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67. Kekharsaeva, E. R., Mikitaev, A. K., & Aleroev, T. S. (2001) . Model of Stress - Strain
Characteristics of Chlor - Containing Polyesters on the Basis of Derivatives of Fractional
Order . Plast. Massy, 3 , 35.
68. Novikov, V. U., & Kozlov, G. V. (2000) . Structure and Properties of the Polymers within
the Frameworks of Fractal Approach . Uspekhi Khimii, 69(6) , 572-599.
69. Shogenov, V. N., Kozlov, G. V., & Mikitaev, A. K. (2007) . Prediction of Mechanical
Behavior , Structure and Properties of Film polymer Samples at Quasistatic Tension . In:
Polycondensation Reactions and Polymers. Selected Works. Nal¢chik, KBSU, 252-270.
70. Lur¢e, E. G., & Kovriga, V. V. (1977) . To Question about Unity of Deformation Mecha-
nism and Spontaneous Lengthening of Rigid - Chain Polymers . Mekhanika Polimerov, 4 ,
587-593.
71. Lur¢e, E. G., Kazaryan, L. G., Kovriga, V. V., Uchastkina, E. L., Lebedinskaya, M. L.,
Dobrokhotova, M. L., & Emel¢yanova, L. M. (1970) . The Features of Crystallization and
Deformation of Polyimide Film PM . Plast. Massy. 8 , 59-63.
72. Shogenov, V. N., Kozlov, G. V., & Mikitaev, A. K. (1989) . Prediction of Rigid - Chain
Polymers Mechanical Properties in Elasticity Region . Vysokomolek. Soed. B, 31(7) ,
553-557.
73. Kozlov, G. V., Yanovskii, Yu. G., & Karnet, Yu. N. (2008) . The Generalized Fractal
Model of Amorphous Glassy Polymers Yielding Process . Mekhanika Kompozitsionnykh
Materialov i Konstruktsii, 14(2) , 174-187.
74. Kopelman, R. (1986) . Excitons Dynamics Mentioned Fractal one : Geometrical and En-
ergetic Disorder . In: Fractals in Physics. Ed. Pietronero L., Tosatti E. Amsterdam, Ox-
ford, New York, Tokyo, North-Holland, 524-527.
75. Korshak, V. V., & Vinogradova, S. V. (1972) . Nonequilibrium Polycondensation . Mos-
cow, Nauka, 696 p.
76. Vatrushin, V. E., Dubinov, A. E., Selemir, V. D., & Stepanov, N. V. (1995) . The Analysis
of SHF Apparatus Complexity with Virtual Cathode as Dynamical Objects . In: Fractals
in Applied Physics. Ed. Dubinov A.E. Arzamas-16, VNIIEF, 47-58.
77. Mikitaev, A. K., & Kozlov, G. V. (2008) . Fractal Mechanics of Polymer Materials .
Nal¢chik, Publishers KBSU, 312 p.
78. Kozlov, G. V., Belousov, V. N., & Mikitaev, A. K. (1998) . Description of Solid Polymers
as Quasitwophase Bodies . Fizika i Tekhika Vysokikh Davlenii, 8(1) , 101-107.
79. Aloev, V. Z., Kozlov, G. V., & Beloshenko, V. A. (2001) . Description of Extruded Com-
ponors Structure and Properties within the Frameworks of Fractal Analysis . Izvestiya
VUZov, Severo-Kavkazsk. Region, estesv. nauki, 1, 53-56.
80. Argon, A. S., & Bessonov, M. I. (1977) . Plastic Deformation in Polyimides , with New
Implications on the Theory of Plastic Deformation of Glassy Polymers . Phil. Mag. 35(4) ,
917-933.
81. Beloshenko, V. A., Kozlov, G. V., Slobodina, V. G., Prut, E. U., & Grinev, V. G. (1995) .
Thermal Shrinkage of Extrudates of Ultra - High - Molecular Polyethylene and Polymer-
ization - Filled Compositions on its Basis . Vysokomolek. Soed. B, 37(6) , 1089-1092.
82. Balankin, A. S., Izotov, A. D., & Lazarev, V. B. (1993) . Synergetics and Fractal Thermo-
mechanics of Inorganic Materials . I. Thermomechanics of Multifractals. Neorganicheskie
Materialy, 29(4) , 451-457.
83. Haward, R. N. (1993) Strain Hardening of Thermoplastics. Macromolecules, 26(22) ,
5860-5869.
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