Metastable quasicrystals in Al–Mn alloys containing copper, magnesium and silicon

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作者
Iztok Naglič
Zoran Samardžija
Kemal Delijić
Spomenka Kobe
Jean-Marie Dubois
Blaž Leskovar
Boštjan Markoli
机构
[1] University of Ljubljana,Department of Materials and Metallurgy, Faculty of Natural Sciences and Engineering
[2] Jožef Stefan Institute,Department for Nanostructured Materials
[3] University of Montenegro,Faculty of Metallurgy and Technology
[4] Institut Jean Lamour,International Associated Laboratory PACS2
[5] CNRS and Université de Lorraine,undefined
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Metastable QCs; Quasicrystals (QCs); Equal Mean Values; Copper Mold; Electron Backscatter Diffraction Patterns (EBSDPs);
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摘要
We prepared three Al–Mn-based alloys with different copper, magnesium and silicon contents by casting into cylindrical copper molds. All the alloys exhibited primary metastable quasicrystals (QCs). In order to confirm the presence of either primary decagonal QCs (dQCs) or icosahedral QCs (iQCs) and to determine their compositions, the castings were characterized by means of light microscopy, scanning electron microscopy, energy-dispersive X-ray spectroscopy (EDS), electron-backscatter diffraction and X-ray diffraction. The dQCs are present in the Al–Mn-based alloys containing copper. In the case of the combined presence of copper and magnesium, iQCs are present in the edge region and dQCs are present in the central region. In the alloy containing copper, magnesium and silicon, iQCs are present in the casting. The average metallic radius (AMR) and electron-to-atom ratio of these primary phases were calculated by taking into account the composition of these primary phases, as determined by EDS. The AMR shows different values in the cases of dQCs and iQCs. Equal mean values of the AMR were found in iQCs with markedly different compositions. Furthermore, all the metastable QCs in this work show electron concentrations close to 2.6.
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页码:13657 / 13668
页数:11
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