58
Views
1
CrossRef citations to date
0
Altmetric
Articles

Comparative analysis of the short-range order in Al-Ge-Ni and Al-Ge-Fe melts

ORCID Icon, ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon
Pages 938-955 | Received 15 Nov 2020, Accepted 06 Feb 2021, Published online: 23 Feb 2021

References

  • Dahlborg U, Calvo-Dahlborg M, Eskin DG, et al. Thermal melt processing of metallic alloys. In: Eskin DG, Mi J editors. Solidif process met alloy under extern fields. Cham: Springer International Publishing; 2018. p. 277–315.
  • Yakovenko OM, Roik OS, Kazimirov VP, et al. Structure of the Al–Ge–Fe alloys in the liquid and solid state. J Non Cryst Solids. 2017;455:75–82.
  • Roik OS, Kazimirov VP, Yakovenko OM, et al. Structure of liquid Al-Ge-Ni melts in a wide composition range. J Mol Liq [Internet]. 2019;293:111458.
  • Nelson DR, Spaepen F. Polytetrahedral order in condensed matter. Solid State Phys - Adv Res Appl. 1989;42:1–90.
  • Schenk T, Simonet V, Holland-Moritz D, et al. Temperature dependence of the chemical short-range order in undercooled and stable Al-Fe-Co liquids. Europhys Lett. 2004;65(1):34–40.
  • Roik OS, Kazimirov VP, Sokolskii VE, et al. Formation of the short-range order in Al-based liquid alloys. J Non Cryst Solids [Internet]. 2013;364:34–39.
  • Munejiri S, Masaki T, Itami T, et al. Static and dynamic structure and the atomic dynamics of liquid Ge from first-principles molecular-dynamics simulations. Phys Rev B - Condens Matter Mater Phys. 2008;77(1):1–12.
  • Tosi MP. Structure of covalent liquids. J Phys Condens Matter. 1994;6(23A):A13–A28.
  • Romanova LA, Shevchenko MA, Kudin VG, et al. Termodinamicheskie svojstva rasplavov trojnyh sistem Al-Ni-element [thermodynamic properties of melts of the Al-Ni-element systems]. Sovremennye problemy fizicheskogo materialovedenija: Sb. Nauchn. Tr. 2012; 21:59-66. Russian.
  • Kanibolotsky DS, N V K, Bieloborodova OA, et al. Enthalpies of mixing of liquid Al–Fe–Ge alloys. Zeitschrift Für Met. 2003;94(12):1280–1292.
  • Desai PD. Thermodynamic properties of selected binary aluminum alloy systems. J Phys Chem Ref Data. 1987;16(1):109–124.
  • Sandakov V, Esin Y. Gel׳d P Ental'piya obrazovaniya zhidkih splavov sistemy Ni-Al pri 1650 C [Enthalpies of formation of Ni-Al liquid alloys at 1650°C]. Zh Fiz Khim. 1971; 45: 1798–1799. Russian.
  • Shlapak AN, Beloborodova EA. Batalin GI mixing enthalpies of Ge-Fe, Ge-Co and Ge-Ni melts. Ukr Khim Zh. 1980;46:209–211.
  • Eslami H, Muggianu Y, Gambino M, et al. Enthalpies de formation des alliages liquides aluminium-germanium, gallium-germanium et aluminium-gallium-germanium entre 713 et 1230 K. J Less Common Met. 1979;64(1):31–44.
  • Gruner S, Marczinke J, Hennet L, et al. Neutron diffraction study on liquid Al-Ni alloys. Int J Mater Res. 2010;101(6):741–745.
  • Shovskii VA, Kazimirov VP, Batalin GI. Sokol’skii VE Rentgenograficheskoe issledovanie rasplavov sistemy nikel’-germanij [X-ray diffraction study of melts of nickel-germanium system]. Ukr Fiz Zh. 1982; 27:1545–1550. Russian.
  • Roik OS, Muratov OS, Yakovenko OM, et al. X-ray diffraction studies and reverse monte carlo simulations of the liquid binary Fe–Si and Fe–Al alloys. J Mol Liq [Internet]. 2014;197:215–222.
  • Shovskii VA, Kazimirov VP, Batalin GI. Sokol’skii VE Issledovanie stroenija rasplavov sistemy Fe-Ge rentgenograficheskim metodom [Study on the structure of melts of the Fe-Ge system with X-ray diffraction]. Ukr Fiz Zh. 1985; 30:1805–1809. Russian.
  • Landa AI, Jur’ev AA, Romankevich MV, et al.Raschet termodinamicheskih i kineticheskih harakteristik rasplavov perehodnogo metalla prostym metodom nelokal’nogo model’nogo psevdopotenciala. primenenie k sisteme Ni-Al [Calculation of thermodynamic and kinetic characteristics of transition metal melts using a simple method of nonlocal model pseudopotential.application to Ni-Al system]. Rasplavy. 1991; 2:20–39. Russian.
  • Wenger A, Burn G, Steinemann S. Charge transfer in the alloys Mn-, Fe-, Co-, Ni-, Cu-Al measured by soft X-ray spectroscopy. Solid State Commun. 1971;9(13):1125–1128.
  • Roik OS, Yakovenko OM, Kazimirov VP, et al. Formation of short-range order in Al–Ge–Fe melts: influence of composition. Phys Chem Liq. 2020;58(1):94–104.
