B2 long-range order in mechanically alloyed Fe53.3−0.6xCo46.7−0.4xSnx (2 ≤ x ≤ 26) annealed at moderate temperatures

Recent interest in Fe–Co–Sn alloys stems from Heusler alloys. A Co 2 FeSn Heusler alloy is found to be unstable relative to other phases from ab initio calculations. However, it may be synthesized by non-equilibrium techniques. The present work focuses similarly on metastable ordered phases in terna...

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Published in:Journal of materials science Vol. 51; no. 12; pp. 5775 - 5790
Main Authors: Malaman, B., Le Caër, G., Costa, B. F. O.
Format: Journal Article
Language:English
Published: New York Springer US 01-06-2016
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Abstract Recent interest in Fe–Co–Sn alloys stems from Heusler alloys. A Co 2 FeSn Heusler alloy is found to be unstable relative to other phases from ab initio calculations. However, it may be synthesized by non-equilibrium techniques. The present work focuses similarly on metastable ordered phases in ternary Fe–Co–Sn alloys. First, disordered phases of Sn in near-equiatomic Fe–Co are prepared by high-energy ball-milling. As-milled powders are then annealed to possibly produce long-range ordered phases. As-milled powders, of overall composition Fe 53.3−0.6 x Co 46.7−0.4 x Sn x (2 ≤  x  ≤ 34), consist of a single supersaturated bcc phase for x  < ~15 at.%. For larger values of x , they are primarily composed of a bcc phase, whose tin content still increases up to ~26 at.%, and of extra phases, which include hexagonal (Fe,Co) 3 Sn 2 . Neutron diffraction patterns and 119 Sn Mössbauer spectra prove that bcc phases of as-milled alloys order to CsCl (B2)-type structures for x  ≤ 26 when annealed at 673 K. In addition, 119 Sn Mössbauer spectra reveal that a Sn content of ~15 at.% marks the separation between domains with different short-range orders. From previous and present results, metastable B2 ordering of Sn-rich Co–Fe–Sn alloys is concluded to occur over a significant concentration range.
AbstractList Recent interest in Fe–Co–Sn alloys stems from Heusler alloys. A Co 2 FeSn Heusler alloy is found to be unstable relative to other phases from ab initio calculations. However, it may be synthesized by non-equilibrium techniques. The present work focuses similarly on metastable ordered phases in ternary Fe–Co–Sn alloys. First, disordered phases of Sn in near-equiatomic Fe–Co are prepared by high-energy ball-milling. As-milled powders are then annealed to possibly produce long-range ordered phases. As-milled powders, of overall composition Fe 53.3−0.6 x Co 46.7−0.4 x Sn x (2 ≤  x  ≤ 34), consist of a single supersaturated bcc phase for x  < ~15 at.%. For larger values of x , they are primarily composed of a bcc phase, whose tin content still increases up to ~26 at.%, and of extra phases, which include hexagonal (Fe,Co) 3 Sn 2 . Neutron diffraction patterns and 119 Sn Mössbauer spectra prove that bcc phases of as-milled alloys order to CsCl (B2)-type structures for x  ≤ 26 when annealed at 673 K. In addition, 119 Sn Mössbauer spectra reveal that a Sn content of ~15 at.% marks the separation between domains with different short-range orders. From previous and present results, metastable B2 ordering of Sn-rich Co–Fe–Sn alloys is concluded to occur over a significant concentration range.
Author Costa, B. F. O.
Le Caër, G.
Malaman, B.
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  surname: Costa
  fullname: Costa, B. F. O.
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Keywords CoFe2O4
Heusler Alloy
Mechanical Alloy
Neutron Diffraction Pattern
Annealed Alloy
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Snippet Recent interest in Fe–Co–Sn alloys stems from Heusler alloys. A Co 2 FeSn Heusler alloy is found to be unstable relative to other phases from ab initio...
SourceID springer
SourceType Publisher
StartPage 5775
SubjectTerms Characterization and Evaluation of Materials
Chemistry and Materials Science
Classical Mechanics
Crystallography and Scattering Methods
Materials Science
Original Paper
Polymer Sciences
Solid Mechanics
Title B2 long-range order in mechanically alloyed Fe53.3−0.6xCo46.7−0.4xSnx (2 ≤ x ≤ 26) annealed at moderate temperatures
URI https://link.springer.com/article/10.1007/s10853-016-9879-6
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