Preview
Open Access Open Access  Restricted Access Subscription Access

Development of frost-resistant sealing rings for fire safety in the Arctic regions of the Russian Federation

https://doi.org/10.22227/0869-7493.2025.34.03.40-49

Abstract

Introduction. In the context of active Arctic development, ensuring fire safety has become a strategic task. Currently, there is a problem of hardening and breaking of sealing rings when the temperature drops to –40 °C, despite the declared operating temperature of –60 °C, according to the UHL-1 climate category. This can lead to difficulties and emergency situations during firefighting. Therefore, the development of frost-resistant sealing rings is a pressing issue. To extend their service life and improve aging resistance, it is necessary to incorporate anti-aging agents into the rubber compound formulation.

The aim of the research is to identify a suitable anti-aging agent for the formulation of frost-resistant sealing rings made from SKD-V butadienе rubber, designed for use in fire hoses and hydrants.

Objectives:
1. Determination of the effect of anti-aging agents on the properties of rubber compounds based on SKD-V butadienе rubber.
2. Investigation of the physico-mechanical and structural properties of elastomers.
3. Testing of the manufactured sealing rings based on the developed formulation under real operating conditions at the Ministry of Emergency Situations of the Republic of Sakha (Yakutia) and JSC “Vodokanal”.

Objects and methods of research. The study examined the elastic-strength properties, wear resistance, water resistance of the specimens, hardness, residual compressive deformation, thermal aging resistance and structural properties.

Results and their discussion. Antioxidants improved the elastic-strength properties, presumably due to the stabilization of the polymer network. However, when using IPPD, leaching and water discoloration were observed. Thermal aging reduced the elasticity of the specimens by 32–56 %, while combined systems demonstrated lower degradation, confirming their effectiveness. Laboratory and field tests verified the performance of the developed sealing rings in Arctic conditions in accordance with the UHL-1 climate category.

Conclusions. A frost-resistan.rubber compound was developed in the course of the study. A combination of anti-aging agents, Naftam-2 and Acetonanil, was selected.

About the Authors

I. S. Makarov
North-Eastern Federal University named after M.K. Ammosova
Russian Federation

Igor S. MAKAROV, Postgraduate student

Belin­skogo St., 58, Yakutsk, 677013



A. A. Dyakonov
North-Eastern Federal University named after M.K. Ammosova; Institute of Physical and Technical Problems of the North named after V.P. Larionov of the Siberian Branch of the Russian Academy of Sciences
Russian Federation

Afanasii A. DYAKONOV, Cand. Sci. (Eng.), Senior Researcher; Researcher

Belinskogo St., 58, Yakutsk, 677013;
Oktyabrskaya St., 1, Yakutsk, 677000

ResearcherID: LTF-2325-2024, RSCI AuthorID: 745234



N. N. Lazareva
North-Eastern Federal University named after M.K. Ammosova
Russian Federation

Nadezhda N. LAZAREVA, Cand. Sci. (Eng.), Leading Researcher, Head of the Research and Educational Laboratory “Polymer Nanocomposite Technologies” named after Associate Professor S.A. Sleptsova

Belinskogo St., 58, Yakutsk, 677013

ResearcherID: E-5063-2014, RSCI AuthorID: 730168



A. A. Sinyakov
Federal Fire Service of the State Fire Service Main Directorate of the Ministry of Emergency Situations of Russia for the Republic of Sakha (Yakutia)
Russian Federation

Alexey A. SINYAKOV, Senior Lieutenant of the Internal Service, Assistant Chief of the Duty Shift of the Firefighting Service, 5th Fire and Rescue Unit

Dzerzhinsky St., 35a, Yakutsk, 677000



E. G. Parenko
JSC “Vodokanal”
Russian Federation

Evgeny G. PARENKO, Deputy Chief Engineer

Bogdana Chizhika St., 19, Yakutsk, 677001



References

1. Petrova N.N., Portnyagina V.V., Mukhin V.V., Kyzmina E.S. Problems of operation of elastomer materials in the arctic region. KnE Materials Science. 2016; 1(1):129-134. DOI: 10.18502/kms.v1i1.574

2. Ishchenko A.D., Tarantsev A.A., Shidlovsky A.L. About the features of fire extinguishing actions in arctic conditions. Problems of technosphere risk management. 2020; 3(55):16-20. EDN KJIGOH. (rus).

