First Principles Prediction of the Al-Li Phase Diagram

被引:11
作者
Liu, S. [1 ]
Esteban-Manzanares, G. [1 ]
LLorca, J. [1 ,2 ,3 ]
机构
[1] IMDEA Mat Inst, C Eric Kandel 2, Madrid 28906, Spain
[2] Univ Politecn Madrid, Dept Mat Sci, Madrid 28040, Spain
[3] Univ Politecn Madrid, ETS Ingn Caminos, Madrid 28040, Spain
来源
METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE | 2021年 / 52卷 / 10期
基金
欧盟地平线“2020”; 欧洲研究理事会;
关键词
GUINIER-PRESTON ZONES; GP ZONES; 1ST-PRINCIPLES CALCULATIONS; THERMODYNAMIC PROPERTIES; PRECIPITATE MORPHOLOGY; CU ALLOYS; EVOLUTION; DELTA; DECOMPOSITION; TEMPERATURE;
D O I
10.1007/s11661-021-06419-x
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The phase diagram of the Al-Li system was determined by means of first principles calculations in combination with the cluster expansion formalism and statistical mechanics. The ground state phases were determined from first principles calculations of fcc and bcc configurations in the whole compositional range, while the phase transitions as a function of temperature were ascertained from the thermodynamic grand potential and the Gibbs free energies of the phases. Overall, the calculated phase diagram was in good agreement with the currently accepted experimental phase diagram, but the simulations provided new insights that are important to optimize microstructure of these alloys by means of heat treatments. In particular, the structure of the potential GP zones, made up of Al0.5Li0.5 (001) monolayers embedded in Al matrix, was identified. It was found that Al3Li is a stable phase although the energy barrier for the transformation of Al3Li into AlLi is very small (a few meV) and can be overcome by thermal vibrations. Moreover, bcc AlLi was found to be formed by martensitic transformation of fcc configurations and Al3Li precipitates stand for favorable sites for the nucleation of AlLi because they contain the basic blocks of such fcc ordering. Finally, polynomial expressions of the Gibbs free energies of the different phases as a function of temperature and composition were given, so they can be used in mesoscale simulations of precipitation in Al-Li alloys.
引用
收藏
页码:4675 / 4690
页数:16
相关论文
共 65 条
  • [11] Advanced capabilities for materials modelling with QUANTUM ESPRESSO
    Giannozzi, P.
    Andreussi, O.
    Brumme, T.
    Bunau, O.
    Nardelli, M. Buongiorno
    Calandra, M.
    Car, R.
    Cavazzoni, C.
    Ceresoli, D.
    Cococcioni, M.
    Colonna, N.
    Carnimeo, I.
    Dal Corso, A.
    de Gironcoli, S.
    Delugas, P.
    DiStasio, R. A., Jr.
    Ferretti, A.
    Floris, A.
    Fratesi, G.
    Fugallo, G.
    Gebauer, R.
    Gerstmann, U.
    Giustino, F.
    Gorni, T.
    Jia, J.
    Kawamura, M.
    Ko, H-Y
    Kokalj, A.
    Kucukbenli, E.
    Lazzeri, M.
    Marsili, M.
    Marzari, N.
    Mauri, F.
    Nguyen, N. L.
    Nguyen, H-V
    Otero-de-la-Roza, A.
    Paulatto, L.
    Ponce, S.
    Rocca, D.
    Sabatini, R.
    Santra, B.
    Schlipf, M.
    Seitsonen, A. P.
    Smogunov, A.
    Timrov, I.
    Thonhauser, T.
    Umari, P.
    Vast, N.
    Wu, X.
    Baroni, S.
    [J]. JOURNAL OF PHYSICS-CONDENSED MATTER, 2017, 29 (46)
  • [12] QUANTUM ESPRESSO: a modular and open-source software project for quantum simulations of materials
    Giannozzi, Paolo
    Baroni, Stefano
    Bonini, Nicola
    Calandra, Matteo
    Car, Roberto
    Cavazzoni, Carlo
    Ceresoli, Davide
    Chiarotti, Guido L.
    Cococcioni, Matteo
    Dabo, Ismaila
    Dal Corso, Andrea
    de Gironcoli, Stefano
    Fabris, Stefano
    Fratesi, Guido
    Gebauer, Ralph
    Gerstmann, Uwe
    Gougoussis, Christos
    Kokalj, Anton
    Lazzeri, Michele
    Martin-Samos, Layla
    Marzari, Nicola
    Mauri, Francesco
    Mazzarello, Riccardo
    Paolini, Stefano
    Pasquarello, Alfredo
    Paulatto, Lorenzo
    Sbraccia, Carlo
    Scandolo, Sandro
    Sclauzero, Gabriele
    Seitsonen, Ari P.
    Smogunov, Alexander
    Umari, Paolo
    Wentzcovitch, Renata M.
    [J]. JOURNAL OF PHYSICS-CONDENSED MATTER, 2009, 21 (39)
  • [13] Grushko O., 2016, Aluminum-Lithium Alloys: Process Metallurgy, Physical Metallurgy, and Welding, V1st, DOI [DOI 10.1201/9781315369525, 10.1201/9781315369525]
  • [14] Thermodynamic assessment of the Al-Li system
    Hallstedt, Bengt
    Kim, Olga
    [J]. INTERNATIONAL JOURNAL OF MATERIALS RESEARCH, 2007, 98 (10) : 961 - 969
  • [15] GRAIN-BOUNDARY PRECIPITATE FREE ZONES IN AL-LI ALLOYS
    JHA, SC
    SANDERS, TH
    DAYANANDA, MA
    [J]. ACTA METALLURGICA, 1987, 35 (02): : 473 - 482
  • [16] Predicting β′ precipitate morphology and evolution in Mg-RE alloys using a combination of first-principles calculations and phase-field modeling
    Ji, Y. Z.
    Issa, A.
    Heo, T. W.
    Saal, J. E.
    Wolverton, C.
    Chen, L. -Q.
    [J]. ACTA MATERIALIA, 2014, 76 : 259 - 271
  • [17] THEORETICAL INVESTIGATION OF THE PRECIPITATION OF DELTA' IN AL-LI
    KHACHATURYAN, AG
    LINDSEY, TF
    MORRIS, JW
    [J]. METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 1988, 19 (02): : 249 - 258
  • [18] Energy barrier of bcc-fcc phase transition via the Bain path in Yukawa system
    Kiyokawa, Shuji
    [J]. PHYSICS OF PLASMAS, 2018, 25 (05)
  • [19] Microstructural evolution during aging of an Al-Cu-Li-Ag-Mg-Zr alloy
    Kumar, KS
    Brown, SA
    Pickens, JR
    [J]. ACTA MATERIALIA, 1996, 44 (05) : 1899 - 1915
  • [20] Effects of temperature on the fatigue crack growth of an Al-Li 8090 alloy with delta' microstructure
    Lee, CS
    Park, KJ
    Li, DM
    Kim, NJ
    [J]. METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 1997, 28 (04): : 1089 - 1093