PACS numbers

62.20.Fe Deformation and plasticity 81.40.Lm Deformation, plasticity, and creep
  1. A.N. Vasil’ev, V.D. Buchel’nikov et alShape memory ferromagnetsPhys. Usp. 46 559–588 (2003)
    62.20.Fe, 75.30.Kz, 75.80.+q, 81.30.Kf (all)
  2. G.A. Malygin “Dislocation self-organization processes and crystal plasticityPhys. Usp. 42 887 (1999)
    61.72.Bb, 62.20.Fe, 83.50.−v (all)
  3. L.V. Al’tshuler, R.F. Trunin et alDevelopment of dynamic high-pressure techniques in RussiaPhys. Usp. 42 261–280 (1999)
    28.70.+y, 47.40.−x, 62.20.Fe (all)
  4. A.I. Funtikov “Explosive laboratory devices for the measurement of the dynamic compressibility of porous substances in the pressure range from 0.1 to 1 TPaPhys. Usp. 40 1067–1068 (1997)
    28.70.+y, 47.40.−x, 62.20.Fe (all)
  5. L.V. Al’tshuler, R.F. Trunin et alExplosive laboratory devices for shock wave compression studiesPhys. Usp. 39 539–544 (1996)
    28.70.+y, 47.40.−x, 62.20.Fe (all)
  6. R.F. Trunin “Shock compressibility of condensed materials in strong shock waves generated by underground nuclear explosionsPhys. Usp. 37 1123–1145 (1994)
    62.20.Fe, 62.10.+s, 47.40.Nm, 28.70.+y (all)
  7. A.N. Vasil’ev, F.M. Maallavi, M.I. Kaganov “Thermoelastic stresses as a mechanism of electromagnetic-acoustic transformationPhys. Usp. 36 (10) 968–979 (1993)
    62.20.Dc, 72.15.Jf, 68.47.De, 68.35.Iv, 68.35.Gy, 62.20.Fe (all)
  8. A.I. Olemskoi, I.A. Sklyar “Evolution of the defect structure of a solid during plastic deformationSov. Phys. Usp. 35 (6) 455–480 (1992)
    62.20.Fe, 61.72.Ji, 61.72.Lk, 61.72.Bb (all)
  9. G.L. Belen’kii, E.Yu. Salaev, R.A. Suleimanov “Deformation effects in layer crystalsSov. Phys. Usp. 31 434–455 (1988)
    62.20.Fe, 62.20.Dc, 65.40.De, 63.20.−e, 61.66.Fn, 71.20.Nr (all)
  10. A.K. Tagantsev “Pyroelectric, piezoelectric, flexoelectric, and thermal polarization effects in ionic crystalsSov. Phys. Usp. 30 588–603 (1987)
    77.70.+a, 77.65.−j, 77.22.Ej, 62.20.Fe, 62.20.Dc (all)
  11. I.M. Barkalov, V.I. Gol’danskii “Autowave propagation of cryrochemical reactions in a solid phaseSov. Phys. Usp. 30 80–81 (1987)
    82.33.Pt, 82.35.−x, 62.20.Mk, 62.20.Fe, 81.40.Gh (all)
  12. A.P. Aleksandrov, Zh.I. Alferov et alSerafim Nikolaevich Zhurkov (on his eightieth birthday)Sov. Phys. Usp. 28 642–643 (1985)
    01.60.+q, 62.20.Mk, 81.40.Np, 62.20.Fe, 81.40.Lm (all)
  13. A.I. Akhiezer, V.G. Bar’yakhtar et alRotational invariance, coupled magnetoelastic waves, and magnetoacoustic resonanceSov. Phys. Usp. 27 641–642 (1984)
    75.80.+q, 72.55.+s, 62.20.Fe, 75.60.Ej, 75.30.Ds, 75.30.Gw (all)
