Influence of high magnetic field on as-cast structure of Cu-25wt.%Ag alloys

To investigate the influence of high magnetic field (HMF) on the solidification microstructure of Cu-25wt.%Ag alloy, the Cu-25wt.%Ag alloy was prepared under HMF of 12 T, and for comparison, the alloy solidified without HMF was also fabricated. Macro and microstructures of the alloys were observed u...

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Main Authors: Li Guimao, Liu Yan, Su Yan
Format: Article
Language:English
Published: Foundry Journal Agency 2013-05-01
Series:China Foundry
Subjects:
Online Access:http://www.foundryworld.com/uploadfile/2013060841483109.pdf
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spelling doaj-b5f809343e834a469449d9e712c774aa2020-11-25T02:03:43ZengFoundry Journal AgencyChina Foundry1672-64212013-05-01103162166Influence of high magnetic field on as-cast structure of Cu-25wt.%Ag alloys Li GuimaoLiu YanSu YanTo investigate the influence of high magnetic field (HMF) on the solidification microstructure of Cu-25wt.%Ag alloy, the Cu-25wt.%Ag alloy was prepared under HMF of 12 T, and for comparison, the alloy solidified without HMF was also fabricated. Macro and microstructures of the alloys were observed using the stereomicroscope, and scanning electron microscope, field emission scanning electron microscopy. The weight percentages of the pro-eutectic and eutectic, Cu phase and Ag phase in eutectic, and precipitates of Ag phase in pro-eutectic were analyzed by using of IPP software. Results show that the morphology of the column dendrites changes into cellular dendrites and the grains are refined under HMF of 12 T. Meanwhile, the thickness of the eutectic wall increases, but the sizes of Cu phase and Ag phase and the eutectic lamellar spacings are decreased. The Ag precipitates in the Cu matrix become coarser and sparser. The weight percentage variation of the phases in the microstructure and the Cu-Ag binary phase diagram reveals that the eutectic point moves to the left of the eutectic point in the equilibrium condition and the supersaturated solid solubility of Ag decreases under HMF. http://www.foundryworld.com/uploadfile/2013060841483109.pdfhigh magnetic fieldCu-25wt.%Ag alloyCu dendriteeutectic pointsolid solubility
collection DOAJ
language English
format Article
sources DOAJ
author Li Guimao
Liu Yan
Su Yan
spellingShingle Li Guimao
Liu Yan
Su Yan
Influence of high magnetic field on as-cast structure of Cu-25wt.%Ag alloys
China Foundry
high magnetic field
Cu-25wt.%Ag alloy
Cu dendrite
eutectic point
solid solubility
author_facet Li Guimao
Liu Yan
Su Yan
author_sort Li Guimao
title Influence of high magnetic field on as-cast structure of Cu-25wt.%Ag alloys
title_short Influence of high magnetic field on as-cast structure of Cu-25wt.%Ag alloys
title_full Influence of high magnetic field on as-cast structure of Cu-25wt.%Ag alloys
title_fullStr Influence of high magnetic field on as-cast structure of Cu-25wt.%Ag alloys
title_full_unstemmed Influence of high magnetic field on as-cast structure of Cu-25wt.%Ag alloys
title_sort influence of high magnetic field on as-cast structure of cu-25wt.%ag alloys
publisher Foundry Journal Agency
series China Foundry
issn 1672-6421
publishDate 2013-05-01
description To investigate the influence of high magnetic field (HMF) on the solidification microstructure of Cu-25wt.%Ag alloy, the Cu-25wt.%Ag alloy was prepared under HMF of 12 T, and for comparison, the alloy solidified without HMF was also fabricated. Macro and microstructures of the alloys were observed using the stereomicroscope, and scanning electron microscope, field emission scanning electron microscopy. The weight percentages of the pro-eutectic and eutectic, Cu phase and Ag phase in eutectic, and precipitates of Ag phase in pro-eutectic were analyzed by using of IPP software. Results show that the morphology of the column dendrites changes into cellular dendrites and the grains are refined under HMF of 12 T. Meanwhile, the thickness of the eutectic wall increases, but the sizes of Cu phase and Ag phase and the eutectic lamellar spacings are decreased. The Ag precipitates in the Cu matrix become coarser and sparser. The weight percentage variation of the phases in the microstructure and the Cu-Ag binary phase diagram reveals that the eutectic point moves to the left of the eutectic point in the equilibrium condition and the supersaturated solid solubility of Ag decreases under HMF.
topic high magnetic field
Cu-25wt.%Ag alloy
Cu dendrite
eutectic point
solid solubility
url http://www.foundryworld.com/uploadfile/2013060841483109.pdf
work_keys_str_mv AT liguimao influenceofhighmagneticfieldonascaststructureofcu25wtagalloys
AT liuyan influenceofhighmagneticfieldonascaststructureofcu25wtagalloys
AT suyan influenceofhighmagneticfieldonascaststructureofcu25wtagalloys
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