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Part A: Materials Science

Possible nucleus of the Bergman cluster in the Zn–Mg–Y alloy system

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Pages 219-236 | Received 15 Sep 2017, Accepted 31 Oct 2017, Published online: 08 Nov 2017

References

  • D. Shechtman, I. Blech, D. Gratias, and J.W. Cahn, Metallic phase with long-range orientational order and no translational symmetry, Phys. Rev. Lett. 53 (1984), pp. 1951–1953.10.1103/PhysRevLett.53.1951
  • A.I. Goldman and R.F. Kelton, Quasicrystals and crystalline approximants, Rev. Mod. Phys. 65 (1993), pp. 213–230.10.1103/RevModPhys.65.213
  • A. Yamamoto, Crystallography of quasiperiodic crystals, Acta Crystallogr. A 52 (1996), pp. 509–560.10.1107/S0108767396000967
  • W. Steurer and S. Deloudi, Crystallography of Quasicrystals, Springer-Verlag, Berlin, 2009.
  • G. Bergman, J.L.T. Waugh, and L. Pauling, The crystal structure of the metallic phase Mg32(Al, Zn)49, Acta Crystallogr. 10 (1957), pp. 254–259.10.1107/S0365110X57000808
  • A.L. Mackay, A dense non-crystallographic packing of equal spheres, Acta Crystallogr. 15 (1962), pp. 916–918.10.1107/S0365110X6200239X
  • A.P. Tsai, J.Q. Guo, E. Abe, H. Takakura, and T.J. Sato, Alloys: A stable binary quasicrystal, Nature 408 (2000), pp. 537–538.10.1038/35046202
  • H. Liang, S.-L. Chen, and Y.A. Chang, A thermodynamic description of the Al–Mg–Zn system, Metall. Mater. Trans. A 28 (1997), pp. 1725–1734.10.1007/s11661-997-0104-8
  • W. Sun, F.J. Lincoln, K. Sugiyama, and K. Hiraga, Structure refinement of (Al, Zn)49Mg32-type phases by single-crystal X-ray diffraction, Mater. Sci. Eng. 294–296 (2000), pp. 327–330.10.1016/S0921-5093(00)01094-7
  • A. Niikura, A.P. Tsai, A. Inoue, and T. Masumoto, Stable Zn–Mg-rare-earth face-centred icosahedral alloys with pentagonal dodecahedral solidification morphology, Philos. Mag. Lett. 69 (1994), pp. 351–355.10.1080/09500839408242444
  • A.P. Tsai, A. Niikura, A. Inoue, T. Masumoto, Y. Nishida, and K. Tsuda, Highly ordered structure of icosahedral quasicrystals in Zn–Mg–RE (RE ≡ rare earth metals) systems, Philos. Mag. Lett. 70 (1994), pp. 169–175.10.1080/09500839408240971
  • S. Brühne, E. Uhrig, G. Kreiner, and W. Assmus, Local atomic three-dimensional real-space structural analysis of icosahedral Mg–Zn–RE (RE = Y or Ho) alloys: Strategy, method and models, Philos. Mag. 86 (2006), pp. 463–468.10.1080/14786430500333331
  • Z. Luo, S. Zhang, Y. Tang, and D. Zhao, Quasicrystals in as-cast Mg–Zn-RE alloys, Scr. Metall. Mater. 28 (1993), pp. 1513–1518.10.1016/0956-716X(93)90584-F
  • A.P. Tsai, Y. Murakami, and A. Niikura, The Zn–Mg–Y phase diagram involving quasicrystals, Philos. Mag. A 80 (2000), pp. 1043–1054.10.1080/01418610008212098
  • Y.B. Kuz’ma, P.I. Krypyakevich, and D.P. Frankevich, Compounds of the rare earth metals with zinc and their crystal structures, Inorg. Mater. 1 (1965), pp. 1410–1415.
  • A.P. Tsai, A test of Hume-Rothery rules for stable quasicrystals, J. Non. Cryst. Solids 334–335 (2004), pp. 317–322.10.1016/j.jnoncrysol.2003.11.065
  • D.W. Deng, K.H. Kuo, Z.P. Luo, D.J. Miller, M.J. Kramer, and K.W. Dennis, Crystal structure of the hexagonal Zn3MgY phase, J. Alloys Compd. 373 (2004), pp. 156–160.10.1016/j.jallcom.2003.10.039
  • P.I. Kripyakevich, A Systematic Classification of Types of Intermetallic Structures, Consultants Bureau, New York, NY, 1964.
  • K. Schubert, Kristallstrukturen Zweikomponentiger Phasen, Springer, Berlin, 1964.10.1007/978-3-642-94904-3
  • S. Samson, The structure of complex intermetallic compounds, in Structural Chemistry and Molecular Biology, A. Rich and N. Davidson, eds., Freeman, San Francisco, CA, 1969, pp. 687–717.
  • W.B. Pearson, The crystal chemistry and physics of metals and alloys, Wiley, New York, NY, 1972.
  • W. Steurer and J. Dshemuchadse, Intermetallics, Oxford University Press, Oxford, 2016.10.1093/acprof:oso/9780198714552.001.0001
  • P. Schobinger-Papamantellos and P. Fischer, Neutronenbeugungsuntersuchung der Atomverteilung von Mg17Al12, Naturwissenschaften 57 (1970), pp. 128–129.10.1007/BF00600053
  • S. Samson, The crystal structure of the phase β Mg2Al3, Acta Crystallogr. 19 (1965), pp. 401–413.10.1107/S0365110X65005133
  • M. Feuerbacher, C. Thomas, J.P.A. Makongo, S. Hoffmann, W. Carrillo-Cabrera, R. Cardoso, Y. Grin, G. Kreiner, J.-M. Joubert, T. Schenk, J. Gastaldi, H. Nguyen- Thi, N. Mangelinck-Noël, B. Billia, P. Donnadieu, A. Czyrska-Filemonowicz, A. Zielinska-Lipiec, B. Dubiel, T. Weber, P. Schaub, G. Krauss, V. Gramlich, J. Christensen, S. Lidin, D. Fredrickson, M. Mihalkovic, W. Sikora, J. Malinowski, S. Brühne, T. Proffen, W. Assmus, M. de Boissieu, F. Bley, J.-L. Chemin, J. Schreuer, and W. Steurer, The Samson phase, β-Mg2Al3, revisited, Zeitschrift für Krist. 222 ( 2007 ), pp. 259 – 288.
  • K. Nakayama, H. Tsuruta, and Y. Koyama, Formation of giant atomic clusters in the β-Samson (β-Al3Mg2) phase of the Al–Mg alloy system, Acta Mater. 128 (2017), pp. 249–257.10.1016/j.actamat.2017.02.019

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