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Structure and magnetic properties of intermetallic rare-earth-transition-metal compounds: a review
L Bessais - Materials, 2021 - mdpi.com
This review discusses the properties of candidate compounds for semi-hard and hard
magnetic applications. Their general formula is R 1− s T 5+ 2 s with R= rare earth, T …
magnetic applications. Their general formula is R 1− s T 5+ 2 s with R= rare earth, T …
Intrinsic magnetic properties of Sm (Fe1-xCox) 11Ti and Zr-substituted Sm1-yZry (Fe0. 8Co0. 2) 11.5 Ti0. 5 compounds with ThMn12 structure toward the development …
Abstract Constituent phases in Sm (Fe 1-x Co x) 11 Ti alloys with 0≤ x≤ 0.3 and Sm 1-y Zr y
(Fe 0.8 Co 0.2) 11.5 Ti 0.5 alloys with 0≤ y≤ 0.3 and the intrinsic magnetic properties of the …
(Fe 0.8 Co 0.2) 11.5 Ti 0.5 alloys with 0≤ y≤ 0.3 and the intrinsic magnetic properties of the …
Recent developments in nanostructured permanent magnet materials and their processing methods
In this chapter, we are presenting the developments in permanent magnetic materials and
their processing techniques. We discuss different alloy systems, rare-earth (RE) Nd-Fe-B …
their processing techniques. We discuss different alloy systems, rare-earth (RE) Nd-Fe-B …
[HTML][HTML] Prospects for the development of SmFe12-based permanent magnets with a ThMn12-type phase
The research interest in SmFe 12-based permanent magnets has recently been revived in
search for new permanent magnet materials that are not dependent on critical rare earth …
search for new permanent magnet materials that are not dependent on critical rare earth …
A new magnet material with ThMn12 structure:(Nd1− xZrx)(Fe1− yCoy) 11+ zTi1− zNα (α= 0.6–1.3)
S Suzuki, T Kuno, K Urushibata, K Kobayashi… - Journal of Magnetism …, 2016 - Elsevier
We previously reported a new compound for permanent magnets,(Nd 0.7 Zr 0.3)(Fe 0.75 Co
0.25) 11.5 Ti 0.5 N 0.56, which has a high saturation polarization (J s) of 1.68 T and a high …
0.25) 11.5 Ti 0.5 N 0.56, which has a high saturation polarization (J s) of 1.68 T and a high …
The effect of Zr substitution on saturation magnetization in (Sm1-xZrx)(Fe0. 8Co0. 2) 12 compound with the ThMn12 structure
Zr is one of the essential elements to stabilize the ThMn 12 structure in rare earth (R)
transition metal (M) hard magnetic compounds, RM 12. In this work, the effects of Zr on the …
transition metal (M) hard magnetic compounds, RM 12. In this work, the effects of Zr on the …
[HTML][HTML] Peculiar behavior of V on the Curie temperature and anisotropy field of SmFe12-xVx compounds
The effect of V on the phase stability and intrinsic magnetic properties of SmFe 12-x V x (0≤
x≤ 1.9) thin films, and bulk SmFe 12-x V x (x= 1.5 and 2) are investigated. It is found that V …
x≤ 1.9) thin films, and bulk SmFe 12-x V x (x= 1.5 and 2) are investigated. It is found that V …
( for Permanent-Magnet Applications: Ab Initio Material Design Integrated with Experimental Characterization
M Matsumoto, T Hawai, K Ono - Physical Review Applied, 2020 - APS
In rare-earth permanent magnets (REPMs), trade-offs between intrinsic magnetic properties
are often encountered. A recent example is Sm Fe 12 where excellent magnetic properties …
are often encountered. A recent example is Sm Fe 12 where excellent magnetic properties …
Mechanochemical synthesis of magnetically hard anisotropic RFe10Si2 powders with R representing combinations of Sm, Ce and Zr
AM Gabay, GC Hadjipanayis - Journal of Magnetism and Magnetic …, 2017 - Elsevier
Alloy synthesis consisting of mechanical activation followed by annealing was explored as a
method of manufacturing medium-grade permanent magnet materials with a reduced …
method of manufacturing medium-grade permanent magnet materials with a reduced …
Intrinsic magnetic properties of (Sm, Gd) Fe12-based compounds with minimized addition of Ti
SmFe 12-based compounds with the ThMn 12 type structure are considered to be potential
candidates for rare-earth-lean permanent magnets; however, their poor phase stability has …
candidates for rare-earth-lean permanent magnets; however, their poor phase stability has …