Obrabotka Metallov 2026 Vol. 28 No. 3

OBRABOTKAMETALLOV Vol. 28 No. 3 2026 27 TECHNOLOGY 5. Kinloch A.J., Taylor A.C. The mechanical properties and fracture behaviour of epoxy–inorganic micro- and nano-composites. Journal of Materials Science, 2006, vol. 41, pp. 3271–3297. 6. Ongaro G., Pontefi ssoA., Zeni E., Lanero F., FamengoA., Zorzi F., Zaccariotto M., Galvanetto U., Fiorentin P., Gobbo R., Bertani R., Sgarbossa P. Chemical and mechanical characterization of unprecedented transparent epoxy–nanomica composites – New model insights for mechanical properties. Polymers, 2023, vol. 15, p. 1456. DOI: 10.3390/polym15061456. 7. Cheng H.Y., Jiang G.J., Hung J.Y. Enhanced mechanical and thermal properties of PS/mica and PMMA/mica nanocomposites by emulsion polymerization. Polymer Composites, 2009, vol. 30 (4), pp. 351–356. 8. Ziadeh M., Fischer B., Schmid J., Altstädt V., Breu J. On the importance of specifi c interface area in clay nanocomposites of PMMA fi lled with synthetic nano-mica. Polymer, 2014, vol. 55 (16), pp. 3770–3781. DOI: 10.1016/j.polymer.2014.05.063. 9. Panda J.N., Bijwe J., Pandey R.K. On the signifi cant enhancement in the performance properties of PAEK composite by inclusion of a small amount of nano-mica particles. Tribology International, 2019, vol. 136, pp. 87–104. 10. Lapčík L., Maňas D., Lapčíková B., Vašina M., Staněk M., Čépe K., Vlček J., Waters K.E., Greenwood R.W., Rowson N.A. Eff ect of fi ller particle shape on plastic–elastic mechanical behavior of high density poly(ethylene)/ mica and poly(ethylene)/wollastonite composites. Composites Part B: Engineering, 2018, vol. 141, pp. 92–99. DOI: 10.1016/j.compositesb.2017.12.035. 11. McElwain S.E., Blanchet T.A., Schadler L.S., Sawyer W.G. Eff ect of particle size on the wear resistance of alumina-fi lled PTFE micro- and nanocomposites. Tribology Transactions, 2008, vol. 51 (2), pp. 247–253. 12. Tian Y., Li R., Wang Z., Zheng S., Che Q., Zhang J. Hybrid of micro-aramid and nano-alumina prominently enhanced the wear resistance of polytetrafl uoroethylene composites. Journal of Reinforced Plastics and Composites, 2024, vol. 44, pp. 2138–2148. DOI: 10.1177/07316844241253467. 13. Tóth L.F., De Baets P., Szebényi G. Thermal, viscoelastic, mechanical and wear behaviour of nanoparticle fi lled polytetrafl uoroethylene: A comparison. Polymers, 2020, vol. 12 (10), p. 1940. 14. Burris D.L., Sawyer W.G. Improved wear resistance in alumina-PTFE nanocomposites with irregular shaped nanoparticles. Wear, 2006, vol. 260, pp. 915–918. 15. Burris D.L., Sawyer W.G. Tribological sensitivity of PTFE/alumina nanocomposites to a range of traditional surface fi nishes. Tribology Transactions, 2005, vol. 48 (2), pp. 147–153. 16. Damdhar V.S., Pande K.N., Peshwe D.R., Gogte C.L. To investigate the wear mechanism on cryogenic treatment of PTFE-mica fi lled composite coatings in cookware. Transactions of the Indian Institute of Metals, 2015, vol. 68 (4), pp. 611–621. DOI: 10.1007/s12666-014-0491-7. 17. Brown E.N., Dattelbaum D.M. The role of crystalline phase on fracture and microstructure evolution of polytetrafl uoroethylene (PTFE). Polymer, 2005, vol. 46 (9), pp. 3056–3068. 18. Vasilev A.P., Struchkova T.S., Nikiforov L.A., Okhlopkova A.A., Grakovich P.N., Shim E.L., Cho J.-H. Mechanical and tribological properties of polytetrafl uoroethylene composites with carbon fi ber and layered silicate fi llers. Molecules, 2019, vol. 24 (2), p. 224. 19. Lebedev Yu.A., Korolev Yu.M., Polikarpov V.M., Ignat’eva L.N., Antipov E.M. X-ray powder diff raction study of polytetrafl uoroethylene. Crystallography Reports, 2010, vol. 55 (4), pp. 609–614. 20. SmolyanskiiA.S., Politova E.D., Koshkina O.A.,ArsentyevM.A., Kusch P.P., Moskvitin L.V., Slesarenko S.V., Kiryukhin D.P., Trakhtenberg L.I. Structure of polytetrafl uoroethylene modifi ed by the combined action of γ-radiation and high temperatures. Polymers, 2021, vol. 13 (21), p. 3678. 21. Patterson A.L. The Scherrer formula for X-ray particle size determination. Physical Review, 1939, vol. 56, pp. 978–982. 22. Brown E.N., Rae P.J., Bruce Orler E., Gray G.T., III, Dattelbaum D.M. The eff ect of crystallinity on the fracture of polytetrafl uoroethylene (PTFE). Materials Science and Engineering: C, 2006, vol. 26 (8), pp. 1338–1343. 23. Piwowarczyk J., Jędrzejewski R., Moszyński D., Kwiatkowski K., Niemczyk A., Baranowska J. XPS and FTIR studies of polytetrafl uoroethylene thin fi lms obtained by physical methods. Polymers, 2019, vol. 11 (10), p. 1629. 24. Yang D., Niu Q., Wang H., Gao G., Zhao G., Yang H., Lv T., Yang S., Zhang J. Enhancement of friction and wear performance of polytetrafl uoroethylene composites through the synergistic eff ect of hard fi llers. Polymer Composites, 2024, vol. 46, pp. 4112–4128. DOI: 10.1002/pc.29227. 25. Lv W., Wang T., Wang Q., Yap K.K., Song F., Wang C. Tribological and mechanochemical properties of nanoparticle-fi lled polytetrafl uoroethylene composites under diff erent loads. Polymers, 2024, vol. 16 (7). DOI: 10.3390/polym16070894.

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