Zobrazeno 1 - 10
of 25
pro vyhledávání: '"O. V. Afonicheva"'
Autor:
O. V. Afonicheva, V. S. Osipchik, S. S. Kiselev, Alexander V. Naumkin, A. S. Yudin, Krasnov Aleksandr P, Konstantin I. Maslakov, D. I. Buyaev, L. F. Klabukova, V. V. Alekseev
Publikováno v:
Journal of Friction and Wear. 37:15-22
The role of a phenol formaldehyde oligomer additive to the epoxy binder in friction of organic textolite is studied. It is shown that, in the course of friction, the polymer surface becomes enriched in the tribochemically stable phenolic component, w
Autor:
Alexander V. Naumkin, Krasnov Aleksandr P, Mikhail I. Buzin, N. S. Gavryushenko, O. V. Afonicheva, V. G. Bulgakov
Publikováno v:
Russian Chemical Bulletin. 63:2527-2533
The processes occurring in friction of samples of ultra-high molecular weight polyethylene (UHMWPE) obtained by pressing at 190 °C from discrete UHMWPE particles modified by α-tocopherol (α-T) were studied using X-ray photoelectron spectroscopy, t
Autor:
S. S. Pesetsky, Krasnov Aleksandr P, Konstantin I. Maslakov, Alexander S. Goloveshkin, Alexandre S. Golub, N. D. Lenenko, O. V. Afonicheva, A. S. Yudin, Ivan S. Bushmarinov, V. N. Aderikha, Alexander V. Naumkin
Publikováno v:
Journal of Friction and Wear. 35:330-338
The tribological behavior of two types of nanocrystalline molybdenum disulfide produced from natural molybdenum disulfide by monolayer dispersion in the presence of water (nano-MoS2(H2O)) and acetonitrile (nano-MoS2(CH3CN)) is studied. The study of t
Publikováno v:
Journal of Friction and Wear. 34:245-252
The effect of a phenolformaldehyde binder and the nature of reinforcing fibers, i.e., polyoxadiazol and carbon fabrics, on the specific features of the friction of polymer composite materials (PCMs) and the formation of their self-lubricating propert
Autor:
V. A. Solov’eva, A. S. Yudin, Krasnov Aleksandr P, D. I. Buyaev, O. V. Afonicheva, N. N. Tikhonov, Alexander V. Naumkin
Publikováno v:
Journal of Friction and Wear. 34:120-128
The friction between ultrahigh molecular weight polyethylene and polished and ground steel surfaces is studied. It is shown that the initial stages of friction that occur on the polished surface are characterized by complex physicochemical transforma
Autor:
N. N. Tikhonov, L. F. Klabukova, O. V. Afonicheva, Ernest Said-Galiev, Alexander V. Naumkin, V. A. Mit, V. S. Osipchik, A. Yu. Nikolaev, Krasnov Aleksandr P, A. Yu. Vasil’kov
Publikováno v:
Scopus-Elsevier
An investigation was made of the role of nanosized biocompatible polymer systems based on ultra-high-molecular-weight polyethylene (UHMWPE) in the formation of the friction surface and tribological properties of nanocomposites. The investigation was
Autor:
Ya. S. Vygodskii, Dmitry A. Borisov, D. A. Sapozhnikov, A. A. Sakharova, T. V. Volkova, A. M. Nikulina, E. V. Korostylev, O. V. Afonicheva, Alexander O. Terent'ev
Publikováno v:
Bulletin of the Russian Academy of Sciences: Physics. 74:1039-1042
Nanocomposites based on polymethylmethacrylate and silica were synthesized by means of bulk polymerization. The morphology of the obtained polymer composites was studied by scanning electron microscopy. It was established that silica influences the m
Autor:
Alexander V. Naumkin, Ernest Said-Galiev, V. A. Mit, O. V. Afonicheva, Krasnov Aleksandr P, N. N. Tikhonov, A. Yu. Vasil’kov, V. N. Aderikha, A. Yu. Nikolaev
Publikováno v:
Journal of Friction and Wear. 31:68-80
The paper deals with a systematic categorization of nanofillers in terms of their effect arising upon introduction into polymer composites of tribological applications. The authors study the nature of this effect and the tribological behavior of diff
Autor:
M. D. Petunova, V. V. Kazantseva, O. V. Kovriga, L. V. Luchkina, O. V. Afonicheva, A.A. Askadskii
Publikováno v:
International Polymer Science and Technology. 36:51-55
Autor:
Krasnov Aleksandr P, Ya. S. Vygodskii, V. A. Shanditsev, Igor V. Yaminsky, O. V. Afonicheva, O. N. Zabegaeva, Olga V. Sinitsyna, T. V. Volkova, A. G. Filatova
Publikováno v:
Bulletin of the Russian Academy of Sciences: Physics. 73:474-477
Composites were synthesized by anionic in situ polymerisation of ɛ-caprolactam in the presence of 0.1–5.0% of multiwall carbon nanotubes. It is found that nanotube filling increases rigidity and improves the friction characteristics of polycaproam