Effect of dysprosium and cobalt on the temperature dependence of magnetization and phase composition of a material of the Nd-Dy-Fe-Co-B system

Sintered magnetically hard materials with composition (Nd^sub 1-x^Dy^sub x^)^sub 13-16^(Fe^sub 1-y^Co^sub y^)^sub res^Al^sub 0.5-1^B^sub 7-9^ (x = 0.11-0.71, y = 0.19-0.34) are investigated. The role of cobalt and dysprosium in the variation of magnetic properties of the material (residual induction...

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Veröffentlicht in:Metal science and heat treatment 2007-03, Vol.49 (3-4), p.159-166
Hauptverfasser: Kablov, E N, Petrakov, A F, Piskorskii, V P, Valeev, V A, Nazarova, N V
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container_end_page 166
container_issue 3-4
container_start_page 159
container_title Metal science and heat treatment
container_volume 49
creator Kablov, E N
Petrakov, A F
Piskorskii, V P
Valeev, V A
Nazarova, N V
description Sintered magnetically hard materials with composition (Nd^sub 1-x^Dy^sub x^)^sub 13-16^(Fe^sub 1-y^Co^sub y^)^sub res^Al^sub 0.5-1^B^sub 7-9^ (x = 0.11-0.71, y = 0.19-0.34) are investigated. The role of cobalt and dysprosium in the variation of magnetic properties of the material (residual induction, coercive force) is studied. The phase composition of the material and its effect on magnetic properties are determined. Amethod for computing the induction temperature coefficient of a material on the basis of published data on the physical characteristics (the Curie temperature, the density, the molecular mass) of the main magnetic phase (Nd, Dy)^sub 2^(Fe, Co)^sub 14^B is presented.[PUBLICATION ABSTRACT]
doi_str_mv 10.1007/s11041-007-0029-2
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subjects Cobalt
Curie temperature
Density
Dysprosium
Magnetic induction
Magnetic properties
Magnetism
Neodymium
Phase composition
title Effect of dysprosium and cobalt on the temperature dependence of magnetization and phase composition of a material of the Nd-Dy-Fe-Co-B system
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