New experimental studies on the phase diagram of the Al-Cu-Fe quasicrystal-forming system
Phase diagrams of quasicrystal-forming alloy systems, such as Al-Cu-Fe, are essential to the continued development and fundamental understanding of quasicrystalline alloys, especially for the synthesis of single quasicrystals. Isothermal sections of the Al-Cu-Fe system at 700, 800, and 1000 °C were...
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doaj-c9a649342f244ea7bab0cc43f251bd0e2020-11-25T00:06:20ZengElsevierMaterials & Design0264-12752020-01-01185New experimental studies on the phase diagram of the Al-Cu-Fe quasicrystal-forming systemLilong Zhu0Sujeily Soto-Medina1Wesley Cuadrado-Castillo2Richard G. Hennig3Michele V. Manuel4Department of Materials Science and Engineering, University of Florida, Gainesville, FL 32611, USADepartment of Materials Science and Engineering, University of Florida, Gainesville, FL 32611, USADepartment of Materials Science and Engineering, University of Florida, Gainesville, FL 32611, USADepartment of Materials Science and Engineering, University of Florida, Gainesville, FL 32611, USACorresponding author.; Department of Materials Science and Engineering, University of Florida, Gainesville, FL 32611, USAPhase diagrams of quasicrystal-forming alloy systems, such as Al-Cu-Fe, are essential to the continued development and fundamental understanding of quasicrystalline alloys, especially for the synthesis of single quasicrystals. Isothermal sections of the Al-Cu-Fe system at 700, 800, and 1000 °C were constructed over the whole composition range by investigations of three Cu/Fe/Al5Fe2 diffusion triples and forty-seven equilibrated alloys using scanning electron microscopy (SEM), electron probe microanalysis (EPMA), and X-ray diffraction (XRD). Based on experimental measurements and reasonable assumptions, eleven, eight, and six three-phase equilibria were obtained at 700, 800, and 1000 °C, respectively. The existence of the ternary I-Al6Cu2Fe icosahedral quasicrystalline phase was confirmed at both 700 and 800 °C, and the ternary ω-Al7Cu2Fe phase was only found at 700 °C. The stable composition range of the I phase was measured to be Al67-56Cu24-31Fe9–13 and Al66-58Cu23-28Fe11–14 at 700 and 800 °C, respectively. A wide continuous solution region formed among the α-Fe, β-AlFe, and Cu3Al phases at 800 and 1000 °C. A sufficiently large amount of new experimental phase equilibrium data was collected for the Al-Cu-Fe system that will help improve future thermodynamic description of this ternary system within the CALPHAD (CALculation of PHAse Diagrams) framework for designing Al-Cu-Fe-based quasicrystals. Keywords: Al-Cu-Fe system, Quasicrystals, Phase diagram, Diffusion triple, Equilibrated alloy, CALPHADhttp://www.sciencedirect.com/science/article/pii/S0264127519306240 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Lilong Zhu Sujeily Soto-Medina Wesley Cuadrado-Castillo Richard G. Hennig Michele V. Manuel |
spellingShingle |
Lilong Zhu Sujeily Soto-Medina Wesley Cuadrado-Castillo Richard G. Hennig Michele V. Manuel New experimental studies on the phase diagram of the Al-Cu-Fe quasicrystal-forming system Materials & Design |
author_facet |
Lilong Zhu Sujeily Soto-Medina Wesley Cuadrado-Castillo Richard G. Hennig Michele V. Manuel |
author_sort |
Lilong Zhu |
title |
New experimental studies on the phase diagram of the Al-Cu-Fe quasicrystal-forming system |
title_short |
New experimental studies on the phase diagram of the Al-Cu-Fe quasicrystal-forming system |
title_full |
New experimental studies on the phase diagram of the Al-Cu-Fe quasicrystal-forming system |
title_fullStr |
New experimental studies on the phase diagram of the Al-Cu-Fe quasicrystal-forming system |
title_full_unstemmed |
New experimental studies on the phase diagram of the Al-Cu-Fe quasicrystal-forming system |
title_sort |
new experimental studies on the phase diagram of the al-cu-fe quasicrystal-forming system |
publisher |
Elsevier |
series |
Materials & Design |
issn |
0264-1275 |
publishDate |
2020-01-01 |
description |
Phase diagrams of quasicrystal-forming alloy systems, such as Al-Cu-Fe, are essential to the continued development and fundamental understanding of quasicrystalline alloys, especially for the synthesis of single quasicrystals. Isothermal sections of the Al-Cu-Fe system at 700, 800, and 1000 °C were constructed over the whole composition range by investigations of three Cu/Fe/Al5Fe2 diffusion triples and forty-seven equilibrated alloys using scanning electron microscopy (SEM), electron probe microanalysis (EPMA), and X-ray diffraction (XRD). Based on experimental measurements and reasonable assumptions, eleven, eight, and six three-phase equilibria were obtained at 700, 800, and 1000 °C, respectively. The existence of the ternary I-Al6Cu2Fe icosahedral quasicrystalline phase was confirmed at both 700 and 800 °C, and the ternary ω-Al7Cu2Fe phase was only found at 700 °C. The stable composition range of the I phase was measured to be Al67-56Cu24-31Fe9–13 and Al66-58Cu23-28Fe11–14 at 700 and 800 °C, respectively. A wide continuous solution region formed among the α-Fe, β-AlFe, and Cu3Al phases at 800 and 1000 °C. A sufficiently large amount of new experimental phase equilibrium data was collected for the Al-Cu-Fe system that will help improve future thermodynamic description of this ternary system within the CALPHAD (CALculation of PHAse Diagrams) framework for designing Al-Cu-Fe-based quasicrystals. Keywords: Al-Cu-Fe system, Quasicrystals, Phase diagram, Diffusion triple, Equilibrated alloy, CALPHAD |
url |
http://www.sciencedirect.com/science/article/pii/S0264127519306240 |
work_keys_str_mv |
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