PACS numbers

81.30.Kf Martensitic transformations
  1. Yu.S. Nechaev “The distribution of carbon in steels54 465–471 (2011)
    61.72.−y, 62.20.−x, 81.30.Kf (all)
  2. M.P. Kashchenko, V.G. Chashchina “Dynamic model of supersonic martensitic crystal growth54 331–349 (2011)
    63.20.−e, 64.70.K−, 81.30.Kf (all)
  3. V.D. Buchel’nikov, A.N. Vasil’ev et alMagnetic shape-memory alloys: phase transitions and functional properties49 871–877 (2006)
    01.10.FV, 75.30.Sg, 75.80.+q, 81.30.Kf (all)
  4. V.A. Lobodyuk, E.I. Estrin “Isothermal martensitic transformations48 713–732 (2005)
    64.70.Kb, 81.30.-f, 81.30.Kf (all)
  5. A.N. Vasil’ev, V.D. Buchel’nikov et alShape memory ferromagnets46 559–588 (2003)
    62.20.Fe, 75.30.Kz, 75.80.+q, 81.30.Kf (all)
  6. Zh.I. Alferov, A.F. Andreev et alYurii Andreevich Osip’yan (on his sixtieth birthday)34 (2) 202–203 (1991)
    01.60.+q, 01.10.Cr, 81.30.Kf, 61.72.Hh, 72.30.+q, 74.72.−h (all)
  7. V.G. Vaks, S.P. Kravchuk, A.V. Trefilov “Microscopic theory of anharmonic effects in alkali and bcc alkaline earth metals31 474–476 (1988)
    63.20.Ry, 63.70.+h, 65.40.−b, 62.20.Dc, 64.70.Kb, 81.30.Kf (all)
  8. A.L. Roitburd “The theory of the formation of a heterophase structure in phase transformations in solids17 326–344 (1974)
    81.30.Kf, 65.40.Gr, 64.70.Kb, 62.20.Fe (all)
  9. Yu.A. Izyumov, E.Z. Kurmaev “Physical properties and electronic structure of superconducting compounds with the β-tungsten structure17 356–380 (1974)
    74.25.Jb, 74.70.Ad, 74.25.Bt, 81.30.Kf, 74.62.−c (all)
  10. I.K. Kikoin, Yu.A. Osip’yan et alGEORGII VYACHESLAVOVICH KURDYUMOV (On his seventieth birthday)15 134–137 (1972)
    01.60.+q, 61.66.Dk, 81.30.Kf (all)
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