Horizontally Solidified Al–3 wt%Cu–(0.5 wt%Mg) Alloys: Tailoring Thermal Parameters, Microstructure, Microhardness, and Corrosion Behavior

被引:0
作者
André Barros
Clarissa Cruz
Adrina P.Silva
Noé Cheung
Amauri Garcia
Otávio Rocha
Antonio Moreira
机构
[1] Institute of Technology, Federal University of Pará-UFPA
[2] Department of Manufacturing and Materials Engineering,University of Campinas-UNICAMP
[3] Federal Institute of Education, Science and Technology of Pará-IFPA
基金
巴西圣保罗研究基金会;
关键词
Aluminum alloys; Solidification; Dendritic microstructure; Intermetallic phases; Microhardness; Corrosion resistance;
D O I
暂无
中图分类号
TG146.21 [];
学科分类号
080502 ;
摘要
In the present experimental investigation, Al–3 wt%Cu and Al–3 wt%Cu–0.5 wt%Mg alloys castings are produced by a horizontal solidification technique with a view to examining the interrelationship among growth rate(GR), cooling rate(CR), secondary dendrite arm spacing(λ2), Vickers microhardness(HV), and corrosion behavior in a 0.5 M NaCl solution.The intermetallic phases of the as-solidified microstructures, that is, h-Al2Cu, S–Al2CuMg, and x-Al7Cu2 Fe, are subjected to a comprehensive characterization by using calculations provided by computational thermodynamics software, optical microscopy, and scanning electron microscopy/energy-dispersive spectroscopy. Moreover, electrochemical impedance spectroscopy and potentiodynamic polarization tests have been applied to analyze the corrosion performance of samples of both alloys castings. Hall–Petch-type equations are proposed to represent the HV dependence on λ2. It is shown that the addition of Mg to the Al–Cu alloy has led to a considerable increase in HV; however, the Al–Cu binary alloy is shown to have lower corrosion current density(icorr) as well as higher polarization resistance as compared to the corresponding results of the Al–Cu–Mg ternary alloy.
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页码:695 / 709
页数:15
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[1]  
A.S.Barros;I.A.Magno;F.A.Souza;C.A.Mota;A.L.Moreira;M.S.Silva;O.L.Rocha; Met.Mater.Int 2015, 21