The effect of magnetic fields on the properties of sealing materials of airfield pavements
https://doi.org/10.20914/2310-1202-2016-4-207-214
Abstract
About the Authors
S. S. NikulinRussian Federation
doctor of technical sciences, professor, organic synthesis technology and high-molecular compounds department,
Revolution ave, 19, Voronezh, 394066
A. N. Vnukov
candidate of technical sciences, lieutenant colonel, head, Research and Development Research Center (application problems and ensure the Air Force aviation control) department,
Starych Bolshevikov str., 54A, Voronezh, 394064
Y. E. Shulgina
candidate of technical sciences, researcher, Research and Development Research Center (application problems and ensure the Air Force aviation control) department,
Starych Bolshevikov str., 54A, Voronezh, 394064
E. E. Sobolev
adjunct, department of defense equipment,
Starych Bolshevikov str., 54A, Voronezh, 394064
References
1. 1 Leschitskaya T.P., Popov V.A. Sovremennye metody remonta aerodromnykh pokrytii [Modern methods of repair of airfield pavement] Moscow, MADI-TU, 1999. 132 p. (in Russian)
2. 2 Rekomendatsii po podderzhaniyu iskustvennogo pokrytiya VPP aeroporta [Recommendations for keeping the maintenance of artificial turf runway airport in MineralnyeVody operating condition based on the results of his inspection and testing: Report on R & D / FPG and NII GA «Aeroproject»] Moscow, 1993. 42 p. (in Russian)
3. 3 Pereira Simao M. S. et al. Mechanical performance of asphalt mixtures produced with cork or rubber granulates as aggregate partial substitutes. Promstroiproekt Constr. and Build. Mater.] 2013, no. 41, pp. 209-215. (in Russian)
4. 4 Zhu Jiqing, et al. Polymer modification of bitumen: Advances and challenges // Eur. Polym. J. 2014. no. 54. pp. 18-38. (in Russian)
5. 5 New two-pack adhesive sealant for construction. Neuer 2K-Klebdichtstoff fur die Bauindustrie. [Adhas. - Kleben und Dichten] 2015, no. 59(3), pp. 47. (in Germ.)
6. 6 Obzor germetiziruyushchikh materialov [Overview of sealing materials for airfield pavement 26 CRI.] Moscow, MO RF, 2001. (in Russian)
7. 7 Dushkin S.S. et al. Modern methods of water treatment and ways. Bulleten’ NTI TsNIITEIchermet [Bul. STI ТsNIIТЕIсhеrmеt] 1982, no. 23. pp. 45–46 (in Russian).
8. 8 NikulinS.S. Popov V.M., Latinin A.V., Shendrikov M.A. The mechanism of action of the electric field strength of adhesive joints. ZhPKh [Russian Journal of Applied Chemistry]. 2013, vol. 86. no. 4. pp. 643–646. (in Russian)
9. 9Molchanov Y.U, Kisis E.R., Rodin Y.U. Structural changes of polymeric materials in the magnetic field. Mekhanika polimerov [Mechpolymers]. 1973. no 4. pp. 737–738. (in Russian)
10. 10 Kestelman V.N. Phizicheskie metody modifikatsii [Physical methods for the modification of polymeric materials] Moscow, Khimiya, 1980. 224 p. (in Russian)
11. 11Nikulin S.S., Shulgina Y.E., Poyarkova T.N. Features isolation rubber latex N, N-dimethyl-N, N-diallilammony chloride when exposed to a magnetic field. ZhPkh [Russian Journal of Applied Chemistry] 2014. vol. 87. no. 7. pp. 974–979. (in Russian)
12. 12 Nikulin S.S., ShulginаY.E., Poyarkova T.N. The influence of the magnetic field on the coagulation process of styrene butadiene latex ARC SCS 30 in the presence of poly-N, N-dimethyl-N, N-diallilammony chloride ZhPkh [Russian Journal of Applied Chemistry] 2014. vol. 87. no 11. pp. 89–92. (in Russian)
13. 13 GOST 30740–2000. Materialy germetiziruyushchie [State standard 30740–2000Sealing materials for airfield pavement seams] Moscow, Izd. standartov, 2002. 19 p. (in Russian)
14. 14 Onsager L. // Ann. N. Acad. Sci. 1949. vol. 51. pp. 627.
15. 15P.J. Flory // Other Royal Society journals. London. 1956. vol. 234. no 1. pp. 60.
16. 16Vasilenko S.V., Khokhlov A.R., Shibaev V.P. Makromolekuly [Macromolecules] 1984. vol. 17. pp. 2275. (in Russian)
17. 17Benicewicz B.C., Smith M.E., Earls J.D. Magnetic Field Orientation of Liquid Crystalline Epoxy Thermosets Makromolekuly [Macromolecules]. 1998. vol. 31. pp. 4730–4738. (in Russian)
18. 18 Boek E.S., HeadenT.F.Multi-scale simulation of asphaltene aggregation and deposition in capillary flow. J. The Royal Society of Chemistry. 2010. no. 144. pp. 271–284.
19. 19 Tukhvatullina A.Z. [Et.al.] Supramolecular Structures of Oil Systems as the Key to Regulation of Oil Behavior . Neftyanaya I ekologicheskaya biotech nologiya [Petroleum & Environmental Biotechnology] 2013. vol.4, no. 4. pp.1–8. (in Russian)
20. 20 Unger F.G. et al. Nanosistemy, dispersnye sistemy [Nanosystems, disperse systems, quantum mechanics, spin chemistry]. Tomsk, TML-Press, 2010. 264 p. (in Russian)
21. 21Pivovarova N.A. et al. On the properties and structure of the oil disperse systems. Vestnik AGTU [Herald of Astrakhan State Technical University] 2008. no. 6(47). pp. 138–143. (in Russian)
22. 22 Loskutov Y.V. The influence of magnetic field on the structural and rheological properties of oils. Izvestiya Tomskogo universiteta [Bulletin of the Tomsk Polytechnic University] 2006. vol. 309. no. 4. pp. 104–109.(in Russian)
Review
For citations:
Nikulin S.S., Vnukov A.N., Shulgina Y.E., Sobolev E.E. The effect of magnetic fields on the properties of sealing materials of airfield pavements. Proceedings of the Voronezh State University of Engineering Technologies. 2016;(4):207-214. (In Russ.) https://doi.org/10.20914/2310-1202-2016-4-207-214