Abstract
Polymer composites obtained on the basis of the AKP-1 brand flame retardant were investigated using scanning electron microscopy, elemental analysis, and differential thermogravimetric (thermal destruction) methods.
By studying the results of electron microscopy and elemental analysis of refractory polymer composites obtained on the basis of AKP-1 brand flame retardant, the distribution of AKP-1 brand flame retardant into the composition of polyethylene-based polymer materials was studied, and the differential-thermogravimetric (thermal destruction) analysis of refractory polymer materials (Polyethylene: AKP-1) modified with AKP-1 brand flame retardants was studied in the temperature range of 10-600°C. As a result, it was found that 50% of the mass was lost in the temperature range of 460-462°C.
References
[1] O‘zbekiston Respublikasi Vazirlar Mahkamasining “Yong‘in xavfsizligini ta’minlashning sifat jihatidan yangi tizimi joriy etilganligi munosabati bilan vazirlar mahkamasining «davlat yong‘in nazorati to‘g‘risidagi nizomni tasdiqlash haqida» 2013-yil 4-oktyabrdagi 272-son qaroriga o‘zgartirish va qo‘shimchalar kiritish to‘g‘risida” 2023-yil 23-noyabr, 615-son qarori. https://lex.uz/uz/docs/6674603
[2] O‘zbekiston Respublikasi Vazirlar Mahkamasining 2023-yil 4-avgustdagi 332-sonli qarori. https://lex.uz/docs/6556234?ONDATE=04.08.2023
[3] Нуркулов Ф.Н., Мусаев А.Х. Полимер қурилиш материалларни кислород индексига металл сақлаган антипиренлар таъсирини ўрганишни тадқиқ қилиш // “Yong‘in-portlash xavfsizligi” ilmiy-amaliy elektron jurnal 2024. ISSN 2181-9327 № 1 (14), 2024. 191-196 бет.
[4] Xo‘jaqulov Jo‘rabek. Olovbardosh polimer qurilish materiallarni tayyorlashning texnologik jarayonlari // O‘zbekiston respublikasi oliy ta’lim, fan va innovatsiyalar vazirligi andijon davlat chet tillari instituti ijtimoiy gumanitar fanlar, pedagogika va psixologiya kafedrasining “Zamonaviy ta’lim: yangi yondashuvlar va dolzarb tadqiqotlar” respublika ilmiy-amaliy konferensiyasi materiallari. Andijon 2023 yil 16-17 may.
[5] Preventive measures for fire-related injuries and their risk factors in residential buildings: a systematic review Mohammadreza Shokouhi, Khadijeh Nasiriani,, J Inj Violence Res. 2019 Jan; 11(1): 1–14. doi: 10.5249/jivr.v11i1.1057.
[6] Aluminum Composite Panels Market by Type (Fire Resistant, Anti-bacterial, Anti-Static), by Coating Base (Polyvinylidene Difluoride (PVDF) and Polyethylene (PE), by Application (Building & Construction, Advertising boards, Transportation), by Region (North America, Europe, Asia-Pacific and Rest of World) - Forecast to 2032 Source: https://www.marketresearchfuture.com /reports/aluminum-composite-panels-market-2631.
[7] Ф.Н.Нуркулов, Тўра Суннат Шомансурхон, Ж.Халилов // Fosforli oligomerik antiperenlarni o‘rganish // ЎзМУ хабарлари 2021 (3/1) ISSN 2181-7324. С 286-290.
[8] А.Т.Джалилов., Н.А. Самигов, Ф.Н.Нурқулов, И.И. Сиддиков, С.Қ.Жумаев. Маҳаллий хомашёлар асосидаги янги авлод антипиренларининг ёғоч материалларига таъсири. –Т.: «Fan va texnologiyalar nashriyot-matbaa uyi», 2021 . С. 176 .
[9] Srivastava G, Nakrani D, Ghoroi C (2020) Performance of Combustible Facade Systems with Glass, ACP and Firestops in Full-Scale, Real Fire Experiments. Fire Technology. doi:10.1007/s10694-019-00943-4
[10] McLaggan M.S, Hidalgo J.P, Carrascal J, et al (2020) Flammability trends for a comprehensive array of cladding materials. Fire Safety Journal. doi: 10.1016/j.firesaf.2020.103133
[11] Buvaraimov Z.K., , Nurkulov F.N., Jalilov A.T. Investigation of physico-chemical properties of modern flame-retardant polyvinyl chloride composites // Universum: технические науки: электрон. научн. журн. 2023. 7(112). – C-4. URL: https://7universum.com/ru/ tech/archive/item/15737. (02.00.00; № 1)
[12] У.Б. Қадиров. Қурилиш материаллари ва конструкцияларининг оловбардошлик хусусиятларини тадқиқ қилиш // Ўзбекистон Республикаси ФВВ Академияси “Ёнғин–портлаш хавфсизлиги” илмий–амалий электрон журнали 1(8)2022 йил. 405–414 бетлар
[13] G‘ayimnazarov Israil Xoliqovich, Mamarasulov Sobir Raxmonqulogli, and Toshmurodov Jomurod Jahongirogli. “O‘ZAN TUBI BARQARORLIGINI BAHOLASH USULLARI” Sanoatda raqamli texnologiyalar/Цифровые технологии в промышленности 4.1 (2026): 237-241.
[14] G‘ayimnazarov I.X., Raxmatov M.I., Shermatov B.B. O‘ZBEKISTONNING QURUQ-ISSIQ IQLIM SHAROITIDA BINOLARNING ENERGIYA SAMARADORLIGINI OSHIRISH ISTIQBOLLARI //Innovatsion texnologiyalar. – 2026. – Т. 61. – №. 1. – С. 139-145.
[15] Ф.Н. Нурқулов., У.Б. Қадиров. Қурилиш материаллари ва конструкцияларини ишлаб чиқишнинг бугунги кундаги ҳолати // Ўзбекистон Республикаси ФВВ Акдемияси, “Ёнғинлар юзасидан терговга қадар текширув соҳасидаги муаммолар ва уларнинг ечимлари” мавзусидаги илмий амалий анжумани материаллари тўплами. 2023 йил 28 февраль. Т.: 433–437 бетлар.
[16] Ф.Н. Нурқулов., У.Б. Қадиров. Оловбардош қурилиш материаллари ва конструкциялари асосий таркиби ва уларнинг хоссаларининг таҳлили // Ўзбекистон Республикаси ФВВ Академияси, “Ёнғинлар юзасидан терговга қадар текширув сохасидаги муаммолар ва уларнинг ечимлари” мавзусидаги илмий амалий анжумани материаллари тўплами. 2023 йил 28 февральб Т.:437–448 бетлар.

This work is licensed under a Creative Commons Attribution 4.0 International License.
Copyright (c) 2026 Berdiyev S.A., Nurqulov F.N. (Muallif)