Optimization of the choice of liquid phase material in the production of products from fibrous polymer composite materials with two-phase reinforcement scheme
https://doi.org/10.1234/2221-7789-2025-1-57-61
EDN: KZLEBF
Abstract
Justification of the choice of the optimal material of the liquid phase of composites with a two- phase reinforcement scheme was carried out on the basis of solving the multi-criteria problem of optimization by methods of ideal point and uniform optimization when used as the main optimization criteria the results of the experimental studies of these materials on the evaluation of tensile and impact strength, as well as losses of these values under conditions of influence of low negative temperatures (–30 and –50 °C).
About the Authors
Ekaterina A. KosenkoRussian Federation
Associate Professor, Department of Production and Repair of Road Machines
Natalia I. Baurova
Russian Federation
Russian scientist, doctor of technical sciences. Dean of the Faculty of Road and Technological Machines, Director of the Institute of Automotive and Special Engineering and Engineering. Professor, Department of Production and Repair of Cars and Road Machines
References
1. Timoshkov P.N. Khrulkov A.V., Yazvenko L.N. Composite materials in the automotive industry (review )//Proceedings of VIAM. 2017. № 6. S. 61-68.
2. Doriomedov M.S. Russian and world market of polymer composites//Proceedings of VIAM. 2020. № 6-7 (89). S. 29-37.
3. Nelyub V.A., Gorodetsky M.A., Tun L.Kh., Malysheva G.V. Properties of multilayer polymer composites based on non-woven material from polyethylene terephthalate//Bulletin of the Technological University. 2017. T. 20, NO. 24. S. 74-77
4. Belyaeva E.A., Kosolapov A.F., Shatsky S.V., Osipchik V.S., Nabiullin A.F. Hybrid comeposts based on fiber fillers from ultra-high molecular weight polyethylene and glass fillers//Successes in chemistry and chemical technology. 2015. VOL. 29, NO. 10. S. 11-13.
5. Nelub V.A. Improving the quality of molding carbon fiber based on epoxy binder and metallized reinforcing fiber materials using vacuum infusion technology//Adhesives. Sealants. Technology. 2020. № 9. S. 40-43.
6. Kostromina N.V., Olikhova Yu.V., Malakhovsky S.S., Gorbunova I.Y. Development of epoxy binders modified with heat-resistant thermoplastics to create reinforced composite materials//Plastic masses. 2022. № 9-10. S. 17-19.
7. Gorbatkina Yu.A., Ivanova-Mumzhieva V.G., Kuperman A.M. Adhesion of modified epoxy matrices to reinforcing fibers//High molecular weight compounds A. 2016. VOL. 58, NO. 5. S. 439-447.
8. Kosenko E.A., Nelyub V.A., Baurova N.I. A study of the strength properties of carbon-fiber- reinforced plastics with a two-phase reinforcement scheme // Polymer Science. Series D. 2024. V. 17, N 1.
9. P. 106–109.
10. Kosenko E.A., Nelyub V.A., Baurova N.I. Assessment of the fatigue strength of polymer compositional materials with a two-phase reinforcement scheme under cyclic tension conditions//Vestnik of the Technological University. 2023. T. 26, NO. 10. S. 75-79.
11. Kosenko E.A., Baurova N.I., Nelyub V.A. Assessment of the fatigue strength of carbon fiber plastics with a two-phase reinforcement scheme under cyclic bending loading//Chemical industry today. 2023. № 4. S. 37-42.
Review
For citations:
Kosenko E.A., Baurova N.I. Optimization of the choice of liquid phase material in the production of products from fibrous polymer composite materials with two-phase reinforcement scheme. Proceedings of the Kabardino-Balkarian State University. 2025;15(1):57-61. (In Russ.) https://doi.org/10.1234/2221-7789-2025-1-57-61. EDN: KZLEBF


