PortnyaginaV.V., and PetrovaN.N., Rubber compounds based on blends of propylene oxide rubber and ultradispersed polytetrafluoroethylene. Kauch. i Rezina, (6): 40 (2014).
2.
Govorova, The development of weather-resistant rubber compounds with improved low-temperature and adhesion properties. Kauch. i Rezina, (2): 18 (1999).
3.
RumyantsevaA.V., The structure and properties of rubbers based on organic oxides. Molodoi Uchenyi, (14.1): 39 (2014).
4.
PetrovaN.N., Investigation of the effect of low temperatures and hydrocarbon media on the properties of rubber compounds based on propylene oxide and nitrile butadiene rubbers. Kauch. i Rezina, (3): 6 (2002).
5.
US Patent 8841370 B1, MKI C 08 K 5/09, C 08 K 5/19, C 08 L 71/02, C 08 K 5/3492, C 08 K 3/22.
6.
US Patent 8822579 B1, MKI C 08 K 13/02.
7.
Russian Patent 2493183 C1, MKI C 08 L 71/02, C 08 K 13/02, C 08 K 3/06.
8.
MorozovA.V., and PetrovaN.N., A procedure for assessing the friction coefficient of cold-resistant sealing rubbers. Trenie i Iznos, in print.
9.
GoryachevaI.G., and MakhovskayaYu.Yu., Modelling of friction on different scale levels. Mekh. Tverdogo Tela, (3): 117 (2010).
10.
GoryachevaI.G., and MakhovskayaYu.Yu., The sliding of a wavy indentor over the surface of a viscoelastic layer in the presence of adhesion. Mekh. Tverdogo Tela, (4): 90 (2015).