Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8000437 | Journal of Alloys and Compounds | 2015 | 5 Pages |
Abstract
Bulk nanocrystalline PrFe1.93Zr0.02 alloys were synthesized by annealing its melt-spinning ribbons under different pressure. It was demonstrated that cubic Laves phase become the main phase only when the annealing pressure is up to 3Â GPa. Both the average grain size and volume fraction of cubic Laves crystallin phase decrease with increasing pressure from 3Â GPa to 8Â GPa. Magnetic measurement results indicated that the saturation magnetization and the absolute value of the effective first anisotropy constant decrease with increasing pressure from 3Â GPa to 8Â Gpa. A large linear magnetostriction of 590Â ppm at 3Â kOe is observed in the PrFe1.93Zr0.02 compound annealed under 6Â GPa, which might make it potential material for magnetostrictive application. Based on our experimental results, a phenomenological approach was also proposed to theoretically demonstrate that the good magnetostrictive property of PrFe1.93Zr0.02 bulk nanocrystalline synthesized under 6Â GPa might be the consequence of the competition of anisotropy and the volume fraction of cubic Laves crystallin phase.
Keywords
Related Topics
Physical Sciences and Engineering
Materials Science
Metals and Alloys
Authors
C.C. Hu, Y.G. Shi, Z.Y. Chen, D.N. Shi, L.Q. Chen, C.X. Kan,