A mathematical model of rheological deformation and fracture for thick-walled pipe
Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, no. 6 (1998), pp. 23-34.

Voir la notice de l'article provenant de la source Math-Net.Ru

@article{VSGTU_1998_6_a3,
     author = {V. P. Radchenko and S. N. Kubyshkina},
     title = {A mathematical model of  rheological deformation and fracture for thick-walled pipe},
     journal = {Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences},
     pages = {23--34},
     publisher = {mathdoc},
     number = {6},
     year = {1998},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/VSGTU_1998_6_a3/}
}
TY  - JOUR
AU  - V. P. Radchenko
AU  - S. N. Kubyshkina
TI  - A mathematical model of  rheological deformation and fracture for thick-walled pipe
JO  - Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences
PY  - 1998
SP  - 23
EP  - 34
IS  - 6
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/VSGTU_1998_6_a3/
LA  - ru
ID  - VSGTU_1998_6_a3
ER  - 
%0 Journal Article
%A V. P. Radchenko
%A S. N. Kubyshkina
%T A mathematical model of  rheological deformation and fracture for thick-walled pipe
%J Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences
%D 1998
%P 23-34
%N 6
%I mathdoc
%U http://geodesic.mathdoc.fr/item/VSGTU_1998_6_a3/
%G ru
%F VSGTU_1998_6_a3
V. P. Radchenko; S. N. Kubyshkina. A mathematical model of  rheological deformation and fracture for thick-walled pipe. Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, no. 6 (1998), pp. 23-34. http://geodesic.mathdoc.fr/item/VSGTU_1998_6_a3/

[1] Radchenko V. P., “Energeticheskii variant odnoosnoi teorii polzuchesti i dlitelnoi prochnosti”, PMTF, 1991, no. 4, 172–179

[2] Radchenko V. P., Kichaev E. K., “Fenomenologicheskaya reologicheskaya model i kriterii razrusheniya metallov pri odnoosnom napryazhennom sostoyanii”, Problemy prochnosti, 1991, no. 11, 13–19

[3] Radchenko V. P., “Matematicheskaya model neuprugogo deformirovaniya i razrusheniya metallov pri polzuchesti energeticheskogo tipa”, Vestn. SamGTU. Ser. “Fiz.-mat. nauki”, 4 (1996), 43–63 | DOI

[4] Lokoschenko A. M., Shesterikov S. A., “Standartizatsiya kriteriev dlitelnoi prochnosti”, Unifitsirovannye metody opredeleniya polzuchesti i dlitelnoi prochnosti, 7, Izd-vo standartov, M., 1986, 3–15

[5] Lokoschenko A. M., “Dlitelnaya prochnost metallov pri slozhnom napryazhennom sostoyanii”, Problemy prochnosti, 1983, no. 8, 55–59

[6] Kachanov L. M., Teoriya polzuchesti, Fizmatgiz, M., 1960, 455 pp.

[7] Malinin N. N., Prikladnaya teoriya plastichnosti i polzuchesti, Mashinostroenie, M., 1975, 400 pp.

[8] Rabotnov Yu. N., Polzuchest elementov konstruktsii, Nauka, M., 1966, 752 pp.

[9] Stasenko V. I., “Ustanovivshayasya polzuchest tolstostennoi truby”, Izv. vuzov. Mashinostroenie, 1974, no. 2, 14–17

[10] Stasenko V. I., “Ustanovivshayasya polzuchest tolstostennoi truby pri deistvii vnutrennego davleniya i izgibayuschego momenta”, Izv. vuzov. Mashinostroenie, 1973, no. 8, 18–22

[11] Ilyushin A. A., Plastichnost, Gostekhizdat, M., 1948, 376 pp.

[12] Kachanov L. M., Osnovy mekhaniki razrusheniya, Nauka, M., 1974, 312 pp.

[13] Loginov O. A., “Rasprostranenie fronta razrusheniya v tolstostennoi trube v usloviyakh polzuchesti”, Nadezhnost i prochnost mashinostroitelnykh konstruktsii, Sb. nauch. tr., KPtI, Kuibyshev, 1981, 61–67

[14] Gorev B. V., Tsvelobud I. Yu., “Primenenie energeticheskikh uravnenii polzuchesti k raschetu tolstostennoi tsilindricheskoi truby”, Dinamika sploshnoi sredy, 17, In-t gidrodinamiki SO AN SSSR, Novosibirsk, 1974, 99–105

[15] Namestnikova I. V., Shesterikov S. A., “Primenenie vektornoi kharakteristiki povrezhdennosti k raschetu na prochnost diska i tolstostennoi truby v usloviyakh polzuchesti”, Deformirovanie i razrushenie tverdykh tel, Izd-vo MGU, M., 1985, 53–67

[16] Mironova S. N., “Reshenie zadachi uprugoplasticheskogo deformirovaniya i razrusheniya tolstostennoi truby na osnovanii endokhronnoi teorii plastichnosti”, Vestn. SamGTU. Ser. “Fiz.-mat. nauki”, 4, SamGTU, Samara, 1996, 85–92 | DOI

[17] Zverkov B. V., “Dlitelnaya prochnost trub pri slozhnykh nagruzheniyakh”, Teploenergetika, 1958, no. 3, 51–54

[18] Kats Sh. M., “Issledovanie dlitelnoi prochnosti uglerodistykh trub”, Teploenergetika, 1955, no. 11, 37–40

[19] Laguntsov I. P., Svyatoslavov V. K., “Ispytanie paroperegrevatelnykh trub iz stali 12XMF na dlitelnuyu prochnost”, Teploenergetika, 1959, no. 7, 55–59

[20] Liberman L. Ya., Peisikhis M. I., Spravochnik po svoistvam stalei, primenyaemykh v kotloturbostroenii, Mashgiz, M., 1958, 302 pp.

[21] Bulygin I. P. i dr., Atlas diagramm rastyazheniya pri vysokikh temperaturakh, krivye polzuchesti i dlitelnoi prochnosti stalei i splavov dlya dvigatelei, Oborongiz, M., 1953, 173 pp.

[22] Sdobyrev V. P., “Dlitelnaya prochnost splava EI437B pri slozhnom napryazhennom sostoyanii”, Izv. AN SSSR. OTN, 1958, no. 4, 92–97

[23] Lebedev A. A., “Obobschennyi kriterii dlitelnoi prochnosti”, Termodinamika materialov i konstruktsii, Sb. nauch. tr., Naukova dumka, Kiev, 1965, 69–76