Substituting Al for Fe in Pr(Al x Fe 1– x ) 1.9 alloys: Effects on magnetic and magnetostrictive properties
Author:
Publisher
IOP Publishing
Subject
General Physics and Astronomy
Link
https://iopscience.iop.org/article/10.1088/1674-1056/23/7/077503/pdf
Reference29 articles.
1. Chapter 7 Magnetostrictive rare earth-Fe2 compounds
2. Magnetostriction and anisotropy compensation in TbxDy1−xPr0.3(Fe0.9B0.1)1.93 alloys
3. The compressive stress effect on the magnetostriction and magnetization for Sm-Dy-Fe composites
4. Direct experimental evidence for anisotropy compensation between Dy3+ and Pr3+ ions
5. Microstructure and magnetostriction for (Dy0.65Tb0.25Pr0.1) (Fe1−xAlx)1.8alloys
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1. Crystal Structure of Magnetic Alloys R(Fe$$_{{1-x}}$$Alx)2 (R = Pr, Nd, Tb, Y);Crystallography Reports;2023-06
2. Magnetostriction and spin reorientation in ferromagnetic Laves phase Pr(Ga x Fe1–x )1.9 compounds*;Chinese Physics B;2021-06-01
3. Low temperature magnetic and magnetostrictive properties in $\Pr {({\mathrm{Fe}}_{1-x}{\mathrm{Co}}_{x})}_{1.9}$ cubic Laves alloys;Chinese Physics B;2017-12
4. Dy substitution effect on the temperature dependences of magnetostriction in Pr 1– x Dy x Fe 1.9 alloys;Chinese Physics B;2016-11
5. Effects of R -site compositions on the meta-magnetic behavior of Tb 1 – x Pr x (Fe 0.4 Co 0.6 ) 1.88 C 0.05 ( x = 0, 0.8, and 1);Chinese Physics B;2015-09-29
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