162
12 Origin and Development of Plasticity Theory
59. I. Oding, Prochnost’ metallov (Strength of metals). (ONTI Publ., Moscow, Leningrad, 1935)
60. F. Odquist, Verfestigung flusseisenahnlichen korpern. Zeitschr. for Angewandte Math. und
Mech. 13(5), 360–363 (1933)
61. V. Panin, Osnovy fizicheskoi mezomekhaniki (Fundamentals of physical mesomechanics).
Fizicheskaya mezomekhanika (Physical mesomechanics) 1(1), 5–22 (1998)
62. L. Prandtl, Ueber die hart plastischer korper. Gottingen Nachrichten (1920), pp. 74–85
63. L. Prandtl, Spannungsverteilung in plastischen korper, in Intern. Congr. for Appl. Mech., Delft.
(1924), pp. 43–54
64. Y. Rabotnov, Polzuchest’ ehlementov konstruktsii (Creep of structural elements). (Nauka Publ.,
Moscow, 1966)
65. Y. Rabotnov (ed.), Teoriya plastichnosti: sb. perev. inostr. statei (Plasticity theory: foreign
translation collection. Articles). (IL Publ., Moscow, 1948)
66. A. Reuss, Vereintachte berechnung der plastischen foamänderung in der plastizitetstheorie, in
Zeitsch. angew. Math. und Mech. Bd. 10. H. 2 (1930), pp. 266–274
67. A. Reuss, Anisotropy caused by strain, in Proc. IV Intern. Congr. for Appl. Mech. (1935)
68. O. Richmond, Plane strain necking of v-notched and un-notched tensile bars. J. Mech. And
Phys. Solids, 17(2), 83–90 (1969)
69. K. Rusinko, E. Blinov, Analiticheskoe issledovanie sootnosheniya napryazhenie–deformatsiya
pri proizvol’noi traektorii nagruzheniya (Analytical study of the ratio stress-strain at an
arbitrary loading path). Mekhanika polimerov (Mechanics of polymers) 6, 981–986 (1971)
70. V. Sapunov, Osnovy teorii plastichnosti i polzuchesti: uchebn. posobie (Fundamentals of the
theory of plasticity and creep: textbook. stipend). (Mosk. inzh.-fiz. in-t Publ., Moscow, 2008)
71. V. Sapunov, Teoriya plastichnosti: ucheb. posobie (Theory of plasticity: textbook. stipend).
(NIYAU MIFI Publ., Moscow, 2010)
72. D. Si, Mezomekhanika, ponyatie segmentatsii i mul’tiskeilingovyi podkhod: nano-mikro-makro
(Mesomechanics, the concept of segmentation and a multi-skaling approach: nano-micromacro). Fizicheskaya mezomekhanika (Physical mesomechanics) 11(3), 5–18 (2008)
73. S. Sobolev, The problem of propagation of plastical state, in Works Seismological Institute of
the USSR Academy of Sciences, no. 49 (1935), pp. 28–39
74. S. Timoshenko, Istoriya nauki o soprotivlenii materialov s kratkimi svedeniyami iz istorii
teorii uprugosti i teorii sooruzhenii. 2-e izd. (History of resistance science materials with brief
information from the history of the theory of elasticity and the theory of structures. The 2nd
prod.). (Moscow, GITTL Publ., 1935)
75. Tomas, The general theory of compatibility conditions. Jnt. I. Eng. Sc. 4(3), 207–233 (1966)
76. K. Valanis, A theory of viscoplasticity without a yield surfaces. Arch. Mech. stosow. 23(4),
517–551 (1971)
77. K. Valanis, Obosnovanie ehndokhronnoi teorii plastichnosti metodami mekhaniki sploshnoi
sredy (Substantiation of the endochronous theory of plasticity by methods of continuum mechanics). Tr. ASME. Teoreticheskie osnovy inzhenernykh raschetov (Work ASME. Theoretical
foundations of engineering calculations), no.4, vol. 106, (1984), pp. 72–81
78. K. Valanis, J. Fan, Plastycity today: modelling. meth. And apl. London–New York, Cambridge
University Press, chapter Experimental verification of endochronic plasticy in Spatially varying
strain fields (1985), pp. 153–174
79. N. Verveiko, A. Kuptsov, Pole skorostei prostranstvennoi staticheski opredelimoi zadachi
ideal’noi plastichnosti (The velocity field of a statically determinate problem of ideal plasticity). Vestnik VGU. Seriya fiz.-matem. (VSU Bulletin. Series Phys.-mod.) 2, 174–179 (2006)
80. M.H. Yu, The Generalized Plasticity (Springer, Berlin, 2006)
81. V. Zubchaninov, Osnovy teorii uprugosti i plastichnosti (Fundamentals of the theory of
elasticity and plasticity). (Vyssh. shk. Publ., Moscow, 1990)
82. V. Zubchaninov, Problemy mekhaniki deformiruemogo tverdogo tela: sb. nauchn. tr. (Problems
of mechanics of a deformable solid: Sat. scientific tr). SPb, SPBGU Publ., chapter Gipoteza
ortogonal’nosti v teorii plastichnosti (Orthogonality hypothesis in the theory of plasticity)
(2002), pp. 137–140
12 Origin and Development of Plasticity Theory
59. I. Oding, Prochnost’ metallov (Strength of metals). (ONTI Publ., Moscow, Leningrad, 1935)
60. F. Odquist, Verfestigung flusseisenahnlichen korpern. Zeitschr. for Angewandte Math. und
Mech. 13(5), 360–363 (1933)