  14. V.R. Regel’ “Some problems of contemporary research on the mechanical properties of crystalsSov. Phys. Usp. 27 547–548 (1984)
    62.20.Fe, 81.40.Lm, 61.72.Lk (all)
  15. V.M. Kontorovich “Dynamic equations of the theory of elasticity of metalsSov. Phys. Usp. 27 134–158 (1984)
    62.20.Dc, 72.15.Lh, 72.50.+b, 62.20.Fe (all)
  16. A.M. Kosevich “How a crystal flowsSov. Phys. Usp. 17 920–930 (1975)
    62.20.Hg, 61.72.Hh, 81.40.Lm, 66.30.Lw, 61.72.Ji, 62.20.Fe (all)
  17. G.A. Askar’yan, V.A. Namiot, M.S. Rabinovich “Use of Ultracompression of Matter by Light Reaction Pressure to Obtain Microcritical Masses of Fissile Elements, Ultrastrong Magnetic Fields, and Particle AccelerationSov. Phys. Usp. 17 605–606 (1975)
    01.10.Fv, 62.20.Fe, 81.40.Lm (all)
  18. G.V. Kurdyumov, N.V. Klassen-Neklyudova “Progress in the theory of strength and plasticity of solids (A review of A. V. Stepanov’s works)Sov. Phys. Usp. 16 828–833 (1974)
    62.20.Fe, 81.40.Lm, 61.72.Hh (all)
  19. M.I. Kaganov, Ya.V. Kravchenko, V.D. Natsik “Dislocation dragging by electrons in metalsSov. Phys. Usp. 16 878–891 (1974)
    61.72.Hh, 74.25.Ld, 62.20.Fe, 81.40.Lm, 62.65.+k (all)
  20. A.L. Roitburd “The theory of the formation of a heterophase structure in phase transformations in solidsSov. Phys. Usp. 17 326–344 (1974)
    81.30.Kf, 65.40.Gr, 64.70.Kb, 62.20.Fe (all)
  21. P.A. Rebinder, E.D. Shchukin “Surface phenomena in solids during the course of their deformation and failureSov. Phys. Usp. 15 533–554 (1973)
    62.20.Fe, 68.35.Gy, 68.35.Md, 68.43.Mn (all)
  22. Sh.M. Kogan “Does an electron fall in a metallic pipe?Sov. Phys. Usp. 14 658–661 (1972)
    71.20.−b, 62.20.Fe, 81.40.Lm (all)
  23. Yu.A. Osip’yan “Interaction of Dislocations with Current Carriers in CrystalsSov. Phys. Usp. 14 543–544 (1972)
    61.72.Lk, 61.72.Hh, 62.20.Fe, 72.20.Jv, 61.72.Ji, 72.20.Fr (all)
  24. F.F. Voronov “The Effect of Pressure on the Elastic Moduli of SolidsSov. Phys. Usp. 14 545–545 (1972)
    62.20.Dc, 62.50.+p, 64.70.Kb, 62.20.Fe, 63.70.+h (all)
  25. P.A. Rebinder, E.D. Shchukin “Physicochemical Phenomena in Processes of Deformation, Failure and Working of SolidsSov. Phys. Usp. 13 670–670 (1971)
    62.20.Fe, 81.40.Lm (all)
  26. A.M. Kosevich, V.S. Boiko “Dislocation theory of the elastic twinning of crystalsSov. Phys. Usp. 14 286–316 (1971)
    61.72.Bb, 62.20.Dc, 61.72.Mm, 62.20.Fe (all)
  27. A.A. Urusovskaya “Electric effects associated with plastic deformation of ionic crystalsSov. Phys. Usp. 11 631–643 (1969)
    62.20.Fe, 81.40.Lm, 66.30.Hs (all)
