Morphological Peculiarities of R–Fe–B (R = Nd, Pr) Alloys Formed upon Solidification by Strip-Casting

X-ray diffraction analysis, scanning electron microscopy, and atomic force microscopy are used to study the phase composition, texture, and peculiarities of the morphology of R–Fe–B (R = Nd, Pr, Dy) alloys prepared by strip-casting technology. Along with the traditional structural components of the...

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Veröffentlicht in:Physics of metals and metallography 2020-08, Vol.121 (8), p.772-782
Hauptverfasser: Kolchugina, N. B., Lukin, A. A., Kaminskaya, T. P., Burkhanov, G. S., Skotnicova, K., Kursa, M., Dormidontov, N. A., Prokof’ev, P. A., Zelezhnyi, M. V., Cegan, T., Ginzburg, B. A., Bakulina, A. S.
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container_issue 8
container_start_page 772
container_title Physics of metals and metallography
container_volume 121
creator Kolchugina, N. B.
Lukin, A. A.
Kaminskaya, T. P.
Burkhanov, G. S.
Skotnicova, K.
Kursa, M.
Dormidontov, N. A.
Prokof’ev, P. A.
Zelezhnyi, M. V.
Cegan, T.
Ginzburg, B. A.
Bakulina, A. S.
description X-ray diffraction analysis, scanning electron microscopy, and atomic force microscopy are used to study the phase composition, texture, and peculiarities of the morphology of R–Fe–B (R = Nd, Pr, Dy) alloys prepared by strip-casting technology. Along with the traditional structural components of the alloys, namely, areas characterized by randomly oriented fine grains of the main magnetic phase with the Nd 2 Fe 14 B-type structure (which are formed near the contact surface of flakes) and coarse extended textured grains of the phase (in the volume of flakes), wide areas characterized by uniform distribution of rare-earth metal-rich phase with a period of 2–4 µm were also found. The formation of these areas takes place in the absence of coarse dendritic crystallites and, according to the suggested mechanism, is related to the solidification of the melt under conditions of its motion upon quenching on a cooled cylindrical surface. Data indicating the melt twisting upon solidification, which favors the formation of the structure with the aforementioned distribution of intergranular phase, are reported. The data obtained are discussed from the viewpoint of their practical utility for the improvement of the structure of alloys prepared by strip-casting and powders for manufacturing Nd–Fe–B permanent magnets.
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B. ; Lukin, A. A. ; Kaminskaya, T. P. ; Burkhanov, G. S. ; Skotnicova, K. ; Kursa, M. ; Dormidontov, N. A. ; Prokof’ev, P. A. ; Zelezhnyi, M. V. ; Cegan, T. ; Ginzburg, B. A. ; Bakulina, A. S.</creator><creatorcontrib>Kolchugina, N. B. ; Lukin, A. A. ; Kaminskaya, T. P. ; Burkhanov, G. S. ; Skotnicova, K. ; Kursa, M. ; Dormidontov, N. A. ; Prokof’ev, P. A. ; Zelezhnyi, M. V. ; Cegan, T. ; Ginzburg, B. A. ; Bakulina, A. S.</creatorcontrib><description>X-ray diffraction analysis, scanning electron microscopy, and atomic force microscopy are used to study the phase composition, texture, and peculiarities of the morphology of R–Fe–B (R = Nd, Pr, Dy) alloys prepared by strip-casting technology. 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Along with the traditional structural components of the alloys, namely, areas characterized by randomly oriented fine grains of the main magnetic phase with the Nd 2 Fe 14 B-type structure (which are formed near the contact surface of flakes) and coarse extended textured grains of the phase (in the volume of flakes), wide areas characterized by uniform distribution of rare-earth metal-rich phase with a period of 2–4 µm were also found. The formation of these areas takes place in the absence of coarse dendritic crystallites and, according to the suggested mechanism, is related to the solidification of the melt under conditions of its motion upon quenching on a cooled cylindrical surface. Data indicating the melt twisting upon solidification, which favors the formation of the structure with the aforementioned distribution of intergranular phase, are reported. The data obtained are discussed from the viewpoint of their practical utility for the improvement of the structure of alloys prepared by strip-casting and powders for manufacturing Nd–Fe–B permanent magnets.</abstract><cop>Moscow</cop><pub>Pleiades Publishing</pub><doi>10.1134/S0031918X20080049</doi><tpages>11</tpages></addata></record>
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subjects Alloys
Atomic force microscopy
Casting
Chemistry and Materials Science
Crystallites
Degassing of metals
Diffraction
Diffusion
Flakes
Magnets, Permanent
Materials Science
Metallic Materials
Metals
Microscopy
Morphology
Neodymium
Permanent magnets
Phase composition
Phase Transformations
Praseodymium
Rare earth elements
Solidification
Specialty metals industry
Strip casting
Structure
Twisting
X-rays
title Morphological Peculiarities of R–Fe–B (R = Nd, Pr) Alloys Formed upon Solidification by Strip-Casting
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