Affiliation:
1. Kyiv National University of Construction and Architecture
2. National University of Life and Environmental Sciences of Ukraine
Abstract
Results of experimental researches about affectivity of firebiopotection products made from cane. Due to the unique properties of the cane, such as small volume weight, low thermal conductivity, rather high atmospheric resistance, high chemical resistance, the possibility of manufacturing parts at the site, efficiency, etc., cane products, despite the high pace of new technologies, are widely used in construction. Using cane in construction has a significant number of advantages, but needs protection from fire, from it produce a variety of products, equip the buildings. The unresolved issue of fire protection of products from such materials reduces the possibility of their use in construction. The experimental research on the determination of the fire-safety properties of the cane set the ignition of the raw sample, while for fire-proof - the process of ignition and propagation of the flame did not occur. Especially inhibition of the process of ignition and propagation of cane fire treated with a covering impregnation solution, which consist of fire retardants under the influence of temperature with the absorption of heat and the release of non-combustible gases (nitrogen, carbon dioxide), change in the direction of the expansion in the direction of formation of non-combustible gases and heavy-duty coke residue, reducing the combustion of the material and, accordingly, the index of flammability. This indicates the possibility of directed control of the processes of transfer of high temperature to organic material by using special covering compositions for cane products.
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference9 articles.
1. N.A. Tichino, Features of the practical application of fire and bioprotective agents for wood impregnation. Fire and explosion hazard of substances and materials, 6, (2002) 38-43.
2. A.A. Leonovich, Chemical approach to the problem of reducing the fire hazard of wood materials. Fire and explosion hazard of substances and materials, 3, (1996) 10-14.
3. O. Bondarenko, S. Guzii, E. Zacharchenko, Development protective materials based glass & slag containing portland compositions. Eastern-European Journal of Enterprise Technologies, 6/11 (78), (2015) 41-47.
4. Yu. Tsapko, А. Tsapko, Modeling the heat conductivity process at the effect of the process on the field of fighted exchange. East European Journal Enterprise Technologies, 2/10 (92), (2018) 50-56.
5. Yu. Tsapko, V. Kyrycyok, A. Tsapko, O. Bondarenko, S. Guzii, Increase of fire resistance of coating wood with adding mineral fillers. MATEC Web of Conferences, Vol. 230, 02034 (2018), EDP Sciences, (2018).
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