  28. L.V. Al’tshuler, A.A. Bakanova “Electronic structure and compressibility of metals at high pressuresSov. Phys. Usp. 11 678–689 (1969)
    71.20.Be, 71.20.Dg, 71.20.Eh, 62.50.+p, 62.20.Fe, 81.40.Lm (all)
  29. L.A. Fal’kovskii “Physical properties of bismuthSov. Phys. Usp. 11 1–21 (1968)
    62.20.Fe, 65.40.Ba, 75.30.Cr, 72.15.Eb, 78.30.Er (all)
  30. O.I. Balabekyan “Lev Vasil'evich ShubnikovSov. Phys. Usp. 9 455–459 (1966)
    62.20.Fe, 81.40.Lm (all)
  31. M.V. Klassen-Neklyudova “All-Union conference on dislocations and mechanical properties of crystalsSov. Phys. Usp. 7 755–757 (1965)
    01.30.Cc, 61.72.Bb, 61.72.Hh, 62.20.Hg, 62.20.Mk, 81.40.Lm (all)
  32. M.I. Bessonov “Mechanical failure of solid polymersSov. Phys. Usp. 7 401–418 (1964)
    62.20.Mk, 62.20.Fe, 81.40.Np, 81.40.Lm, 81.70.Bt (all)
  33. E.M. Nadgornyĭ “The properties of whiskersSov. Phys. Usp. 5 462–477 (1962)
    68.70.+w, 81.40.Jj, 81.40.Lm, 61.72.Hh, 75.60.Ch, 79.70.+q (all)
  34. B.Ya. Pines “Diffusion and the mechanical properties of solidsSov. Phys. Usp. 5 251–271 (1962)
    62.20.Hg, 61.72.Hh, 62.20.Dc, 81.40.Lm, 66.30.Fq (all)
  35. A.N. Orlov, V.L. Indenbom “Physical theory of plasticity and strengthSov. Phys. Usp. 5 272–291 (1962)
    62.20.Fe, 81.40.Lm, 61.72.Hh (all)
  36. E.Yu. Kokorish, N.N. Sheftal’ “Dislocations in semiconductor crystalsSov. Phys. Usp. 3 840–849 (1961)
    61.72.Bb, 61.72.Ff, 62.20.Fe, 71.20.Mq, 72.20.Jv, 61.72.Ss (all)
  37. R.I. Garber, I.A. Gindin “The physical properties of metals of high puritySov. Phys. Usp. 4 405–424 (1961)
    72.15.Eb, 62.20.Fe, 62.20.Dc, 81.40.Lm, 81.40.Jj (all)
  38. D.M. Vasil’ev, B.I. Smirnov “Certain X-RAY diffraction methods of investigating cold worked metalsSov. Phys. Usp. 4 226–259 (1961)
    61.10.Nz, 62.20.Fe, 61.72.Nn, 61.66.Bi, 61.72.Ff (all)
  39. R.I. Garber, I.A. Gindin “Physics of the strength of crystalline materialsSov. Phys. Usp. 3 41–77 (1960)
    62.20.Fe, 62.20.Mk, 81.40.Lm, 81.40.Np, 61.72.Lk, 61.72.Mm (all)
  40. E.M. Nadgornyi, Yu.A. Osip’yan et alFilamentary crystals with almost the theoretical strength of perfect crystalsSov. Phys. Usp. 2 282–304 (1959)
    68.70.+w, 81.10.Bk, 62.20.Fe, 62.20.Mk, 62.20.Hg, 61.50.Ah (all)
  41. V.I. Sarrak “Brittle fracture of metalsSov. Phys. Usp. 2 150–164 (1959)
    62.20.Mk, 81.40.Np, 61.72.Hh, 62.20.Fe, 81.40.Lm (all)
  42. V.I. Likhtman, E.D. Shchukin “Physico-chemical phenomena in the deformation of metalsSov. Phys. Usp. 1 91–112 (1958)
    62.20.Fe, 82.80.−d, 81.40.Lm, 62.20.Mk, 61.72.Hh, 81.40.Np (all)
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