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Title: Thermal resistance of fire retardant materials // Magazine of Civil Engineering. – 2022. – № 4 (112). — С. 11213
Creators: Budykina T. A.; Anosova Y. B.
Imprint: 2022
Collection: Общая коллекция
Subjects: Строительство; Изоляционные работы; flame retardant materials; thermal resistance of materials; flame retardant properties of materials; building materials; thermogravimetric analysis; thermal insulation boards; огнезащитные материалы; термическая стойкость материалов; огнезащитные свойства материалов; строительные материалы; термогравиметрический анализ; термоизоляционные плиты
UDC: 699.8
LBC: 38.637
Document type: Article, report
File type: PDF
Language: English
DOI: 10.34910/MCE.112.13
Rights: Свободный доступ из сети Интернет (чтение, печать, копирование)
Record key: RU\SPSTU\edoc\70397

Allowed Actions: Read Download (1.1 Mb)

Group: Anonymous

Network: Internet

Annotation

The results of thermal resistance of fire-retardant materials "OGNEBASALT" PMBOR and OGNEZA-GT sealant in the form of a mineral wool heat-insulating plate are presented. To study the behavior of fire-retardant materials, the method of TG-DSC synchronous thermal analysis (thermogravimetry in conjunction with differential scanning calorimetry) was used on a NETZSCH thermal analyzer. The incombustible properties of "OGNEBASALT" PMBOR have been confirmed, which showed a decrease in the mass of the material by 21 % when heated to 1000 C. The thermo-expanding sealant OGNEZA-GT reduced its weight at the same heating with the fire-basalt material by 64 %. For a 10 % weight loss, the two test specimens require different temperatures of 395 and 262 C, respectively. Time interval of "OGNEBASALT" PMBOR weight loss from 99.6 % to 77.6 % – from 12 minutes to 27 minutes of the experiment; for OGNEZA-GT sealant, from 99.8 % to 54.7 % – from 8 minutes to 18 minutes of testing. The best thermo-resistant properties have been revealed for the fire-retardant material "OGNEBASALT" PMBOR, which makes it possible to recommend its widespread use as a material for passive fire protection. The research results can be used to justify the choice of fire protection in buildings of various functional classes of fire hazard.

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Table of Contents

  • Thermal resistance of fire retardant materials
    • 1. Introduction
    • 2. Methods
    • 3. Results and Discussion
    • 4. Conclusions

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