Results of Experimental Investigations of Reinforced Concrete Wall Elements According to the Standard Temperature Mode of Fire

Author:

Perehin Alina1,Nuianzin Oleksandr1,Borysova Anna2,Nuianzin Vitalii1

Affiliation:

1. National University of Civil Defence of Ukraine

2. Institute of Public Administration and Research in Civil Defence

Abstract

Methods for determining the actual limit of fire resistance of reinforced concrete building structures in case of fire are analyzed. On the basis of the offered methods the technique which gives the chance to receive data of temperature distributions on a surface of a fragment of a wall and in its section is created. The method of conducting a fire test to calculate the limit of fire resistance of a small fragment of the load-bearing wall and verify the reproducibility of experimental data is described. The distribution of temperatures over the entire area of the fire furnace, the studied fragment was checked and the obtained results were analyzed. According to the results of this work, the following was established: the aim of the work was to obtain the results of temperature distributions on the surface, in the points of integration in the cross sections of fragments of reinforced concrete walls for further calculation of their fire resistance limit and check reproducibility of experimental data. It is established that the temperature obtained as a result of the fire test corresponds to the standard temperature of the fire and this method of fire test to determine the temperature distributions of a small fragment of the load-bearing wall in fire conditions is acceptable for use. The error between the experimentally determined and theoretically calculated limit of fire resistance is not more than 3%.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference8 articles.

1. Building Code B.1.1-7-2016 «Fire safety of construction sites. General Requirements», (2016).

2. DSTU B V.1.1–19: 2007 Zakhyst vid pozhezhi. Perekryttia ta pokryttia. Metod vyprobuvan na vohnestiikist (EN 1365-2: 1999, NEQ). Kyiv, 2007 [in Ukrainian].

3. T. Shnal, S. Pozdieiev, O. Nuianzin, S. Sidnei, Improvement of the Assessment Method for Fire Resistance of Steel Structures in the Temperature Regime of Fire under Realistic Conditions. In Materials Science Forum Trans Tech Publications Ltd, 1006 (2020) 107–116.

4. O. Nuianzin, O. Tyshchenko, S. Zhartovskyi, P. Zaika, & A. Peregin, The research of carrying capacity of reinforced concrete walls under uneven warming. In IOP Conference Series: Materials Science and Engineering, 708 1 (2019) 012063.

5. A. Perehin et al., Technique for creating the prototype of a compact fire plant for tests to determine the fire resistance of reinforced concrete structures. The scientific heritage: 38 (2021).

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1. The improvement of the simplified calculation method for assessing the fire resistance of a hollow-core slab;IX INTERNATIONAL CONFERENCE ON ACTUAL PROBLEMS OF ENGINEERING MECHANICS (APEM2022);2023

2. Study of the Destruction Mechanism of Reinforced Concrete Hollow Slabs Under Fire Conditions;Smart Technologies in Urban Engineering;2023

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