KhrulevV.M., Synthetic Adhesives and Mastics (Application in Construction).Vysshaya Shkola, Moscow, 368 pp. (1970).
2.
RudenkoK.Yu., The modification of polychloroprene adhesives with fillers based on different fibres. Papers of Specialised Sections, 17th Intercoll. Sci.-Pract. Conf. Young Scientists and Students, Volzhskii, p. 29 (2011).
3.
KorneevaN.V., The development of fibrous polymer composites reinforced with UHMWPE fibres, fabrics and non-woven materials treated with non-equilibrium low-temperature plasma. Doct. Tech. Sci. Dissertation, KGTU, Kazan, 223 pp. (2011).
4.
SergeevaE.A., and ZenitovaL.A., The effect of treatment with non-equilibrium low-temperature plasma on the properties of textile cords. Dizain. Mater. Tekhnol., 3 (14): 64 (2010).
5.
RudenkoK.Yu., The modification of polychloroprene adhesive compositions with fibrous fillers. Klei. Germetiki. Tekhnol., (12): 21 (2011).
6.
RudenkoK.Yu., The effect of reinforcement of polychloroprene-based adhesives with fibrous fillers on their adhesion properties. Promyshl. Proizvod. Ispol'z. Elast., (4): 39 (2012).
7.
Gil'manA.B., The effect of LF glow discharge plasma on polyimide films of different structure. Khim. Vys. Energii, 31 (2): 141 (1997).
8.
AbdullinI.Sh., The application of low-temperature plasma to improve adhesive composites of the footwear industry. Proc. 4th Int. Symp. – Theoretical and Applied Plasma Chemistry, Vol. 2, Ivanovo, p. 439 (2005).
9.
RudenkoK.Yu., Investigation of the effect of plasma treatment of fibrous fillers on the adhesion properties of polychloroprene-based adhesives. Klei. Germetiki. Tekhnol., (3): 23 (2014).