Page 316 - Кулик В.В.
P. 316
316
PostProcessing Annealing. Materials Science and Engineering: A. 2008. Vol. 488.
P. 554–561.
97. Izotov V.I., Pozdnyakov V.A., Luk’yanenko E.V., et al. Evolution of
the Dislocation Structure and the For mation of Fatigue Microcracks in Pearlitic–
Ferritic Steels. Physics of Metals and Metallography. 2008. Vol. 105, No. 5. P.
517–527.
98. Izotov V.I., Getmanova M.E., Burzhanov A.A., et al. Effect of the
Pearlitic Steel Structure on the Mechanical Properties and Fracture upon Loading
by Static Bending. Physics of Metals and Metallography. 2009. Vol. 108, No 6. P.
606–615.
99. Izotov V.I., Filippov G.A. Dislocation Structure under the Surfaces of
Cracks (Fracture Surfaces) of Different Nature in Pearlitic–Ferritic Steels. Physics
of Metals and Metallography. 2003. Vol. 95, No 6. P. 597–601.
100. Izotov V.I., Filippov G.A. Expert Estimation of Exploitation Damages
of Railway Wheels. Deformat. Razrush. Mater. 2005. No 8. P. 2–7.
101. Sosnin O.V., Gromova A.V., Kozlov E.V., et al. Regularities of
Evolution of Dislocation Substructures in Steels upon Fatigue. Deform. Razrush.
Mater. 2005. No 2. P. 14–19.
102. Dollar M., Bernstein I.M., Daeubler M., Thompson A.W. The Effect
of Cyclic Loading on the Dislocation Structure of Fully Pearlitic Steel.
Metallurgical Transactions A. 2009. Vol. 20, No 3. P. 447–451.
103. Sosnin O.V., Ivanov Yu.F., Gromov V.E., et al. Evolution of Ferritic–
Pearlitic Structure under the Pulsed Current Influence. Fiz. Khim. Obrab. Mater.
2003. No 4. P. 63–69.
104. Sosnin O.V., Gromova A.V., Suchkova E.Yu., et al. The Structural
Phase State Changes under the Pulse Current Influence on the Fatigue Loaded
Steel. International Journal of Fatigue. 2005. Vol. 27. P. 1221–1226.
105. Sosnin O.V., Tsellermaer V.V., Ivanov Yu.F., et al. Evolution of the
Structure and Carbon Atom Transfer in the Zone of Fatigue Crack Growth in
Ferritic–Pearlitic Steel. Russian Physics Journal. 2003. Vol. 46, No 10. P. 1047–