Voir la notice du chapitre de livre provenant de la source Math-Net.Ru
[1] Borodai V. G., Garifullin M. F., Golubev N. V., Golovanov A. I., Zakirov R. F., Paimushin V. N., Piskunov A. A., Rogov N. V., Shvetsov V. A., Matematicheskoe modelirovanie v mostostroenii s prilozheniyami k rekonstruktsii mosta cherez r. Kazanku i proektirovaniyu i stroitelstvu mosta cherez r. Kama u s. Sorochi Gory, Kazan, 2003, 380 pp.
[2] Lure A. I., Nelineinaya teoriya uprugosti, M., Nauka, 1980, 512 pp. | MR
[3] Chernykh K. F., Nelineinaya teoriya uprugosti v mashinostroitelnykh raschetakh, L., Mashinostroenie, 1986, 336 pp.
[4] Grin A., Adkins D., Bolshie uprugie deformatsii i nelineinaya mekhanika sploshnoi sredy, M., Mir, 1965, 455 pp. | MR
[5] Hughes, T.J.R., Carnoy, E., “Nonlinear finite element shell formulation accounting for large membrane strains”, Comput. Meth. Appl. Mech. Eng., 39 (1983), 69–82 | DOI | Zbl
[6] Cheng J.H., Kikuchi N., “An analysis of metal forming processes using large deformation elastic-plastic formulations”, Comput. Meth. Appl. Mech. Eng., 49:1 (1985), 71–108 | DOI | Zbl
[7] Vasidzu K., Variatsionnye metody v teorii uprugosti i plastichnosti, M., Mir, 1987, 542 pp.
[8] Golovanov A.I., Berezhnoi D.V., Metod konechnykh elementov v mekhanike deformiruemykh tverdykh tel, Kazan, 2001, 300 pp.