Effect of alloying elements on the stacking fault energies of dilute al-based alloys

A systematic study of the stacking fault energy (γSF) for the dilute Al-based alloys (Al23X, Al47X and Al71X, where X = Al, Ag, Be, Ca, Cd, Co, Cu, Cr, Fe, Ga, Ge, Hf, In, K, La, Li, Mn, Mg, Ni, Na, Pb, Sc, Sn, Sr, Si, Ti, V, Zn, and Zr) has been performed by means of first-principles calculations....

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Main Authors: Gao Q., Zhang H., Yang R., Fan Z., Liu Y., Wang J., Geng X., Gao Y., Shang S., Du Y., Liu Z.
Format: Article
Language:English
Published: Technical Faculty, Bor 2018-01-01
Series:Journal of Mining and Metallurgy. Section B: Metallurgy
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/1450-5339/2018/1450-53391800007G.pdf
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spelling doaj-8abc227a7f5a4b75a59059368590e9b32020-11-25T02:15:35ZengTechnical Faculty, BorJournal of Mining and Metallurgy. Section B: Metallurgy1450-53392217-71752018-01-0154218519610.2298/JMMB180107007G1450-53391800007GEffect of alloying elements on the stacking fault energies of dilute al-based alloysGao Q.0Zhang H.1Yang R.2Fan Z.3Liu Y.4Wang J.5Geng X.6Gao Y.7Shang S.8Du Y.9Liu Z.10Chengde Petroleum College, Department of Mathematics and Physics, Chengde, ChinaChengde Petroleum College, Department of Mathematics and Physics, Chengde, ChinaChengde Petroleum College, Department of Mathematics and Physics, Chengde, ChinaChengde Petroleum College, Department of Mathematics and Physics, Chengde, ChinaChengde Petroleum College, Department of Mathematics and Physics, Chengde, ChinaCentral South University, State Key Lab of Powder Metallurgy, ChinaChengde Petroleum College, Department of Mathematics and Physics, Chengde, ChinaChengde Petroleum College, Department of Mathematics and Physics, Chengde, ChinaPennsylvania State University, Department of Materials Science and Engineering, University Park, Pennsylvania, USACentral South University, State Key Lab of Powder Metallurgy, ChinaPennsylvania State University, Department of Materials Science and Engineering, University Park, Pennsylvania, USAA systematic study of the stacking fault energy (γSF) for the dilute Al-based alloys (Al23X, Al47X and Al71X, where X = Al, Ag, Be, Ca, Cd, Co, Cu, Cr, Fe, Ga, Ge, Hf, In, K, La, Li, Mn, Mg, Ni, Na, Pb, Sc, Sn, Sr, Si, Ti, V, Zn, and Zr) has been performed by means of first-principles calculations. Alias shear deformation is adopted in the present investigations. The presently calculated γSF for Al is in favorable accordance with experimental and other theoretical data. For the targeted elements, the calculations indicate that Na, Si, K, Ca, Sc, Ga, Ge, Sr, Zr, In, Sn, La, Hf, and Pb, in any concentration we considered, decrease the γSF of Al, while Ag, Be, Cd, Co, Cu, Cr, Fe, Li, Mn, Mg, Ni, Ti, V, and Zn increase the γSF of Al, when the concentration of alloying elements is 1.39 at. % in the system. With increasing concentration of alloying elements, Li, Mg, V, Ti, and Cd change from increasing the γSF of Al to decreasing it, based on present investigations. Among the alloying elements, which decrease the γSF of Al, La decreases the γSF most significantly. It is also found that the γSF of Al-X generally decreases with the increase of equilibrium volume. The results obtained in the present work provide an insight into the design of Al based alloys.http://www.doiserbia.nb.rs/img/doi/1450-5339/2018/1450-53391800007G.pdfstacking fault energyfirst-principlesAl-based alloysalloying element
collection DOAJ
language English
format Article
sources DOAJ
author Gao Q.
Zhang H.
Yang R.
Fan Z.
Liu Y.
Wang J.
Geng X.
Gao Y.
Shang S.
Du Y.
Liu Z.
spellingShingle Gao Q.
Zhang H.
Yang R.
Fan Z.
Liu Y.
Wang J.
Geng X.
Gao Y.
Shang S.
Du Y.
Liu Z.
Effect of alloying elements on the stacking fault energies of dilute al-based alloys
Journal of Mining and Metallurgy. Section B: Metallurgy
stacking fault energy
first-principles
Al-based alloys
alloying element
author_facet Gao Q.
Zhang H.
Yang R.
Fan Z.
Liu Y.
Wang J.
Geng X.
Gao Y.
Shang S.
Du Y.
Liu Z.
author_sort Gao Q.
title Effect of alloying elements on the stacking fault energies of dilute al-based alloys
title_short Effect of alloying elements on the stacking fault energies of dilute al-based alloys
title_full Effect of alloying elements on the stacking fault energies of dilute al-based alloys
title_fullStr Effect of alloying elements on the stacking fault energies of dilute al-based alloys
title_full_unstemmed Effect of alloying elements on the stacking fault energies of dilute al-based alloys
title_sort effect of alloying elements on the stacking fault energies of dilute al-based alloys
publisher Technical Faculty, Bor
series Journal of Mining and Metallurgy. Section B: Metallurgy
issn 1450-5339
2217-7175
publishDate 2018-01-01
description A systematic study of the stacking fault energy (γSF) for the dilute Al-based alloys (Al23X, Al47X and Al71X, where X = Al, Ag, Be, Ca, Cd, Co, Cu, Cr, Fe, Ga, Ge, Hf, In, K, La, Li, Mn, Mg, Ni, Na, Pb, Sc, Sn, Sr, Si, Ti, V, Zn, and Zr) has been performed by means of first-principles calculations. Alias shear deformation is adopted in the present investigations. The presently calculated γSF for Al is in favorable accordance with experimental and other theoretical data. For the targeted elements, the calculations indicate that Na, Si, K, Ca, Sc, Ga, Ge, Sr, Zr, In, Sn, La, Hf, and Pb, in any concentration we considered, decrease the γSF of Al, while Ag, Be, Cd, Co, Cu, Cr, Fe, Li, Mn, Mg, Ni, Ti, V, and Zn increase the γSF of Al, when the concentration of alloying elements is 1.39 at. % in the system. With increasing concentration of alloying elements, Li, Mg, V, Ti, and Cd change from increasing the γSF of Al to decreasing it, based on present investigations. Among the alloying elements, which decrease the γSF of Al, La decreases the γSF most significantly. It is also found that the γSF of Al-X generally decreases with the increase of equilibrium volume. The results obtained in the present work provide an insight into the design of Al based alloys.
topic stacking fault energy
first-principles
Al-based alloys
alloying element
url http://www.doiserbia.nb.rs/img/doi/1450-5339/2018/1450-53391800007G.pdf
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