Microstructural study of Al-20Si-5Fe Alloys produced by melt-spinning

Al-20si-5Fe ribbons were produced by melt spinning at the rotating speed of 20 and 40m/s. The microstructure of ribbons and conventionally cast alloys were characterized using scanning electron microscopy (SEM) together with the energy dispersive spectroscopy (EDS), X-ray diffractometry (XRD) method...

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Main Authors: Aliyeh Rafiei, Nasser Varahram, Parviz Davami
Format: Article
Language:English
Published: Association of Metallurgical Engineers of Serbia 2013-03-01
Series:Metallurgical & Materials Engineering
Subjects:
Online Access:http://metall-mater-eng.com/index.php/home/article/view/200
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spelling doaj-e58e7cef377a4cfc95dbb2c412325ed42020-11-24T21:17:41ZengAssociation of Metallurgical Engineers of SerbiaMetallurgical & Materials Engineering2217-89612013-03-011918594196Microstructural study of Al-20Si-5Fe Alloys produced by melt-spinningAliyeh RafieiNasser VarahramParviz DavamiAl-20si-5Fe ribbons were produced by melt spinning at the rotating speed of 20 and 40m/s. The microstructure of ribbons and conventionally cast alloys were characterized using scanning electron microscopy (SEM) together with the energy dispersive spectroscopy (EDS), X-ray diffractometry (XRD) method. The microhardness of the ribbons and as cast ingots was also measured. SEM observations showed that the wheel side of the ribbons exhibited a finer microstructure than those on the air side which exposed to the atmosphere. The phase constitution of the hypereutectic Al–20Si-5Fe alloy was considerably affected by rapid solidification. XRD results showed that the phases present in the as cast hypereutectic Al-20Si-5Fe alloy were identified to be α-Al, Si and intermetallic β-Al5FeSi phases while only α-Al and Si were identified in the melt spun ribbons. Moreover, the values of Vickers microhardness of melt spun ribbons were three times as high as those of conventionally cast ingots of the same alloy.http://metall-mater-eng.com/index.php/home/article/view/200Melt-Spinning, Al-20Si-5Fe alloy, Microstructure, Rapid Solidification, Microhardness
collection DOAJ
language English
format Article
sources DOAJ
author Aliyeh Rafiei
Nasser Varahram
Parviz Davami
spellingShingle Aliyeh Rafiei
Nasser Varahram
Parviz Davami
Microstructural study of Al-20Si-5Fe Alloys produced by melt-spinning
Metallurgical & Materials Engineering
Melt-Spinning, Al-20Si-5Fe alloy, Microstructure, Rapid Solidification, Microhardness
author_facet Aliyeh Rafiei
Nasser Varahram
Parviz Davami
author_sort Aliyeh Rafiei
title Microstructural study of Al-20Si-5Fe Alloys produced by melt-spinning
title_short Microstructural study of Al-20Si-5Fe Alloys produced by melt-spinning
title_full Microstructural study of Al-20Si-5Fe Alloys produced by melt-spinning
title_fullStr Microstructural study of Al-20Si-5Fe Alloys produced by melt-spinning
title_full_unstemmed Microstructural study of Al-20Si-5Fe Alloys produced by melt-spinning
title_sort microstructural study of al-20si-5fe alloys produced by melt-spinning
publisher Association of Metallurgical Engineers of Serbia
series Metallurgical & Materials Engineering
issn 2217-8961
publishDate 2013-03-01
description Al-20si-5Fe ribbons were produced by melt spinning at the rotating speed of 20 and 40m/s. The microstructure of ribbons and conventionally cast alloys were characterized using scanning electron microscopy (SEM) together with the energy dispersive spectroscopy (EDS), X-ray diffractometry (XRD) method. The microhardness of the ribbons and as cast ingots was also measured. SEM observations showed that the wheel side of the ribbons exhibited a finer microstructure than those on the air side which exposed to the atmosphere. The phase constitution of the hypereutectic Al–20Si-5Fe alloy was considerably affected by rapid solidification. XRD results showed that the phases present in the as cast hypereutectic Al-20Si-5Fe alloy were identified to be α-Al, Si and intermetallic β-Al5FeSi phases while only α-Al and Si were identified in the melt spun ribbons. Moreover, the values of Vickers microhardness of melt spun ribbons were three times as high as those of conventionally cast ingots of the same alloy.
topic Melt-Spinning, Al-20Si-5Fe alloy, Microstructure, Rapid Solidification, Microhardness
url http://metall-mater-eng.com/index.php/home/article/view/200
work_keys_str_mv AT aliyehrafiei microstructuralstudyofal20si5fealloysproducedbymeltspinning
AT nasservarahram microstructuralstudyofal20si5fealloysproducedbymeltspinning
AT parvizdavami microstructuralstudyofal20si5fealloysproducedbymeltspinning
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