Chemistry Reference
In-Depth Information
84. Balankin, A. S. (1992) . Elastic Properties of Fractals and Dynamics of Solids Brittle
Fracture . Fizika Tverdogo Tela, 34(3б), 1245-1258.
85. Kozlov, G. V., Afaunova, Z. I., & Zaikov, G. E. (2005) . Experimental Estimation of
Multifractal Characteristics of Free Volume for Poly ( vinyl acetate ). Oxidation Commun .
28(4) , 856-862.
86. Hentschel, H. G. E., & Procaccia, I. (1983) . The Infinite Number of Generalized Dimen-
sions of Fractals and Strange Attractors Phys . D., 8(3) , 435-445.
87. Williford, R. E. (1988) . Multifractal Fracture . Scripta Metallurgica, 22(11) , 1749-1754.
88. Kalinchev, E. L., & Sakovtseva, M. B. (1983) . Properties and Processing of Thermoplas-
tics . Leningrad, Khimiya, 288 p.
89. Sanditov, D. S., & Sangadiev, S. Sh. (1988) . About Internal Pressure and Microhardness
of Inorganic Glasses . Fizika i Khimiya Stekla, 24(6) , 741-751.
90. Balankin, A. S. (1991) . The Theoty of Elasticity and Entropic High - Elasticity of Fractals .
Pis¢ma v ZhTF, 17(17) , 68-72.
91. Kozlov, G. V., Gazaev, M. A., Novikov, V. U., & Mikitaev, A. K. (1996) . Simulation of
Amorphous Polymers Structure as Percolation cluster . Ris¢ma v ZhTF, 22(16) , 31-38.
92. Serdyuk, V. D., Kosa, N., & Kozlov, G. V. (1995) . Simulation of Polymers Forced Elas-
ticity Process with the Aid of Dislocation Analoques . Fizika i Tekhnika Vysokikh Davle-
nii, 5(3) , 37-42.
93. Kozlov, G. V. (2002) . The Dependence of Yield Stress on Strain Rate for Semicrystal-
line Polymers . Manuscript disposed to V I N I I I RAN, Moscow, November 1, (1884-
В2002) .
94. Kozlov, G. V., Shetov, R. A., & Mikitaev, A. K. (1987) . Methods of Elasticity Modulus
Measurement in Polymers Impact Tests . Vysokomolek. Soed. A, 29(5) , 1109-1110.
95. Sanditov, D. S., & Kozlov, G. V. (1995) . Anharmonicity of Interatomic and Intermo-
lecular Bonds and Physical - Mechanical Properties of Polymers . Fizika i Khimiya Stekla,
21(6) , 547-576.
96. Belousov, V. N., Kozlov, G. V., Mashukov, N. I., & Lipatov, Yu. S. (1993) . The Applica-
tion of Dislocation Analogues for Yieldin Process Description in Crystallizable Poly-
mers . Doklady AN, 328(6) , 706-708.
97. Aharoni, S. M. (1985) . Correlations between Chain Parameters and Failure Character-
istics of Polymers below their Glass Transition Temperature . Macromolecules, 18(12) ,
2624-2630.
98. Crist, B. (1989) . Yielding of Semicrystalline Polyethylene : a Quantitive Dislocation
Model . Polymer Commun. 30(3) , 69-71.
99. Wu, S. (1989) . Chain Structure and Entanglement . J. Polymer Sci.: Part B: Polymer
Phys., 27(4) , 723-741.
100.Kozlov, G. V., Beloshenko, V. A., & Varyukhin, V. N. (1988) . Simulation of Gross -
Linked Polymers Structure as Diffusion - Limited Aggregate . Ukrainskii Fizicheskii
Zhurnal, 43(3) , 322-323.
101.Brown, N. (1971) . The relationship between Yield Point and Modulus for Glassy Poly-
mers . Mater . Sci. Engng. 8(1) , 69-73.
102.Kozlov, G. V., Shustov, G. B., Aloev, V. Z., & Ovcharenko, E. N. (2002) . Yielding Pro-
cess of Branched Polyethylenes . Proceedings of II All-Russian Sci-Pract. Conf. “Innova-
tions in Mechanical Engineering”. Penza, PSU, 21-23.
Search WWH ::




Custom Search