Two models for the theoretical description of the dependence of adhesional contact shear strength on pressure are proposed on the example of polystyrene. Both models are described experimental data well enough. The main reason of contact strength enhancement at applied pressure growth is macromolecular coils forced interdiffusion in boundary layer of adhesional contact.
адгезия, давление, полистирол, взаимодиффузия, макромолекулярный клубок, adhesion, pressure, polystyrene, interdiffusion, macromolecular coil
1. Boiko, Yu.M. Prud’homme, R.E. Strength development at the interface of amorphous polymers and their miscible blends, below the glass transition temperature. // Macromolecules. - 1998. - V. 31. - № 19. - P. 6620-6626.
2. Doi, M. Edwards, S.F. Theory of Polymer Dynamics - Oxford: Clarendon Press, 1986. - 432 p.
3. Yah'yaeva, H.Sh. Zaikov, G.E. Deberdeev, T.R. Ulitin, N.V. Stoyanov, O.V. Kozlov, G.V. Magomedov, G.M. Nasyrov, I.I. Strukturnye osnovy mezhfaznoy adgezii (nanoadgezii) v polimernyh kompozitah. // Vestnik Kazanskogo tehnologicheskogo universiteta. - 2012. - T. 15. - № 5. - S. 68-70.
4. Vilgis, T.A. Flory theory of polymeric fractals - intersection, saturation and condensation. // Physica A. - 1988. - V. 153. - № 2. - P. 341-354.
5. Kozlov, G.V. Ovcharenko, E.N. Mikitaev, A.K. Struktura amorfnogo sostoyaniya polimerov - M.: Izd-vo RHTU im. D.I. Mendeleeva, 2009. - 392 s.
6. Kozlov, G.V. Temiraev, K.B. Shustov, G.B. Mashukov, N.I. Modeling of solid state polymer properties at the stage of synthesis: fractal analysis. // J. Appl. Polymer Sci. - 2002. - V. 85. - № 6. - P. 1137-1140.
7. Budtov, V.P. Fizicheskaya himiya rastvorov polimerov - SPb.: Himiya, 1992. - 384 s.
8. Aharoni, S.M. On entanglements of flexible and rodlike polymers. // Macromolecules. - 1983. - V. 16. - № 9. - P. 1722-1728.
9. Aharoni, S.M. Correlation between chain parameters and failure characteristics of polymers below their glass transition temperature. // Macromolecules. - 1985. - V. 18. - № 12. - P. 2624-2630.
10. Schnell, R. Stamm, M. Creton, C. Direct correlation between interfacial width and adhesion in glassy polymers. // Macromolecules. - 1998. - V. 31. - № 7. - P. 2284-2292.
11. Zelenyy, L.M. Milovanov, A.V. Fraktal'naya topologiya i strannaya kinetika: ot teorii perkolyacii k problemam kosmicheskoy elektrodinamiki. // Uspehi fizicheskih nauk. - 2004. - T. 174. - № 8. - S. 809-852.
12. Kozlov, G.V. Zaikov, G.E. Mikitaev, A.K. Fraktal'nyy analiz processa gazoperenosa v polimerah: teoriya i prakticheskie primeneniya - M.: Nauka, 2009. - 199 s.
13. Kozlov, G.V. Sanditov, D.S. Ovcharenko, E.N. Mikitaev, A.K. Teoreticheskoe opisanie zavisimosti parametrov svobodnogo ob'ema epoksipolimera ot davleniya v ramkah fluktuacionnoy koncepcii. // Fizika i himiya stekla. - 1997. - T. 23. - № 4. - S. 369-373.
14. Kozlov, G.V. Nafadzokova, L.H. Zaikov, G.E. Yarullin, A.F. Fizicheskie aspekty razdeleniya gazov neporistymi polimernymi membranami: fraktal'nyy analiz. // Vestnik Kazanskogo tehnologicheskogo universiteta. - 2012. - T. 15. - № 9. - S. 97-100.
15. Kalinchev, E.L. Sakovceva, M.B. Svoystva i pererabotka termoplastov - L.: Himiya, 1983. - 288 s.
16. Kozlov, G.V. Novikov, V.U. Klasternaya model' amorfnogo sostoyaniya polimerov. // Uspehi fizicheskih nauk. - 2001. - T. 171. - № 7. - S. 717-764.