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Formation of the Fe-Containing Intermetallic Compounds during Solidification of Al-5Mg-2Si-0.7Mn-1.1Fe Alloy
Authors
C. Li
G.J.C. Carpenter
+26 more
H.J. Huang
L. Lu
L.F. Mondolfo
L.F. Zhang
M. Cooper
M. Karlik
M. Rajabi
M. Sha
M. Timpel
M.F. Kilicaslan
M.V. Kral
P. Ashtari
P. Ashtari
P. Hartman
S. Belmares-Perales
S. Nafisi
S.G. Shabestari
S.G. Shabestari
T.O. Mbuya
V. Hansen
X. Cao
X. Fang
Y.B. Zhang
Yun Wang
Zhongping Que
Zhongyun Fan
Publication date
9 April 2018
Publisher
'Springer Science and Business Media LLC'
Doi
Abstract
© The Author(s) 2018. Iron (Fe) is the most common and the most detrimental impurity element in Al alloys due to the formation of Fe-containing intermetallic compounds (IMCs), which are harmful to mechanical performance of the Al-alloy components. In this paper we investigate the formation of Fe-containing IMCs during solidification of an Al-5Mg-2Si-0.7Mn-1.1Fe alloy under varied solidification conditions. We found that the primary Fe-containing intermetallic compound (P-IMC) in the alloy is the BCC α-Al15(Fe,Mn)3Si2 phase and has a polyhedral morphology with {1 1 0} surface termination. The formation of the P-IMCs can be easily suppressed by increasing the melt superheat and/or cooling rate, suggesting that the nucleation of the α-Al15(Fe,Mn)3Si2 phase is difficult. In addition, we found that the IMCs with a Chinese script morphology is initiated on the {1 0 0} surfaces of the P-IMCs during the binary eutectic reaction with the α-Al phase. Both the binary and ternary eutectic IMCs are also identified as the BCC α-Al15(Fe,Mn)3Si2 phase. Furthermore, we found that the Fe content increases and the Mn content decreases in the Fe-containing intermetallic compounds with the decrease of the formation temperature, although the sum of the Fe and Mn contents in all of the IMCs is constant.EPSRC Grant EP/H026177/1
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info:doi/10.1007%2Fs11661-018-...
Last time updated on 01/12/2020
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Brunel University Research Archive
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Last time updated on 18/12/2020