Investigation of magnetic properties, phase evolution, and microstructure of melt spun PrFeTiBC nanocomposites
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference14 articles.
1. Formation of R2Fe14C compounds (R=Y, Ce) by rapid solidification
2. Effect of small dysprosium additions on the coercivity of melt-spun Nd-Fe-C alloys
3. Crystallographic and magnetic behaviors of the R‐Fe‐C compounds
4. Structure and magnetic properties of R2Fe17Cx (x∼2.5)
5. Magnetic characteristics of R2Fe14B systems prepared with high purity rare earths (R=Ce, Pr, Dy, and Er)
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1. Rare-Earths-Iron-Boron Compounds;Rare Earths-Transition Metals-Boron Compounds;2023
2. B-Fe-Pr Ternary Phase Diagram Evaluation;MSI Eureka;2015-07-08
3. Effect of a carbon additive on the TbCu7-type melt-spun Sm(Co, M)7 (M=Ti, Zr, Hf, V and Ge) ribbons;Journal of the Korean Physical Society;2013-08
4. Magnetic properties, phase evolution, and microstructure of melt spun Sm(Co0.97Ti0.03) C (x=5–9; y=0–0.1) ribbons;Journal of Physics and Chemistry of Solids;2012-01
5. Magnetic properties of Pr-Fe-Ti-B nanocomposite magnets produced by spark plasma sintering method;Journal of Applied Physics;2011-04
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