Investigation on the formation of the preferred orientations in a TbDyFe alloy with directional solidification
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference7 articles.
1. C. Jiang, Doctoral dissertation of University of Science and Technology Beijing, China 1996, p. 86.
2. Magnetostriction in twinned [112] crystals of Tb<inf>.27</inf>Dy<inf>.73</inf>Fe<inf>2</inf>
3. The effect of composition and magnetic heat treatment on the magnetostriction of TbxDy1−xFeytwinned single crystals
4. Magnetic domains and microstructural defects in Terfenol‐D
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1. 〈111〉-orientation growth of Tb-Dy-Fe alloys induced by high magnetic fields during directional solidification;Materials Characterization;2024-07
2. Effects of particle morphology and magnetocrystalline anisotropy on < 111 > orientation and magnetostriction of sintered Tb-Dy-Fe/DyCu compacts;Intermetallics;2022-08
3. Regulation of microstructure and physical properties of Tb-Dy-Fe-Cu alloys by doping with transition elements;Materials & Design;2022-06
4. Crystal orientation induced by high magnetic fields during peritectic reaction of alloys;Materials Characterization;2022-01
5. Preferred orientation transition mechanism of faceted-growth materials with FCC structure: Competitive advantage depends on 3D microstructure morphologies;Journal of Alloys and Compounds;2018-04
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