Phase transformation and magnetic properties of MnAl powders prepared by elemental-doping and salt-assisted ball milling

The effects of elemental doping of Si and Fe on the ε→τ phase transformation and the magnetic properties of MnAl were studied. The magnetic powders of Si- and Fe-doped MnAl were prepared by using induction melting followed by water-quenching, annealing, and salt-assisted ball-milling. The Fe-doped M...

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Main Authors: Hui-Dong Qian, Ping-Zhan Si, Chul-Jin Choi, Jihoon Park, Kyung Mox Cho
Format: Article
Language:English
Published: AIP Publishing LLC 2018-05-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.5007176
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spelling doaj-dbd24933a1c74f428bc3ccf8c00732ed2020-11-25T00:17:54ZengAIP Publishing LLCAIP Advances2158-32262018-05-0185056216056216-510.1063/1.5007176151892ADVPhase transformation and magnetic properties of MnAl powders prepared by elemental-doping and salt-assisted ball millingHui-Dong Qian0Ping-Zhan Si1Chul-Jin Choi2Jihoon Park3Kyung Mox Cho4Powder and Ceramic Division, Korea Institute of Materials Science, Changwon 51508, Republic of KoreaPowder and Ceramic Division, Korea Institute of Materials Science, Changwon 51508, Republic of KoreaPowder and Ceramic Division, Korea Institute of Materials Science, Changwon 51508, Republic of KoreaPowder and Ceramic Division, Korea Institute of Materials Science, Changwon 51508, Republic of KoreaSchool of Materials Science and Engineering, Pusan National University, Busan 46241, Republic of KoreaThe effects of elemental doping of Si and Fe on the ε→τ phase transformation and the magnetic properties of MnAl were studied. The magnetic powders of Si- and Fe-doped MnAl were prepared by using induction melting followed by water-quenching, annealing, and salt-assisted ball-milling. The Fe-doped MnAl powders are mainly composed of the L10-structured τ-phase, while the Si-doped MnAl are composed of τ-phase and a small fraction of γ2- and β-phases. A unique thin leaves-like morphology with thickness of several tens of nanometers and diameter size up to 500 nm were observed in the Si-doped MnAl powders. The Fe-doped MnAl powders show irregular shape with much larger dimensions in the range from several to 10 μm. The morphology difference of the samples was ascribed to the variation of the mechanical properties affected by different doping elements. The phase transformation temperatures of the ε-phase of the samples were measured. The doping of Fe decreases the onset temperature of the massive phase transformation in MnAl, while the Si-doping increases the massive phase transformation temperature. Both Fe and Si increase the Curie temperature of MnAl. A substantially enhanced coercivity up to 0.45 T and 0.42 T were observed in the ball-milled MnAl powders doped with Si and Fe, respectively.http://dx.doi.org/10.1063/1.5007176
collection DOAJ
language English
format Article
sources DOAJ
author Hui-Dong Qian
Ping-Zhan Si
Chul-Jin Choi
Jihoon Park
Kyung Mox Cho
spellingShingle Hui-Dong Qian
Ping-Zhan Si
Chul-Jin Choi
Jihoon Park
Kyung Mox Cho
Phase transformation and magnetic properties of MnAl powders prepared by elemental-doping and salt-assisted ball milling
AIP Advances
author_facet Hui-Dong Qian
Ping-Zhan Si
Chul-Jin Choi
Jihoon Park
Kyung Mox Cho
author_sort Hui-Dong Qian
title Phase transformation and magnetic properties of MnAl powders prepared by elemental-doping and salt-assisted ball milling
title_short Phase transformation and magnetic properties of MnAl powders prepared by elemental-doping and salt-assisted ball milling
title_full Phase transformation and magnetic properties of MnAl powders prepared by elemental-doping and salt-assisted ball milling
title_fullStr Phase transformation and magnetic properties of MnAl powders prepared by elemental-doping and salt-assisted ball milling
title_full_unstemmed Phase transformation and magnetic properties of MnAl powders prepared by elemental-doping and salt-assisted ball milling
title_sort phase transformation and magnetic properties of mnal powders prepared by elemental-doping and salt-assisted ball milling
publisher AIP Publishing LLC
series AIP Advances
issn 2158-3226
publishDate 2018-05-01
description The effects of elemental doping of Si and Fe on the ε→τ phase transformation and the magnetic properties of MnAl were studied. The magnetic powders of Si- and Fe-doped MnAl were prepared by using induction melting followed by water-quenching, annealing, and salt-assisted ball-milling. The Fe-doped MnAl powders are mainly composed of the L10-structured τ-phase, while the Si-doped MnAl are composed of τ-phase and a small fraction of γ2- and β-phases. A unique thin leaves-like morphology with thickness of several tens of nanometers and diameter size up to 500 nm were observed in the Si-doped MnAl powders. The Fe-doped MnAl powders show irregular shape with much larger dimensions in the range from several to 10 μm. The morphology difference of the samples was ascribed to the variation of the mechanical properties affected by different doping elements. The phase transformation temperatures of the ε-phase of the samples were measured. The doping of Fe decreases the onset temperature of the massive phase transformation in MnAl, while the Si-doping increases the massive phase transformation temperature. Both Fe and Si increase the Curie temperature of MnAl. A substantially enhanced coercivity up to 0.45 T and 0.42 T were observed in the ball-milled MnAl powders doped with Si and Fe, respectively.
url http://dx.doi.org/10.1063/1.5007176
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AT chuljinchoi phasetransformationandmagneticpropertiesofmnalpowderspreparedbyelementaldopingandsaltassistedballmilling
AT jihoonpark phasetransformationandmagneticpropertiesofmnalpowderspreparedbyelementaldopingandsaltassistedballmilling
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