74b091f5-2d73-4042-b6d4-cc03a8c6a0d920210910065204003naun:naunmdt@crossref.orgMDT DepositInternational Journal of Mechanics1998-444810.46300/9104http://www.naun.org/cms.action?id=2828128202112820211510.46300/9104.2021.15https://www.naun.org/cms.action?id=23280Numerical and Analytical Modeling of Permanent Deformations in Panels Made of Nanomodified Carbon Fiber Reinforced Plastic with Asymmetric PackingS.RadaevMoscow Aviation Institute (National Research University), Moscow, Volokolamskoe shosse 4, 125993, Russian FederationIn this paper, a mathematical model of a multilayer panel made of nanomodified carbon fiber reinforced plastic with asymmetric packing is proposed. The introduction of nanosized particles into the composition of the composite or its components (fiber or binder) allows not only to increase its physical and mechanical properties, but also to improve the picture of the residual stress-strain state. The paper investigates the effect of nanomodification of carbon fiber reinforced plastic on the residual stress-strain state after molding using numerical and analytical methods. Numerous results of computational experiments have been obtained. The results of numerical and analytical modeling are compared with experimental data. Conclusions are drawn about the possibility of reducing the residual stress-strain state in structures with asymmetric reinforcement schemes when using a matrix containing carbon nanoparticles. A mathematical model of a multilayer panel made of nano-modified carbon fiber with asymmetric packing has been built. Investigation of the residual stress-strain state of structural elements made of carbon fiber reinforced plastic made it possible to reveal the possibility of reducing the residual stress-strain state and leash in structures with asymmetric reinforcement schemes when using a matrix containing carbon nanoparticles.9102021910202117218020https://www.naun.org/main/NAUN/mechanics/2021/a402003-020(2021).pdf10.46300/9104.2021.15.20https://www.naun.org/main/NAUN/mechanics/2021/a402003-020(2021).pdf10.1142/s0218625x18501457A. N. Astapov, E. L. Kuznetsova, L. N. Rabinskiy, "Operating capacity of anti-oxidizing coating in hypersonic flows of air plasma," Surface Review and Letters, 26(2), pp. 1850145, 2019. 10.13111/2066-8201.2020.12.s.13L. N. Rabinskiy, O. V. Tushavina, E. I. Starovoitov, "Study of thermal effects of electromagnetic radiation on the environment from space rocket activityб" INCAS Bulletin, 12 (Special Issue), pp. 141–148, 2020. 10.1615/nanoscitechnolintj.2020034207A. V. 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