Keywords: reinforcement, shells flat, plates, layer-fiber reinforcement, steady creepage.
@article{VSGTU_2010_120_1_a7,
author = {A. P. Yankovskii},
title = {Calculation of {Steady} {Creepage} of {Metal-Composit} {Flat} {Shells} of {Layer-Fibrous} {Structure}},
journal = {Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences},
pages = {71--83},
year = {2010},
volume = {120},
number = {1},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/VSGTU_2010_120_1_a7/}
}
TY - JOUR AU - A. P. Yankovskii TI - Calculation of Steady Creepage of Metal-Composit Flat Shells of Layer-Fibrous Structure JO - Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences PY - 2010 SP - 71 EP - 83 VL - 120 IS - 1 UR - http://geodesic.mathdoc.fr/item/VSGTU_2010_120_1_a7/ LA - ru ID - VSGTU_2010_120_1_a7 ER -
%0 Journal Article %A A. P. Yankovskii %T Calculation of Steady Creepage of Metal-Composit Flat Shells of Layer-Fibrous Structure %J Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences %D 2010 %P 71-83 %V 120 %N 1 %U http://geodesic.mathdoc.fr/item/VSGTU_2010_120_1_a7/ %G ru %F VSGTU_2010_120_1_a7
A. P. Yankovskii. Calculation of Steady Creepage of Metal-Composit Flat Shells of Layer-Fibrous Structure. Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, Tome 120 (2010) no. 1, pp. 71-83. http://geodesic.mathdoc.fr/item/VSGTU_2010_120_1_a7/
[1] Yu. V. Nemirovskii, A. P. Yankovskii, “Ustanovivshayasya polzuchest sloisto-voloknistykh izgibaemykh metallokompozitnykh plastin”, Vestn. Sam. gos. tekhn. un-ta. Ser. Fiz.-mat. nauki, 2008, no. 2(17), 66–76 | DOI
[2] Yu. V. Nemirovskii, A. P. Yankovskii, “The steady creeping compound reinforced metal-composites layer-plates at the transverse-longitudinal bending”, Composite Mechanics and Design, 45:1 (2009), 59–82
[3] L. M. Kachanov, Teoriya polzuchesti, Fizmatgiz, M., 1960
[4] Yu. V. Nemirovskii, A. P. Yankovskii, “Teploprovodnost voloknistykh obolochek”, Teplofizika i aeromekhanika, 5:2 (1998), 215–235
[5] Ya. M. Grigorenko, Izotropnye i anizotropnye sloistye obolochki vrascheniya peremennoi zhestkosti, Naukova dumka, Kiev, 1973 | Zbl
[6] Yu. V. Nemirovskii, A. P. Yankovskii, “Certain properties of the equations of shells reinforced with constant cross section fibers”, Composite Mechanics and Design, 3:2 (1997), 17–31
[7] E. Kamke, Spravochnik po differentsialnym uravneniyam v chastnykh proizvodnykh pervogo poryadka, Nauka, M., 1966, 260 pp. | Zbl
[8] Yu. V. Nemirovskii, A. P. Yankovskii, “Thermoelastoplastic deformation of complexly reinforced shells”, Mechanics of Composite Materials, 42:6 (2006), 491–506 | DOI
[9] Yu. V. Nemirovskii, A. P. Yankovskii, “Termouprugoplasticheskii izgib sloisto-voloknistykh plastin”, Mekhanika kompozitsionnykh materialov i konstruktsii, 11:4 (2005), 467–493
[10] G. S. Pisarenko, N. S. Mozharovskii, Uravneniya i kraevye zadachi teorii plastichnosti i polzuchesti, Sprav. posob, Naukova dumka, Kiev, 1981, 496 pp. | MR
[11] Kompozitsionnye materialy, Spravochn., ed. D. M. Karpinos, Naukova dumka, Kiev, 1985, 592 pp.
[12] O. V. Sosnin, “O polzuchesti slabo uprochnyayuschikhsya materialov pri nestatsionarnykh temperaturno-silovykh rezhimakh”, Probl. prochnosti, 1972, no. 1, 74–77