[1] J. Andrusik and K. Rusinko, Plastic strain of work-hardening
materials under loading in three-dimensional subspace of
five-dimensional stress-deviator space, (in Russian), Izv. RAN
(Russian Academy of Sciences), Mekh. Tverd. Tela 2 (1993), 92-101.
[2] R. J. Asaro and J. R. Rice, Strain localization in ductile single
crystals, Journal of the Mechanics and Physics of Solids 25 (1977),
309-338.
[3] R. J. Asaro, Micromechanics of crystals and polycrystals, Advances
in Applied Mechanics 23 (1983), 1-115.
[4] R. J. Asaro, Crystal plasticity, Journal of Applied Mechanics 501
(1983), 921-934.
[5] J. Betten, Creep Mechanics, Springer, Berlin, 2005.
[6] J. L. Chaboche, Unified Cyclic Viscoplastic Constitutive
Equations: Development, Capabilities, and Thermodynamic Frame Work,
Unified Constitutive Laws of Plastic Deformation, Krausz and Kraus
zeds, Academic Press, 1996.
[7] J. L. Chaboche, P. M. Lesne and J. F. Maire, Thermodynamic
formulation of constitutive equations and applications to the
viscoplasticity and viscoelasticity of metals and polymers, Int. J.
Solid and Structures 1997.
[8] J. Chakrabarty, Applied Plasticity, Springer-Verlag, New
York/Berlin/Heidelberg, 2000.
[9] W. F. Chen and D. J. Han, Plasticity for Structural Engineers, New
York, 1988.
[10] J. Hutchinson, Plasticity at the micron scale, Int. J. Solids and
Structures 37 (2000), 225-238.
[11] A. A. Ilyushin, Plasticity, Moscow, 1963.
[12] L. Kuksa, A. Lebedev and B. Koval’chuk, Laws of
distribution of microscopic strains in two-phase polycrystalline
alloys under simple and complex loading, Strength of Materials 18
(1986), 1-5.
[13] D. McLean, Mechanical Properties of Metals and Alloys, John
Wiley, New York and London, 1977.
[14] S. Nemat-Nasser and T. Okinaka, A new computational approach to
crystal plasticity: fcc single crystal, Int. J. Mech. Mater. 24
(1996), 43-57.
[15] Y. Ohashi, M. Kawai and T. Momose, Effects of prior plasticity on
subsequent creep of type 316 stainless steel at elevated temperature,
J. Eng. Mater. Technol.(Trans. ASME) 108 (1986), 68-74.
[16] D. Peirce, R. J. Asaro and A. Needleman, Material rate dependence
and localized deformation in crystalline solids, Acta Metallurgica 31
(1983), 1951-1983.
[17] Y. Rabotnov, Creep Problems in Structural Members, Amsterdam,
North Holland/London, 1969.
[18] A. Rusinko, Creep with temperature hardening, J. Materials
Science 33 (1997), 813-817.
[19] A. Rusinko, Bases and Advances of the Synthetic Theory of
Irreversible Deformation, 22nd International Congress of Theoretical
and Applied Mechanics (ICTAM) 25-29 August 2008, Adelaide, Australia,
2008.
[20] A. Rusinko, Plastic-Creep Deformation Interrelation, 7-th
EUROMECH Solid Mechanics Conference 7-11 September 2009, Lisbon,
Portugal, 2009.
[21] A. Rusinko and K. Rusinko, Synthetic theory of irreversible
deformation in the context of fundamental bases of plasticity, Int. J.
Mech. Mater. 41 (2009), 106-120.
[22] E. Ruszinko, The influence of preliminary mechanical-thermal
treatment on the plastic and creep deformation of turbine disks,
MECCANICA 43 (2009), 13-24.