The adhesive composition with additives of carbon nanomaterials for aircraft structures based on polymer composites
Učënye zapiski Kazanskogo universiteta. Seriâ Fiziko-matematičeskie nauki, Uchenye Zapiski Kazanskogo Universiteta. Seriya Fiziko-Matematicheskie Nauki, Tome 157 (2015) no. 3, pp. 148-152 Cet article a éte moissonné depuis la source Math-Net.Ru

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In the given work, the possibility for application of the nanomodified adhesive composition (NAC) in aircraft structures is investigated. It is shown by computer modeling with the quantum mechanics method that open edged carbon nanotubes are an effective additive for increasing of the shear mechanical parameters of the adhesive composition based on the epoxy matrix. It is found by the method of nanoindentation that addition of carbon nanotubes into the adhesive composition increases its reduced modulus of elasticity by 20–25 %. It is experimentally demonstrated that application of NAC in bolted joints increases their strength by 18 % and fatigue life up to 4 times.
Keywords: modeling, composite materials, nanomodified adhesive composition, nanoindentation, strength, bolted joints.
Mots-clés : nanotubes
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     title = {The adhesive composition with additives of carbon nanomaterials for aircraft structures based on polymer composites},
     journal = {U\v{c}\"enye zapiski Kazanskogo universiteta. Seri\^a Fiziko-matemati\v{c}eskie nauki},
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S. A. Titov; V. D. Vermel; Yu. V. Kornev; E. A. Nikitina. The adhesive composition with additives of carbon nanomaterials for aircraft structures based on polymer composites. Učënye zapiski Kazanskogo universiteta. Seriâ Fiziko-matematičeskie nauki, Uchenye Zapiski Kazanskogo Universiteta. Seriya Fiziko-Matematicheskie Nauki, Tome 157 (2015) no. 3, pp. 148-152. http://geodesic.mathdoc.fr/item/UZKU_2015_157_3_a17/

[1] Bazhenov S. L., Berlin A. A., Kulkov A. A., Oshmyan V. G., Polimernye kompozitsionnye materialy. Prochnost i tekhnologii, Intellekt, M., 2010, 352 pp.

[2] Mettyuz F., Rolingz R., Kompozitnye materialy. Mekhanika i tekhnologiya, Tekhnosfera, M., 2004, 408 pp.

[3] Poleva E. A., Chichvarin A. V., Krakht L. N., “Modifikatsiya kleevykh kompozitsii nanosoedineniyami ugleroda fullerenovogo ryada”, Tekhnicheskie nauki v Rossii i za rubezhom, Materialy II mezhdunar. nauch. konf., Buki-Vedi, M., 2012, 153–155

[4] Hussain F., Hojjati M., Okamoto M., Gorga R. E., “Review article: Polymer-matrix nanocomposites, processing, manufacturing, and application: An overview”, J. Composite Mater., 40:17 (2006), 1511–1575 | DOI

[5] Yanovsky Y. G., Yumashev O. B., Kornev Y. V., Karnet Y. N., Kozlov G. V., “Some prospects for the use of carbon nanotubes as functional additives in elastomer composites”, Nanomechanics Science and Technology: An Int. J., 2:3 (2011), 185–203 | DOI

[6] Kornev Y. V., Yanovskii Y. G., Boiko O. V., Guseva M. A., “Effect of carbon nanotubes on the properties of elastomeric materials filled with the mineral shungite”, Int. Polym. Sci. Technol., 40:2 (2013), 29–32

[7] Vermel V. D., Dotsenko A. M., Smirnov R. A., Titov S. A., Yablonskii I. S., Anikhovskaya L. I., Kladova L. S., Tkachev A. G., Slepov C. K., Melezhik A. V., “Ob issledovanii optimalnogo soderzhaniya nanochastits v kleevykh soedineniyakh”, Mekhanika i nanomekhanika strukturno-slozhnykh i geterogennykh sred. Uspekhi, problemy, perspektivy, Sb. tr. Vseros. konf., priurochennoi k 20-letiyu IPRIM RAN, Alyanstransatom, M., 2010, 72–77

[8] Fischer-Cripps A. C., Nanoindentation, Springer, N.Y., 2002, 197 pp.

[9] Oliver W. C., Pharr G. M., “An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments”, J. Mater. Res., 7:6 (1992), 1564–1583 | DOI