Articles
| Open Access | TECHNOLOGY FOR PRODUCING MULTIFUNCTIONAL COMPOSITE MATERIALS USING RECYCLED POLYMERS
Majidov Abdinabi Amanovich , Associate Professor, Asian International University, UzbekistanAbstract
The article discusses modern technological approaches to the production of multifunctional composite materials based on recycled polymers. An analysis of the problems associated with polymer waste recycling and the possibilities of their reuse in industry was carried out. The physical-mechanical and operational properties of composite materials modified with various fillers were investigated. It was established that the use of recycled polymer raw materials in combination with modifying additives contributes to improving the strength, thermal resistance, and wear resistance of materials. The developed technology makes it possible to efficiently utilize polymer waste, reduce environmental impact, and expand the raw material base of industrial production. The obtained results confirm the prospects for the application of composite materials based on recycled polymers in construction, engineering, and packaging industries.
Keywords
recycled polymers, composite materials, polymer waste recycling, modifying fillers, polymer composites, physical and mechanical properties, thermal resistance, resource conservation, environmental safety, polymer matrix
References
Andrady A.L. Plastics and Environmental Sustainability. – Hoboken: Wiley, 2015. – 328 p.
Al-Salem S.M., Lettieri P., Baeyens J. Recycling and recovery routes of plastic solid waste: A review // Waste Management. – 2009. – Vol. 29, №10. – P. 2625–2643. DOI: 10.1016/j.wasman.2009.06.004.
Geyer R., Jambeck J.R., Law K.L. Production, use, and fate of all plastics ever made // Science Advances. – 2017. – Vol. 3, №7. – e1700782. DOI: 10.1126/sciadv.1700782.
Hopewell J., Dvorak R., Kosior E. Plastics recycling: challenges and opportunities // Philosophical Transactions of the Royal Society B. – 2009. – Vol. 364. – P. 2115–2126. DOI: 10.1098/rstb.2008.0311.
Utracki L.A. Polymer Blends Handbook. – Dordrecht: Springer, 2014. – 2370 p.
Xanthos M. Functional Fillers for Plastics. – Weinheim: Wiley-VCH, 2010. – 532 p.
Vilaplana F., Karlsson S. Quality concepts for the improved use of recycled polymeric materials: A review // Macromolecular Materials and Engineering. – 2008. – Vol. 293, №4. – P. 274–297. DOI: 10.1002/mame.200700393.
Брагинский В.А., Крыжановский В.К. Переработка полимерных материалов. – СПб.: Профессия, 2005. – 544 с.
Кулезнев В.Н., Шершнев В.А. Химия и физика полимеров. – М.: КолосС, 2007. – 367 с.
Перепёлкин К.Е. Структура и свойства композиционных полимерных материалов. – М.: Химия, 1989. – 256 с.
Тагер А.А. Физико-химия полимеров. – М.: Научный мир, 2007. – 576 с.
Липатов Ю.С. Физическая химия наполненных полимеров. – Киев: Наукова думка, 1987. – 296 с.
Абдуллаев Ж.А., Рахимов Ф.Х. Полимер композицион материаллар технологияси. – Тошкент: Фан ва технология, 2019. – 248 б.
Юлдашев Н.К., Каримов Б.Т. Иккиламчи полимер чиқиндиларини қайта ишлаш технологиялари // Кимё ва кимё технологияси. – 2021. – №3. – Б. 45–51.
Турсунов Х.Т., Исмоилов А.А. Композицион материаллар ишлаб чиқаришда полимерларнинг аҳамияти // Ўзбекистон техника журнали. – 2020. – №4. – Б. 62–68.
Рахмонов С.С. Полимер материалларни модификациялашнинг замонавий усуллари. – Самарқанд: СамДУ нашриёти, 2021. – 198 б
Article Statistics
Downloads
Copyright License

This work is licensed under a Creative Commons Attribution 4.0 International License.