

Aramid fiber reinforced plastic for composite marine constructions exploited in sea water
https://doi.org/10.22349/1994-6716-2018-94-2-155-160
Abstract
The article considers the results of investigation fiber reinforced plastic for middle layer of ship’s constructions exploited in sea water. Mechanical properties of material were investigated to justificate the right choice of basic materials, construction structure and manufacturing process.
About the Authors
V. S. TryasunovRussian Federation
49, Sphalernaya St, 191015, St Petersburg
M. S. Galaktionov
Russian Federation
Cand Sc. (Phis-Math)
49, Sphalernaya St, 191015, St Petersburg
E. L. Shultceva
Russian Federation
49, Sphalernaya St, 191015, St Petersburg
A. M. Baganik
Russian Federation
49, Sphalernaya St, 191015, St Petersburg
References
1. Trofimov, A. N., Zarubina, A. Yu., Simonov-Emelyanov, I. D., Struktura, obobshchenie, parametry i reologicheskie svoystva epoksidnykh sferoplastikov [Structure, generalization, parameters and rheological properties of epoxy spheroplastics], Plasticheskie massy, 2014, No 11–12, pp. 3–8.
2. Osnos, M. S., Osnos S. P., Primenenie materialov iz bazaltovykh volokon v avtomobilnoy promyshlennosti [Application of materials from basalt fibers in the automotive industry], Kompozitny Mir, 2015, No 3, pp. 66–74.
3. Gorev, Yu. A., Rivkind, V. N., Kompozitsionnye materialy na osnove poliefirnykh smol [Composite materials based on polyester resins], Zhurnal Ros. Khim. Obschestva D. Mendeleeva, 2009, V. 53, No 4, pp. 19–34.
4. Mikhailin, Yu. A., Konstruktsionnye polimernye kompozitsionnye materialy [Structural polymeric composite materials], St Petersburg: Nauchnye osnovy i tekhnologii, 2010.
5. Spheroplastic Aquasint. URL: http://aquasint.ru/sph_pr.html (reference date 14.03.2018).
6. Zarubina, A. Yu., Kompozitsionnye materialy na osnove modifitsirovannogo epoksidnogo oligomera s povyshennoy teplostoykostyu i reguliruyemym kompleksom reologicheskikh i ekspluatatsionnykh svoystv [Composite materials on the basis of a modified epoxy oligomer with increased heat resistance and an adjustable complex of rheological and operational properties], Abstract to the Thesis for the degree of Cand. Sci (Eng), Moscow, 2013.
7. Kim, A. A., Kurdenkova, A. V., Shustov, Yu. S., Issledovanie prochnosti ballisticheskikh tkaney pri vozdeystvii konusoobraznoy nasadkoy [Investigation of the Strength of Ballistic Tissues under the Influence of a Cone-shaped Headpiece], Tekhnologiya tekstilnoy promyshlennosti, 2016, No. 6, pp. 31–33.
Review
For citations:
Tryasunov V.S., Galaktionov M.S., Shultceva E.L., Baganik A.M. Aramid fiber reinforced plastic for composite marine constructions exploited in sea water. Voprosy Materialovedeniya. 2018;(2(94)):155-160. (In Russ.) https://doi.org/10.22349/1994-6716-2018-94-2-155-160