Phase equilibria of the Al-Co-Er system at 400°C and 600°C

The 400°C and 600°C isothermal sections of the Al–Co–Er system were studied assisted with X-ray diffraction (XRD), scanning electron microscopy (SEM), and electron probe microanalysis (EPMA) techniques. 18 three-phase fields were identified in the 400°C isothermal section. The maximum solid solubili...

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Autores principales: Zheng L.-H., Zhang L.-G., Zhao F.-Y., Liu L.-B., Wang D., Wu C.-J.
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Lenguaje:EN
Publicado: Technical Faculty, Bor 2021
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Acceso en línea:https://doaj.org/article/85f90eaf5a1047deab86806417465ee1
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spelling oai:doaj.org-article:85f90eaf5a1047deab86806417465ee12021-11-22T11:04:01ZPhase equilibria of the Al-Co-Er system at 400°C and 600°C1450-53392217-717510.2298/JMMB210317032Zhttps://doaj.org/article/85f90eaf5a1047deab86806417465ee12021-01-01T00:00:00Zhttp://www.doiserbia.nb.rs/img/doi/1450-5339/2021/1450-53392100032Z.pdfhttps://doaj.org/toc/1450-5339https://doaj.org/toc/2217-7175The 400°C and 600°C isothermal sections of the Al–Co–Er system were studied assisted with X-ray diffraction (XRD), scanning electron microscopy (SEM), and electron probe microanalysis (EPMA) techniques. 18 three-phase fields were identified in the 400°C isothermal section. The maximum solid solubilities of Al in Co3Er and Co2Er were 13.93 at.%, and 16.13 at.%, respectively whereas the maximum solid solubilities of Co in Al2Er, Al2Er3 and AlEr2 were 6.93 at.%, 6.65 at.%, and 6.49 at.%, respectively. The solid solution range of λ is from 22.22 at.% Al to 44.44 at.% Al while the 600°C isothermal section included 20 three-phase fields. The maximum solid solubilities of Al in Co17Er2 and Co7Er2 were 10.17 at.% and 10.24 at.%, respectively. The maximum solid solubilities of Co in Al2Er and Al2Er3 were 3.63 at.% and 2.01 at.%, respectively.Zheng L.-H.Zhang L.-G.Zhao F.-Y.Liu L.-B.Wang D.Wu C.-J.Technical Faculty, Borarticlephase equilibriaal-co-eraluminum alloysMining engineering. MetallurgyTN1-997ENJournal of Mining and Metallurgy. Section B: Metallurgy, Vol 57, Iss 3, Pp 359-370 (2021)
institution DOAJ
collection DOAJ
language EN
topic phase equilibria
al-co-er
aluminum alloys
Mining engineering. Metallurgy
TN1-997
spellingShingle phase equilibria
al-co-er
aluminum alloys
Mining engineering. Metallurgy
TN1-997
Zheng L.-H.
Zhang L.-G.
Zhao F.-Y.
Liu L.-B.
Wang D.
Wu C.-J.
Phase equilibria of the Al-Co-Er system at 400°C and 600°C
description The 400°C and 600°C isothermal sections of the Al–Co–Er system were studied assisted with X-ray diffraction (XRD), scanning electron microscopy (SEM), and electron probe microanalysis (EPMA) techniques. 18 three-phase fields were identified in the 400°C isothermal section. The maximum solid solubilities of Al in Co3Er and Co2Er were 13.93 at.%, and 16.13 at.%, respectively whereas the maximum solid solubilities of Co in Al2Er, Al2Er3 and AlEr2 were 6.93 at.%, 6.65 at.%, and 6.49 at.%, respectively. The solid solution range of λ is from 22.22 at.% Al to 44.44 at.% Al while the 600°C isothermal section included 20 three-phase fields. The maximum solid solubilities of Al in Co17Er2 and Co7Er2 were 10.17 at.% and 10.24 at.%, respectively. The maximum solid solubilities of Co in Al2Er and Al2Er3 were 3.63 at.% and 2.01 at.%, respectively.
format article
author Zheng L.-H.
Zhang L.-G.
Zhao F.-Y.
Liu L.-B.
Wang D.
Wu C.-J.
author_facet Zheng L.-H.
Zhang L.-G.
Zhao F.-Y.
Liu L.-B.
Wang D.
Wu C.-J.
author_sort Zheng L.-H.
title Phase equilibria of the Al-Co-Er system at 400°C and 600°C
title_short Phase equilibria of the Al-Co-Er system at 400°C and 600°C
title_full Phase equilibria of the Al-Co-Er system at 400°C and 600°C
title_fullStr Phase equilibria of the Al-Co-Er system at 400°C and 600°C
title_full_unstemmed Phase equilibria of the Al-Co-Er system at 400°C and 600°C
title_sort phase equilibria of the al-co-er system at 400°c and 600°c
publisher Technical Faculty, Bor
publishDate 2021
url https://doaj.org/article/85f90eaf5a1047deab86806417465ee1
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AT zhanglg phaseequilibriaofthealcoersystemat400cand600c
AT zhaofy phaseequilibriaofthealcoersystemat400cand600c
AT liulb phaseequilibriaofthealcoersystemat400cand600c
AT wangd phaseequilibriaofthealcoersystemat400cand600c
AT wucj phaseequilibriaofthealcoersystemat400cand600c
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