Abstract
The article describes the results of studies aimed to assess the effect of zeolites with microencapsulated water on the fire-retardant efficiency of fire-retardant intumescent compositions using epoxy resins under the influence of hydrocarbon flaring. As part of a comprehensive research initiative, scientists conducted a series of experiments to evaluate the effect of microencapsulated zeolites on the fire retardant performance of fire-retardant intumescent epoxy resin compositions. These compositions were exposed to prolonged hydrocarbon flaring to simulate severe fire conditions. An advanced static method, regression analysis, was used to quantify the effectiveness of fire retardants. This approach allowed scientists to establish correlations between key parameters and fire resistance of the studied compositions. The research also included the development of an innovative technology for the synthesis of fire-retardant coatings that combine ablative and desorption protection mechanisms. These coatings have demonstrated exceptional fire-retardant properties, providing effective protection against thermal stress. Analysis of regression models revealed several critical factors. Thermal effect of exothermic peak (at 600-700°C): Microencapsulated zeolites have the ability to release water upon exothermic decomposition, which leads to cooling of the composition and additional foaming. These findings have important implications for the design and optimization of flame retardant materials, providing greater understanding of the mechanisms underlying their effectiveness.
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About this article
Publication Date
31 October 2024
Article Doi
eBook ISBN
978-1-80296-133-1
Publisher
European Publisher
Volume
134
Print ISBN (optional)
-
Edition Number
1st Edition
Pages
1-658
Subjects
Sociolinguistics, linguistics, semantics, discourse analysis, translation, interpretation
Cite this article as:
Dali, F. A., Shidlovskiy, G. L., Khasikhanov, M. S., Saidulaev, S. S., Khamsurkaev, K. I., Malaev, M. D., Masaeva, L. M., & Zalaev, R. U. (2024). Addressing The Environmental Challenges And Fire Safety By Means Of Materials Engineering. In D. K. Bataev, S. A. Gapurov, A. D. Osmaev, V. K. Akaev, L. M. Idigova, M. R. Ovhadov, A. R. Salgiriev, & M. M. Betilmerzaeva (Eds.), Social and Cultural Transformations in the Context of Modern Globalism (SCTCMG 2023), vol 134. European Proceedings of Social and Behavioural Sciences (pp. 96-104). European Publisher. https://doi.org/10.15405/epsbs.2024.10.12