Закономерности эволюции дислокационных субструктур в сталях при усталости
Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, Tome 27 (2004) no. 27, pp. 185-192 Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

@article{VSGTU_2004_27_27_a39,
     author = {O. V. Sosnin and A. V. Gromova and \'E. V. Kozlov and Yu. F. Ivanov and S. V. Konovalov},
     title = {{\CYRZ}{\cyra}{\cyrk}{\cyro}{\cyrn}{\cyro}{\cyrm}{\cyre}{\cyrr}{\cyrn}{\cyro}{\cyrs}{\cyrt}{\cyri} {\cyrerev}{\cyrv}{\cyro}{\cyrl}{\cyryu}{\cyrc}{\cyri}{\cyri} {\cyrd}{\cyri}{\cyrs}{\cyrl}{\cyro}{\cyrk}{\cyra}{\cyrc}{\cyri}{\cyro}{\cyrn}{\cyrn}{\cyrery}{\cyrh} {\cyrs}{\cyru}{\cyrb}{\cyrs}{\cyrt}{\cyrr}{\cyru}{\cyrk}{\cyrt}{\cyru}{\cyrr} {\cyrv}~{\cyrs}{\cyrt}{\cyra}{\cyrl}{\cyrya}{\cyrh} {\cyrp}{\cyrr}{\cyri} {\cyru}{\cyrs}{\cyrt}{\cyra}{\cyrl}{\cyro}{\cyrs}{\cyrt}{\cyri}},
     journal = {Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences},
     pages = {185--192},
     year = {2004},
     volume = {27},
     number = {27},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/VSGTU_2004_27_27_a39/}
}
TY  - JOUR
AU  - O. V. Sosnin
AU  - A. V. Gromova
AU  - É. V. Kozlov
AU  - Yu. F. Ivanov
AU  - S. V. Konovalov
TI  - Закономерности эволюции дислокационных субструктур в сталях при усталости
JO  - Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences
PY  - 2004
SP  - 185
EP  - 192
VL  - 27
IS  - 27
UR  - http://geodesic.mathdoc.fr/item/VSGTU_2004_27_27_a39/
LA  - ru
ID  - VSGTU_2004_27_27_a39
ER  - 
%0 Journal Article
%A O. V. Sosnin
%A A. V. Gromova
%A É. V. Kozlov
%A Yu. F. Ivanov
%A S. V. Konovalov
%T Закономерности эволюции дислокационных субструктур в сталях при усталости
%J Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences
%D 2004
%P 185-192
%V 27
%N 27
%U http://geodesic.mathdoc.fr/item/VSGTU_2004_27_27_a39/
%G ru
%F VSGTU_2004_27_27_a39
O. V. Sosnin; A. V. Gromova; É. V. Kozlov; Yu. F. Ivanov; S. V. Konovalov. Закономерности эволюции дислокационных субструктур в сталях при усталости. Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, Tome 27 (2004) no. 27, pp. 185-192. http://geodesic.mathdoc.fr/item/VSGTU_2004_27_27_a39/

[1] Laird C. Fatigue, Physical Metallurgy, eds. R. W. Cahn, P. Haasen, 1966

[2] Ivanova V. S., Terentev V. F., Priroda ustalosti metallov, Metallurgiya, M., 1975

[3] Laird C., Charsley P., Mughrabi H., “Low energy dislocation structure produced by cyclic deformation”, Mat. Sci. and Eng., 81 (1986), 433–450 | DOI

[4] Kuhlmann-Wilsdorf D., “Energy mininuzation of dislocation in low – energy dislocation structures”, Phys. Staf. Sol. (a), 104 (1987), 121–144 | DOI

[5] Kotsanda S., Ustalostnoe rastreskivanie metallov, Metallurgiya, M., 1990

[6] Koneva N. A., Kozlov E. V., “Fizicheskaya priroda stadiinosti plasticheskoi deformatsii”, Izv. VUZov. Fizika, 1990, no. 2, 89–108

[7] Koneva N. A., Kozlov E. V., Trishkina L. I., “Klassifikatsiya dislokatsionnykh substruktur”, Metallofizika, 13:10 (1991), 49–58

[8] Koneva N. A., Sosnin O. V., Teplyakova L. A. i dr., Evolyutsiya dislokatsionnykh substruktur pri ustalosti, Izd. SibGIU, Novokuznetsk, 2001

[9] Winter A. T., “Etching studies of dislocation microstructures in crystals of copper fatigued at low constant plastic strain amplitude”, Phil. Mag., 28:1 (1973), 57–64 | DOI

[10] Antonopoulos J. G., Winter A. T., “Weak-beam study of dislocations structures in fatigued copper”, Phil. Mag., 33:1 (1976), 87–95 | DOI

[11] Woods P. J., “Low-amplitude fatigue of copper and copper – 5 at % $\mathrm{Al}$ single crystals”, Phil. Mag., 28 (1973), 155–191 | DOI

[12] Ackermann F., Kubin L. P., Lepinoux J., Mugrabi H., “The dependence of dislocation microstructure on plastic strain amplitude in cyclically strained copper single crystals”, Acta Met., 32:5 (1984), 715–725 | DOI

[13] Fridel Zh., Dislokatsii, Mir, M., 1967

[14] Khirt Dzh., Lote I., Teoriya dislokatsii, Atomizdat, M., 1972

[15] Endryus K., Daison D., Kloun S., Elektrogrammy i ikh interpretatsiya, Mir, M., 1971

[16] Chernyavskii K. S., Stereologiya v metallovedenii, Metallurgiya, M., 1977

[17] Utevskii L. M., Difraktsionnaya elektronnaya mikroskopiya v metallovedenii, Metallurgiya, M., 1973

[18] Sosnin O. V., Gromov V. E., Kozlov E. V. i dr., Elektrostimulirovannaya malotsiklovaya ustalost, Nedra, M., 2000

[19] Likhachev V. A., “Fiziko-mekhanicheskie modeli razrusheniya”, Modeli mekhaniki sploshnoi sredy, SO AN SSSR, ITPM, Novosibirsk, 1983, 255–277

[20] Rybin V. V., Bolshie plasticheskie deformatsii i razrushenie metallov, Metallurgiya, M., 1986

[21] Kozlov E. V., Teplyakova L. A., Trishkina L. I. i dr., “Substruktura i zakonomernosti razvitiya mikrotreschin”, Prochnost i razrushenie geterogennykh materialov, FTI, Leningrad, 1990, 3–23

[22] Koneva N. A., Trishkina L. I., Kozlov E. V., “Evolyutsiya struktury i zarozhdenie razrusheniya”, Sovremennye voprosy fiziki i mekhaniki materialov, SpbGU, S.-Peterburg, 1997, 322–332