  • Turchanin M, Kolchugina N, Watson A, et al. Al-Fe binary phase diagram evaluation, msi eureka, evaluation report 20.10236.1.8 (2013) MSI Materials Science International Services GmbH Available from: https://materials.springer.com/msi/docs/sm_msi_r_20_010236_01.
  • Al-Ni OH. Aluminum-Nickel. J Phase Equilibria Diffus. 2004;25(4):394.
  • Fink WL. Willey LA equilibrium relations in aluminum-nickel alloys of high purity. Trans AIME. 1934;111:293–303.
  • Alexander WO, Vaughan NB. The constitution of the nickel-aluminum system, J. Inst Met. 1937;61:247–260.
  • McAlister AJ, Murray JL, Al-Ge T. Aluminum-Germanium) system. Bull Alloy Phase Diagrams. 1984;5(4):341–347.
  • Suryanarayana C, Anantharaman TR. Solidification of aluminium-germanium alloys at high cooling rates. J Mater Sci. 1970;5(11):992–1004.
  • Kaufman MJ, Fraser HL. Characterization of metastable crystalline phases in the Al-Ge alloy system. Acta Metall. 1985;33(2):191–203.
  • Kumagai M, Kurosaki K, Uchida N, et al. Synthesis and characterization of melt-spun metastable Al6Ge5. Journal of Electronic Materials. 2015;44(3):948–952.
  • Viennois R, Esmilaire R, Perrière L, et al. Crystal structure, stability, and physical properties of metastable electron-poor narrow-gap alge semiconductor. Inorganic Chemistry. 2017;56(19):11591–11602.
  • Fe-Ge OH. Iron-Germanium. J Phase Equilibria Diffus. 2008;29:292.
  • Nash A, Nash NP. The Ge−Ni (Germanium-Nickel) system. Bulletin of Alloy Phase Diagrams. 1987;8(3):255–264.
  • Reisinger GR, Effenberger HS, Richter KW. Al–Fe–Ge: new ternary compounds and phase equilibria at 800 °C. J Alloys Compd. 2018;762:849–857.
  • Reisinger GR, Effenberger HS, Richter KW Al7+xFe23Ge14−x and Al7+xFe9Ge5−x: two new ternary compounds related to Fe6Ge5. Journal of Alloys and Compounds. 2017 [ cited 2017 Jul 4];693 692–699.
  • Yanson TI, Zarechnyuk OS, Lushchik GF. Isothermal section of the nickel–aluminum–germanium system at 770 K. Izv Akad Nauk SSSR, Met. 1984;229–230.
  • Reichmann TL, Duarte LI, Effenberger HS, et al. Phase equilibria and structural investigations in the Ni-poor part of the system Al–Ge–Ni. Intermetallics. 2012;28:84–91.
  • Jandl I, Reichmann TL, Richter KW. The Ni-rich part of the Al–Ge–Ni phase diagram. Intermetallics. 2013;32:200–208.
  • Reichmann TL, Jandl I, Effenberger HS, et al. Al15Ge4Ni3: a new intergrowth structure with Cu3Au- and CaF2-type building blocks. Journal of Solid State Chemistry. 2015;225:240–248.
  • McGreevy RL. Reverse monte carlo modelling. Journal of Physics: Condensed Matter. 2001;13(46):R877–R913.
  • Nizhenko VI. Enthalpy of mixing and excess volume of binary metallic melts of eutectic systems. Powder Metallurgy and Metal Ceramics. 2003;42(5/6):278–284.
  • Plevachuk Y, Egry I, Brillo J, et al. Density and atomic volume in liquid Al–Fe and Al–Ni binary alloys. International Journal of Materials Research. 2007;98(2):107–111.
  • Medvedev NN. Voronoi-Delaunay method for non-crystalline structures. Russian: Novosibirsk: SB Russian Academy of Science; 2000.
  • Yakovenko OM, Kazimirov VP, Roik AS, et al. X-ray diffraction study of Al–Ge melts in a wide range of temperatures and concentrations. . Journal of Structural Chemistry. 2016;57(1):112–120.
  • Shovskii VA, Kazimirov VP, Batalin GI, et al. Structural features of iron digermanide in the liquid-state. Inorg Mater. 1987;23:835–837.
  • Roik AS, Samsonnikov AV, Kazimirov VP, et al. X-ray diffraction study of the structure of Al-Ni melts. Russian Metallurgy (Metally). 2006;2006(3):206–211.
  • Vainshtein BK, Fridkin VM, Indenbom VL. Structure of Crystals. Struct. Cryst. Springer Berlin Heidelberg. 1995. https://doi.org/10.1007/978-3-642-97512-7_1
  • Cordero B, Gómez V, Platero-Prats AE, et al. Covalent radii revisited. Dalton Transactions. 2008; (21):2832–2838. https://doi.org/10.1039/b801115j.
  • Maret M, Pasturel A, Senillou C, et al. Partial structure factors of liquid al80 (<sub>mnx(fecr) 1-x)20 alloys. Journal De Physique. 1989;50(3):295–310.
  • Suryanarayana C, Inoue A. Bulk metallic glasses [internet]. 2nd Editio ed. Boca Raton: CRC Press; 2017.
  • Li X, Wang J, Qin J, et al. The medium-range orders transition in liquid Fe–Al alloys. Computational Materials Science. 2019;161:199–208.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.