tb<inf>0.27</inf>Dy<inf>0.73</inf>Fe<inf>2</inf>and TmFe<inf>2</inf>
2. Giant magnetostriction materials
3. Magnetostrictive SmFe2/metal composites
4. Direct experimental evidence for anisotropy compensation between Dy3+ and Pr3+ ions
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1. Magnetic and magnetostrictive properties of Cu-doped cobalt ferrite;Journal of Magnetism and Magnetic Materials;2024-09
2. Large magnetostriction of Nd0.2Tb0.3Dy0.5Fe1.93/epoxy composites in a wide temperature range;Journal of Rare Earths;2023-02
3. Enhanced magnetoelastic performance in Pr/Mn-doped Laves phase (Tb,Ho)Fe2 compounds;Materials Science-Poland;2021-04-01
4. Structure and magnetostriction of high Pr/Ce-content (Tb0.2Pr0.8)1–Ce Fe1.93 Laves compounds;Journal of Rare Earths;2021-03
5. The magnetoelastic properties of laves-phase TbxHo0.9-xNd0.1Fe1.8Mn0.1 compounds: An in-situ Lorentz microscope study;Journal of Alloys and Compounds;2020-09
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