Please use this identifier to cite or link to this item: https://sci.ldubgd.edu.ua/jspui/handle/123456789/17114
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dc.contributor.authorVeselivskyi, R.B.-
dc.contributor.authorKovalychyn, V.V.-
dc.contributor.authorDemchyna, B.G.-
dc.contributor.authorYakovchuk, R.S.-
dc.contributor.authorHavrys, A.P.-
dc.date.accessioned2025-12-23T12:47:14Z-
dc.date.available2025-12-23T12:47:14Z-
dc.date.issued2025-10-30-
dc.identifier.citationVeselivskyi, R. B., Kovalychyn, V. V., Demchyna, B. G., Yakovchuk, R. S., & Havrys, A. P. (2025). Experimental study of foam concrete as a fire protection material and a material capable of absorbing γ-radiation. Strength of Materials and Theory of Structures, 115, 375–382en_US
dc.identifier.citationVeselivskyi R.B., Kovalychyn V.V., Demchyna B.G., Yakovchuk R.S., Havrys А.P. Experimental study of foam concrete as a fire protection material and a material capable of absorbing γ -radiation / Strength of Materials and Theory of Structures: Scientificand-technical collected articles. – K.: KNUBA, 2025. – Issue 115. – P. 375-382-
dc.identifier.otherDOI: https://doi.org/10.32347/2410-2547.2025.115.375-382-
dc.identifier.urihttps://sci.ldubgd.edu.ua/jspui/handle/123456789/17114-
dc.description.abstractAn analysis of the accidents at nuclear power plants and power stations which are accompanied by high temperatures and radiation exposure of high intensity was conducted. Methodologies for identifying of fireproof ability and the determination of the absorption of γ-radiation were proposed. Requirements to experimental prototypes were presented. A fireproof performance and relaxation coefficient of γ-radiation of prototypes from foam concrete were determined. The researches of foam concrete on the subject of fire protection of metal structures and its ability to absorb γ-radiation have shown its effectiveness for its use to protect structures that are exposed to high temperatures and γ-radiation were carried out. Modern development construction encourages to usage of new materials (foamed concrete, aerated concrete, etc.), which would give an opportunity to reduce the consumption of materials and construction costs, and improve heat and ionizing protection while being eco and efficient in terms of energy saving and sufficient strength of the reactor building. The research of foam concrete held to determine the possibility of its use as a flame retardant material and material, which can absorb γ-radiant. For the experimentally and theoretical researches were developed two methods of research: for determine the ability of fire retardant foam and for determination of the absorption of γ-radiant of foamed concrete. Conducting research on the subject of fire protection foam concrete metal structures and its ability to absorb γ-radiant have shown its effectiveness and confirmed the possibility of using it in the construction of the protective membrane reactorsen_US
dc.language.isoenen_US
dc.publisherКиївський національний університет будівництва i архітектуриen_US
dc.relation.ispartofseriesStrength of Materials and Theory of Structures;115-
dc.subjectfoamed concrete, fire retardant, fireproof ability, critical temperature, thermal insulation capacity, γ-radiant, protection of critical infrastructureen_US
dc.titleEXPERIMENTAL STUDY OF FOAM CONCRETE AS A FIRE PROTECTION MATERIAL AND A MATERIAL CAPABLE OF ABSORBING γ-RADIATIONen_US
dc.typeArticleen_US
dcterms.referencesDemchyna, B., Polovko, A., & Veselivskyi, R. (2010). Investigation of structural and thermal insulation foam concrete as a fire protection material. Bulletin of Lviv Polytechnic National University: theory and practice of construction, 150-155-
dcterms.referencesYakovchuk R.S., Veselivskiy R.B. (2014). Effectiveness Testing of Filled Silicon Organic Coatings for Concrete. Safety & Fire Technology / Bezpieczeństwo i Technika Pożarnicza, 36(4): 59-64. doi: 10.12845/bitp.36.4.2014.6-
dcterms.referencesVeselivskyi R.B., Yakovchuk R.S., Petrovsky V.L., Havrys А.P., Smolyak D.V., Kahitin О.І. (2024) Environmentally safe installation for determining the fire resistance of coatings and fire resistance tests of small fragments building structures. Strength of Materials and Theory of Structures, 112. 248-257. https://doi.org/10.32347/2410-2547.2024.112.248-257-
dcterms.referencesVeselivskyi R.B., Yakovchuk R.S., Smolyak D.V., Petrovskyi V.L. (2024) Methodology for studying the fire protection ability of a fire protection coating based on polysiloxane and oxides of aluminium, titanium and chromium for steel building structures. Komunalne hospodarstvo mist 1(182). 171–179. https://doi.org/10.33042/2522-1809-2024-1-182-171- 179 (2024)-
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