37 citations to https://www.mathnet.ru/rus/mms1
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А. Т. Ильичев, “Устойчивость уединенных волн в мембранных трубах: слабонелинейный анализ”, ТМФ, 193:2 (2017), 214–224
; A. T. Il'ichev, “Stability of solitary waves in membrane tubes: A weakly nonlinear
analysis”, Theoret. and Math. Phys., 193:2 (2017), 1593–1601
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И. Б. Бахолдин, “Исследование моделей, описывающих распространение волн в трубе с упругими стенками при наличии заполнения ее жидкостью и газом”, Препринты ИПМ им. М. В. Келдыша, 2017, 51–32
[I. B. Bakholdin, “Investigation of models that describe wave propagation in fluid-filled and gas-filled tubes with elastic walls”, Keldysh Institute preprints, 2017, 51–32
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I.B. Bakholdin, “Application of the theory of reversible discontinuities to the investigation of equations describing waves in tubes with elastic walls”, Journal of Applied Mathematics and Mechanics, 81:5 (2017), 409
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Y.B. Fu, J.L. Liu, G.S. Francisco, “Localized bulging in an inflated cylindrical tube of arbitrary thickness – the effect of bending stiffness”, Journal of the Mechanics and Physics of Solids, 90 (2016), 45
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А. Т. Ильичев, “Солитоноподобные структуры на поверхности раздела вода–лед”, УМН, 70:6(426) (2015), 85–138
; A. T. Il'ichev, “Soliton-like structures on a water-ice interface”, Russian Math. Surveys, 70:6 (2015), 1051–1103
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Y. B. Fu, P. Ciarletta, “Buckling of a coated elastic half-space when the coating and substrate have similar material properties”, Proc. Roy. Soc. A, 471:2178 (2015), 20140979, 20 pp.
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A. T. Il'ichev, Y. B. Fu, “Stability of an inflated hyperelastic membrane tube with localized wall thinning”, Internat. J. Engrg. Sci., 80 (2014), 53–61