Strong magnetic field effect on the nucleation of a highly undercooled Co-Sn melt

Abstract High magnetic field is a powerful tool to tune the microstructure and improve the properties of materials. In this report, the nucleation behavior of undercooled Co76Sn24 near eutectic alloy under strong homogeneous and gradient magnetic fields have been investigated using glass slag fluxin...

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Autores principales: Jun Wang, Yixuan He, Jinshan Li, Hongchao Kou, Eric Beaugnon
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/494f75cc5c084b729a7333cd1bb997fb
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spelling oai:doaj.org-article:494f75cc5c084b729a7333cd1bb997fb2021-12-02T15:05:46ZStrong magnetic field effect on the nucleation of a highly undercooled Co-Sn melt10.1038/s41598-017-05385-y2045-2322https://doaj.org/article/494f75cc5c084b729a7333cd1bb997fb2017-07-01T00:00:00Zhttps://doi.org/10.1038/s41598-017-05385-yhttps://doaj.org/toc/2045-2322Abstract High magnetic field is a powerful tool to tune the microstructure and improve the properties of materials. In this report, the nucleation behavior of undercooled Co76Sn24 near eutectic alloy under strong homogeneous and gradient magnetic fields have been investigated using glass slag fluxing method in a 12 T superconducting magnet. The mean undercooling of the undercooled melt is not altered by homogeneous magnetic field but depressed by gradient magnetic field. The highest temperature during recalescence is strongly altered by magnetic field, where an enhancement effect is observed under gradient magnetic field and an opposite effect in homogeneous magnetic field. The reason is interpreted by discussion about the magnetic field on the thermodynamics of nucleation and also the purifying effect of the glass slag, the magnetic properties and the magnetic force exerted on the undercooled melt.Jun WangYixuan HeJinshan LiHongchao KouEric BeaugnonNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 7, Iss 1, Pp 1-8 (2017)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Jun Wang
Yixuan He
Jinshan Li
Hongchao Kou
Eric Beaugnon
Strong magnetic field effect on the nucleation of a highly undercooled Co-Sn melt
description Abstract High magnetic field is a powerful tool to tune the microstructure and improve the properties of materials. In this report, the nucleation behavior of undercooled Co76Sn24 near eutectic alloy under strong homogeneous and gradient magnetic fields have been investigated using glass slag fluxing method in a 12 T superconducting magnet. The mean undercooling of the undercooled melt is not altered by homogeneous magnetic field but depressed by gradient magnetic field. The highest temperature during recalescence is strongly altered by magnetic field, where an enhancement effect is observed under gradient magnetic field and an opposite effect in homogeneous magnetic field. The reason is interpreted by discussion about the magnetic field on the thermodynamics of nucleation and also the purifying effect of the glass slag, the magnetic properties and the magnetic force exerted on the undercooled melt.
format article
author Jun Wang
Yixuan He
Jinshan Li
Hongchao Kou
Eric Beaugnon
author_facet Jun Wang
Yixuan He
Jinshan Li
Hongchao Kou
Eric Beaugnon
author_sort Jun Wang
title Strong magnetic field effect on the nucleation of a highly undercooled Co-Sn melt
title_short Strong magnetic field effect on the nucleation of a highly undercooled Co-Sn melt
title_full Strong magnetic field effect on the nucleation of a highly undercooled Co-Sn melt
title_fullStr Strong magnetic field effect on the nucleation of a highly undercooled Co-Sn melt
title_full_unstemmed Strong magnetic field effect on the nucleation of a highly undercooled Co-Sn melt
title_sort strong magnetic field effect on the nucleation of a highly undercooled co-sn melt
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/494f75cc5c084b729a7333cd1bb997fb
work_keys_str_mv AT junwang strongmagneticfieldeffectonthenucleationofahighlyundercooledcosnmelt
AT yixuanhe strongmagneticfieldeffectonthenucleationofahighlyundercooledcosnmelt
AT jinshanli strongmagneticfieldeffectonthenucleationofahighlyundercooledcosnmelt
AT hongchaokou strongmagneticfieldeffectonthenucleationofahighlyundercooledcosnmelt
AT ericbeaugnon strongmagneticfieldeffectonthenucleationofahighlyundercooledcosnmelt
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