- Issue
- Journal of Siberian Federal University. Engineering & Technologies. 2019 12 (4)
- Authors
- Dyakonov, Afanasiy A.; Shadrinov, Nikolay V.; Sokolova, Marina D.; Fedorov, Andrey L.; Sleptsova, Sardana A.; Okhlopkova, Aitalina A.
- Contact information
- Dyakonov, Afanasiy A.: North-Eastern Federal University 58 Belinsky Str., Yakutsk, 677000, Russia; ; Shadrinov, Nikolay V.: North-Eastern Federal University 58 Belinsky Str., Yakutsk, 677000, Russia; Institute of Oil and Gas Problems SB RAS 20 Avtodorozhnaya Str., Yakutsk, 677021, Russia; Sokolova, Marina D.: Institute of Oil and Gas Problems SB RAS 20 Avtodorozhnaya Str., Yakutsk, 677021, Russia; Fedorov, Andrey L.: North-Eastern Federal University 58 Belinsky Str., Yakutsk, 677000, Russia; Institute of Oil and Gas Problems SB RAS 20 Avtodorozhnaya Str., Yakutsk, 677021, Russia; Sleptsova, Sardana A.: North-Eastern Federal University 58 Belinsky Str., Yakutsk, 677000, Russia; Okhlopkova, Aitalina A.: North-Eastern Federal University 58 Belinsky Str., Yakutsk, 677000, Russia; Institute of Oil and Gas Problems SB RAS 20 Avtodorozhnaya Str., Yakutsk, 677021, Russia
- Keywords
- double-layered material; rubber; ultrahigh molecular weight polyethylene; adhesion; nitrile butadiene rubber; butadiene-styrene rubber; isoprene rubber; diphenylguanidine
- Abstract
The paper presents the technology of manufacturing of a double-layered material based on ultrahigh molecular weight polyethylene on one side and an elastomer on the other, which has high adhesive strength between materials. The results of the study of the adhesive interaction of ultrahigh molecular weight polyethylene with elastomers based on various rubbers are presented. The dependence of the strength of adhesive interaction between materials on the diphenylguanidine curing agents content in the rubber compound is shown in the article. It was found that with the addition of diphenylguanidine, the strength of the adhesive bond between the materials exceeds the cohesive strength of the elastomer and the process of delamination at fracture occurs along rubber. The study of the interphase boundary on a scanning electron microscope showed that the addition of diphenylguanidine into the rubber mixture leads to a change in the structure of ultrahigh molecular weight polyethylene to fine-spherulite. Using the method of IR-spectroscopy it was detected the peaks of stretching vibrations, corresponding to C-S bonds, and peaks corresponding to stretching vibrations of R-SO-OR and RO-SO-OR groups with the addition of diphenylguanidine into the rubber mixture in the ultrahigh molecular weight polyethylene structure near the interphase boundary
- Pages
- 476-487
- DOI
- 10.17516/1999-494X-0156
- Paper at repository of SibFU
- https://elib.sfu-kras.ru/handle/2311/111654
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License (CC BY-NC 4.0).