3. Petrova N.N., Portnyagina V.V., Mukhin V.V., Shim E.L., Cho J-H. Preparation and improved physical characteristics of propylene oxidе rubber composites. Molecules. 2018; 23(9):2150. DOI: 10.3390/molecules23092150

4. Mukhin V.V., Petrova N.N., Portnyagina V.V., Fedorov A.L., Baisheva A.V. Investigation of the plasticizer content effects on the operability of the epichlorohydri.rubber based elastomeric material during full-scale test under cold climate conditions and hydrocarbon medium influence. Materials Science Forum. 2019; 945:417-421. DOI: 10.4028/www.scientific.net/MSF.945.417

5. Wu S., Xiao F., Chen Q., Liu Y., Guo B. Low temperature sealing behavior evaluation of elastomers in aircraft hydraulic systems. Rubber Chemistry and Technology. 2024; 97(1):44-58. DOI: 10.5254/rct.23.76992

6. Wu L., Liao S., Wang Y. Cold-Resistant Rubbers Based on Flexible Polymer Chains. Chinese Journal of Chemistry. 2023; 41(17):2197-2205. DOI: 10.1002/cjoc.202300078

7. Wang X., Zhang Y., Ren Sh., Xu Z., Li K., Hao X. et al. Effect of zinc oxide/layered double hydroxide on the mechanics of silicon.rubber at low temperature. European Polymer Journal. 2023; 200:112478. DOI: 10.1016/j.eurpolymj.2023.112478

8. Aleshkov M.V. Peculiarities of extinguishing large-scale fires on the territory of the Russian Federation under the external effect of hazardous natural phenomena. Pozharovzryvobezopasnost’/Fire and Explosion Safety. 2013; 22(5):59-64. EDN QIYYVL. (rus).

9. Karamanchuk E.A., Konovalenko P.N., Bagazhkov I.V. Deployment of forces and means under low temperature conditions. Improving the forms and methods of carrying out events aimed at protecting the population and territories from possible natural and man-made emergencies in the Arctic zone of the Komi Republic : collection of materials from the All-Russian round table. Usinsk, Ivanovo Fire and Rescue Academy of the Ministry of Emergency Situations of Russia, 2023; 23-25. EDN MHAFRZ. (rus).

10. Pivkin A.S. Overview of a fire truck for the conditions of the Far North AC-SOR 2.0-20 based on the KAMAZ “Gefest” chassis and its analog. Actual problems of safety in the technosphere. 2022; 1(5):12-16. DOI: 10.34987/2712-9233.2022.83.91.002 (rus).

11. Makarov I.S., Dyakonov A.A., Spiridonov A.M., Struchkova T.S., Okhlopkova A.A., Petrova N.N. et al. Influence of carbon black content on the properties of butadiene. Engineering & Technologies. Journal of Siberian Federal University. 2023; 16(8):977-985. EDN INBBYP (rus).

12. Kaliyathan A.V., Rane A.V., Huskic M., Kunaver M., Kalarikkal N., Rouxel D. et al. Carbon black distribution in natura.rubber/butadien.rubber blend composites: Distribution driven by morphology. Composites Science and Technology. 2020; 200:108484. DOI: 10.1016/j.compscitech.2020.108484

13. Makarov I.S. Study of the influence of antioxidants on the properties of butadiene elastomer. Ammosov-2023 : collection of materials of the all-university scientific conference of students and masters. Yakutsk, 2023; 719-722. EDN GXXAER (rus).

14. Zhao W., He J., Yu P., Jiang X., Zhang L. Recent progress in the rubber antioxidants : a review. Polymer Degradation and Stability. 2023; 207:110223. DOI: 10.1016/j.polymdegradstab.2022.110223

15. Zolotarev V.L., Kovaleva L.A. “Titanium” butadien.rubber: 1964–2014. Industrial Production and Use of Elastomers. 2014; 4:3-4. EDN TILLJL. (rus).

16. Eliseev O.A., Chaikun A.M., Buznik V.M., Sokolova M.D., Popov S.N. The basic principles of creation of formula cold-resistan.rubbers stock for the products maintained in the condition of the Arctic climate. Prospective Materials. 2015; 11:5-18. EDN UXFYSJ. (rus).

17. Chaikun A.M., Eliseev O.A., Naumov I.S., Venediktova M.A. Features of cold-resistant curin.rubber compounds on the basic of different rubbers. Proceeding of VIAM. 2013; 12:4. EDN RPZGNN (rus).

18. Puchkov A.F., Spiridonova M.P., Lapin S.V., Kiba A.A. Some features of abrasive wear of rubbers containing complex antioxidant PRS-1N. Rubber and Rubber Products. 2016; 4:16-19. EDN WJXSXT. (rus).

19. Mukhutdinov E.A., Dyakonov G.S. Physicochemical principles of reducin.rubber aging using complex inhibitors as an example. Herald of Technological University. 2010; 10:483-504. EDN NBOQYB. (rus).

20. Ershov D.V., Redkin V.E., Ivanenko A.A., Naumenko L.S., Lapkovskaya E.Yu., Tkachev A.G. Obtaining and studying the properties of elastomers modified with ultra-dispersed (nano) particles. Rubber and Rubber Products. 2011; 4:19-22. EDN SAXRSX. (rus).


Review

For citations:


Makarov I.S., Dyakonov A.A., Lazareva N.N., Sinyakov A.A., Parenko E.G. Development of frost-resistant sealing rings for fire safety in the Arctic regions of the Russian Federation. Pozharovzryvobezopasnost/Fire and Explosion Safety. 2025;34(3):40-49. (In Russ.) https://doi.org/10.22227/0869-7493.2025.34.03.40-49

Views: 72


ISSN 0869-7493 (Print)
ISSN 2587-6201 (Online)