61. V. Panin, Osnovy fizicheskoi mezomekhaniki (Fundamentals of physical mesomechanics).
Fizicheskaya mezomekhanika (Physical mesomechanics) 1(1), 5–22 (1998)
62. L. Prandtl, Ueber die hart plastischer korper. Gottingen Nachrichten (1920), pp. 74–85
63. L. Prandtl, Spannungsverteilung in plastischen korper, in Intern. Congr. for Appl. Mech., Delft.
(1924), pp. 43–54
64. Y. Rabotnov, Polzuchest’ ehlementov konstruktsii (Creep of structural elements). (Nauka Publ.,
Moscow, 1966)
65. Y. Rabotnov (ed.), Teoriya plastichnosti: sb. perev. inostr. statei (Plasticity theory: foreign
translation collection. Articles). (IL Publ., Moscow, 1948)
66. A. Reuss, Vereintachte berechnung der plastischen foamänderung in der plastizitetstheorie, in
Zeitsch. angew. Math. und Mech. Bd. 10. H. 2 (1930), pp. 266–274
67. A. Reuss, Anisotropy caused by strain, in Proc. IV Intern. Congr. for Appl. Mech. (1935)
68. O. Richmond, Plane strain necking of v-notched and un-notched tensile bars. J. Mech. And
Phys. Solids, 17(2), 83–90 (1969)
69. K. Rusinko, E. Blinov, Analiticheskoe issledovanie sootnosheniya napryazhenie–deformatsiya
pri proizvol’noi traektorii nagruzheniya (Analytical study of the ratio stress-strain at an
arbitrary loading path). Mekhanika polimerov (Mechanics of polymers) 6, 981–986 (1971)
70. V. Sapunov, Osnovy teorii plastichnosti i polzuchesti: uchebn. posobie (Fundamentals of the
theory of plasticity and creep: textbook. stipend). (Mosk. inzh.-fiz. in-t Publ., Moscow, 2008)
71. V. Sapunov, Teoriya plastichnosti: ucheb. posobie (Theory of plasticity: textbook. stipend).
(NIYAU MIFI Publ., Moscow, 2010)
72. D. Si, Mezomekhanika, ponyatie segmentatsii i mul’tiskeilingovyi podkhod: nano-mikro-makro
(Mesomechanics, the concept of segmentation and a multi-skaling approach: nano-micromacro). Fizicheskaya mezomekhanika (Physical mesomechanics) 11(3), 5–18 (2008)
73. S. Sobolev, The problem of propagation of plastical state, in Works Seismological Institute of
the USSR Academy of Sciences, no. 49 (1935), pp. 28–39
74. S. Timoshenko, Istoriya nauki o soprotivlenii materialov s kratkimi svedeniyami iz istorii
teorii uprugosti i teorii sooruzhenii. 2-e izd. (History of resistance science materials with brief
information from the history of the theory of elasticity and the theory of structures. The 2nd
prod.). (Moscow, GITTL Publ., 1935)
75. Tomas, The general theory of compatibility conditions. Jnt. I. Eng. Sc. 4(3), 207–233 (1966)
76. K. Valanis, A theory of viscoplasticity without a yield surfaces. Arch. Mech. stosow. 23(4),
517–551 (1971)
77. K. Valanis, Obosnovanie ehndokhronnoi teorii plastichnosti metodami mekhaniki sploshnoi
sredy (Substantiation of the endochronous theory of plasticity by methods of continuum mechanics). Tr. ASME. Teoreticheskie osnovy inzhenernykh raschetov (Work ASME. Theoretical
foundations of engineering calculations), no.4, vol. 106, (1984), pp. 72–81
78. K. Valanis, J. Fan, Plastycity today: modelling. meth. And apl. London–New York, Cambridge
University Press, chapter Experimental verification of endochronic plasticy in Spatially varying
strain fields (1985), pp. 153–174
79. N. Verveiko, A. Kuptsov, Pole skorostei prostranstvennoi staticheski opredelimoi zadachi
ideal’noi plastichnosti (The velocity field of a statically determinate problem of ideal plasticity). Vestnik VGU. Seriya fiz.-matem. (VSU Bulletin. Series Phys.-mod.) 2, 174–179 (2006)
80. M.H. Yu, The Generalized Plasticity (Springer, Berlin, 2006)
81. V. Zubchaninov, Osnovy teorii uprugosti i plastichnosti (Fundamentals of the theory of
elasticity and plasticity). (Vyssh. shk. Publ., Moscow, 1990)
82. V. Zubchaninov, Problemy mekhaniki deformiruemogo tverdogo tela: sb. nauchn. tr. (Problems
of mechanics of a deformable solid: Sat. scientific tr). SPb, SPBGU Publ., chapter Gipoteza
ortogonal’nosti v teorii plastichnosti (Orthogonality hypothesis in the theory of plasticity)
(2002), pp. 137–140
