FIRE-RESISTANCE PROPERTIES RESEARCH OF “WATER GLASS - GRAPHITE MICROPARTICLES” COMPOSITE MATERIAL

Subject of Research. Research results of the fire-resistance for “water glass - graphite microparticles” composite material (CM) are given. The method for fire-resistance test of the micro composition is suggested in order to determine the limit state of the experimental samples under hightemperatur...

Full description

Bibliographic Details
Main Authors: E. A. Pitukhin, A. S. Ustinov
Format: Article
Language:English
Published: Saint Petersburg National Research University of Information Technologies, Mechanics and Optics (ITMO University) 2016-03-01
Series:Naučno-tehničeskij Vestnik Informacionnyh Tehnologij, Mehaniki i Optiki
Subjects:
Online Access:http://ntv.ifmo.ru/file/article/15180.pdf
_version_ 1811319238827180032
author E. A. Pitukhin
A. S. Ustinov
author_facet E. A. Pitukhin
A. S. Ustinov
author_sort E. A. Pitukhin
collection DOAJ
description Subject of Research. Research results of the fire-resistance for “water glass - graphite microparticles” composite material (CM) are given. The method for fire-resistance test of the micro composition is suggested in order to determine the limit state of the experimental samples under hightemperature action. Method. Test-benchequipment being used for research includes metering devices of temperature and time, as well as laboratory electric furnace PL20 with a maximum temperature in the chamber up to 1250ºC. Fire-resistance limit for the test samples of composite material is determined by the loss of insulating ability (I). For that purpose, the time is obtained from the test beginning with the standard temperature mode up to a limiting condition. Main Results. In accordance with the requirements of regulatory documents fire-resistance limit I15 has been obtained equal to 15 minutes. The qualitative and quantitative phase analysis of the CM structure has been done. By the study of samples by X-ray diffraction and electron microscopy we have determined that the material retains the same chemical structure with a monotonic heating above 700° C. Practical Relevance. The composite material with obtained characteristics can be used as a protective coating for building constructions with the aim of fire-resistance enhancement and fuel hazard reduction.
first_indexed 2024-04-13T12:39:17Z
format Article
id doaj.art-b788230b54824dcd96e5cf256d761311
institution Directory Open Access Journal
issn 2226-1494
2500-0373
language English
last_indexed 2024-04-13T12:39:17Z
publishDate 2016-03-01
publisher Saint Petersburg National Research University of Information Technologies, Mechanics and Optics (ITMO University)
record_format Article
series Naučno-tehničeskij Vestnik Informacionnyh Tehnologij, Mehaniki i Optiki
spelling doaj.art-b788230b54824dcd96e5cf256d7613112022-12-22T02:46:34ZengSaint Petersburg National Research University of Information Technologies, Mechanics and Optics (ITMO University)Naučno-tehničeskij Vestnik Informacionnyh Tehnologij, Mehaniki i Optiki2226-14942500-03732016-03-0116227728310.17586/2226-1494-2016-16-2-277-283FIRE-RESISTANCE PROPERTIES RESEARCH OF “WATER GLASS - GRAPHITE MICROPARTICLES” COMPOSITE MATERIALE. A. PitukhinA. S. UstinovSubject of Research. Research results of the fire-resistance for “water glass - graphite microparticles” composite material (CM) are given. The method for fire-resistance test of the micro composition is suggested in order to determine the limit state of the experimental samples under hightemperature action. Method. Test-benchequipment being used for research includes metering devices of temperature and time, as well as laboratory electric furnace PL20 with a maximum temperature in the chamber up to 1250ºC. Fire-resistance limit for the test samples of composite material is determined by the loss of insulating ability (I). For that purpose, the time is obtained from the test beginning with the standard temperature mode up to a limiting condition. Main Results. In accordance with the requirements of regulatory documents fire-resistance limit I15 has been obtained equal to 15 minutes. The qualitative and quantitative phase analysis of the CM structure has been done. By the study of samples by X-ray diffraction and electron microscopy we have determined that the material retains the same chemical structure with a monotonic heating above 700° C. Practical Relevance. The composite material with obtained characteristics can be used as a protective coating for building constructions with the aim of fire-resistance enhancement and fuel hazard reduction.http://ntv.ifmo.ru/file/article/15180.pdfcomposite materialliquid glassgraphite fillerfire-resistance limitthermal effect
spellingShingle E. A. Pitukhin
A. S. Ustinov
FIRE-RESISTANCE PROPERTIES RESEARCH OF “WATER GLASS - GRAPHITE MICROPARTICLES” COMPOSITE MATERIAL
Naučno-tehničeskij Vestnik Informacionnyh Tehnologij, Mehaniki i Optiki
composite material
liquid glass
graphite filler
fire-resistance limit
thermal effect
title FIRE-RESISTANCE PROPERTIES RESEARCH OF “WATER GLASS - GRAPHITE MICROPARTICLES” COMPOSITE MATERIAL
title_full FIRE-RESISTANCE PROPERTIES RESEARCH OF “WATER GLASS - GRAPHITE MICROPARTICLES” COMPOSITE MATERIAL
title_fullStr FIRE-RESISTANCE PROPERTIES RESEARCH OF “WATER GLASS - GRAPHITE MICROPARTICLES” COMPOSITE MATERIAL
title_full_unstemmed FIRE-RESISTANCE PROPERTIES RESEARCH OF “WATER GLASS - GRAPHITE MICROPARTICLES” COMPOSITE MATERIAL
title_short FIRE-RESISTANCE PROPERTIES RESEARCH OF “WATER GLASS - GRAPHITE MICROPARTICLES” COMPOSITE MATERIAL
title_sort fire resistance properties research of water glass graphite microparticles composite material
topic composite material
liquid glass
graphite filler
fire-resistance limit
thermal effect
url http://ntv.ifmo.ru/file/article/15180.pdf
work_keys_str_mv AT eapitukhin fireresistancepropertiesresearchofwaterglassgraphitemicroparticlescompositematerial
AT asustinov fireresistancepropertiesresearchofwaterglassgraphitemicroparticlescompositematerial