Effects of the Fe/Mn weight ratio and cooling rate on the area fractions of α-AlFeSi and β-AlFeSi phases in Al-7.5Si-3.75Cu-0.5Mg-0.55Fe-xMn aluminum alloy

The effects of the Fe/Mn weight ratio (1,42 or 3,05) and cooling rate (0,1, 0,2, 0,5, or 0,6 °C/s) on the area fraction of α-AlFeSi and β-AlFeSi intermetallic compounds in Al-7.5Si-3.75Cu-0.5Mg-0.55Fe-xMn aluminum alloy were studied. It was found that the difference between the formation temperature...

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Main Authors: A. Hernández-Rodríguez, M. de J. Castro-Román, M. Herrera-Trejo, S. Belmares-Perales, P. Orozco-González
Format: Article
Language:English
Published: Croatian Metallurgical Society 2014-07-01
Series:Metalurgija
Subjects:
Online Access:http://hrcak.srce.hr/file/176682
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spelling doaj-bc73b89d874f4b0da7121b66e0cdf3032020-11-25T00:05:23ZengCroatian Metallurgical SocietyMetalurgija0543-58461334-25762014-07-01533314316Effects of the Fe/Mn weight ratio and cooling rate on the area fractions of α-AlFeSi and β-AlFeSi phases in Al-7.5Si-3.75Cu-0.5Mg-0.55Fe-xMn aluminum alloyA. Hernández-RodríguezM. de J. Castro-RománM. Herrera-TrejoS. Belmares-PeralesP. Orozco-GonzálezThe effects of the Fe/Mn weight ratio (1,42 or 3,05) and cooling rate (0,1, 0,2, 0,5, or 0,6 °C/s) on the area fraction of α-AlFeSi and β-AlFeSi intermetallic compounds in Al-7.5Si-3.75Cu-0.5Mg-0.55Fe-xMn aluminum alloy were studied. It was found that the difference between the formation temperature of the β-AlFeSi phase and the formation temperature of the eutectic Al-Si may determine the possibilities of β-AlFeSi elimination/reduction by increasing the cooling rate.http://hrcak.srce.hr/file/176682aluminium alloycooling ratethermal analysissolidificationintermetallic compounds
collection DOAJ
language English
format Article
sources DOAJ
author A. Hernández-Rodríguez
M. de J. Castro-Román
M. Herrera-Trejo
S. Belmares-Perales
P. Orozco-González
spellingShingle A. Hernández-Rodríguez
M. de J. Castro-Román
M. Herrera-Trejo
S. Belmares-Perales
P. Orozco-González
Effects of the Fe/Mn weight ratio and cooling rate on the area fractions of α-AlFeSi and β-AlFeSi phases in Al-7.5Si-3.75Cu-0.5Mg-0.55Fe-xMn aluminum alloy
Metalurgija
aluminium alloy
cooling rate
thermal analysis
solidification
intermetallic compounds
author_facet A. Hernández-Rodríguez
M. de J. Castro-Román
M. Herrera-Trejo
S. Belmares-Perales
P. Orozco-González
author_sort A. Hernández-Rodríguez
title Effects of the Fe/Mn weight ratio and cooling rate on the area fractions of α-AlFeSi and β-AlFeSi phases in Al-7.5Si-3.75Cu-0.5Mg-0.55Fe-xMn aluminum alloy
title_short Effects of the Fe/Mn weight ratio and cooling rate on the area fractions of α-AlFeSi and β-AlFeSi phases in Al-7.5Si-3.75Cu-0.5Mg-0.55Fe-xMn aluminum alloy
title_full Effects of the Fe/Mn weight ratio and cooling rate on the area fractions of α-AlFeSi and β-AlFeSi phases in Al-7.5Si-3.75Cu-0.5Mg-0.55Fe-xMn aluminum alloy
title_fullStr Effects of the Fe/Mn weight ratio and cooling rate on the area fractions of α-AlFeSi and β-AlFeSi phases in Al-7.5Si-3.75Cu-0.5Mg-0.55Fe-xMn aluminum alloy
title_full_unstemmed Effects of the Fe/Mn weight ratio and cooling rate on the area fractions of α-AlFeSi and β-AlFeSi phases in Al-7.5Si-3.75Cu-0.5Mg-0.55Fe-xMn aluminum alloy
title_sort effects of the fe/mn weight ratio and cooling rate on the area fractions of α-alfesi and β-alfesi phases in al-7.5si-3.75cu-0.5mg-0.55fe-xmn aluminum alloy
publisher Croatian Metallurgical Society
series Metalurgija
issn 0543-5846
1334-2576
publishDate 2014-07-01
description The effects of the Fe/Mn weight ratio (1,42 or 3,05) and cooling rate (0,1, 0,2, 0,5, or 0,6 °C/s) on the area fraction of α-AlFeSi and β-AlFeSi intermetallic compounds in Al-7.5Si-3.75Cu-0.5Mg-0.55Fe-xMn aluminum alloy were studied. It was found that the difference between the formation temperature of the β-AlFeSi phase and the formation temperature of the eutectic Al-Si may determine the possibilities of β-AlFeSi elimination/reduction by increasing the cooling rate.
topic aluminium alloy
cooling rate
thermal analysis
solidification
intermetallic compounds
url http://hrcak.srce.hr/file/176682
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