Experimental Investigation of the Effect of Heat Flux on the Fire Behavior of Engineered Wood Samples

This paper presents the experimental study results on the effect of heat flux emitted by a standard source on the charring and ignition characteristics of wood construction materials (plywood, chipboard, and oriented strand board) using infrared thermography (IRT) in the narrow spectral ranges of in...

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Main Authors: Denis Kasymov, Mikhail Agafontsev, Vladislav Perminov, Pavel Martynov, Vladimir Reyno, Egor Loboda
Format: Article
Language:English
Published: MDPI AG 2020-10-01
Series:Fire
Subjects:
Online Access:https://www.mdpi.com/2571-6255/3/4/61
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spelling doaj-86adb0e1edec4f44992b85f5b51fdc622020-11-25T04:04:22ZengMDPI AGFire2571-62552020-10-013616110.3390/fire3040061Experimental Investigation of the Effect of Heat Flux on the Fire Behavior of Engineered Wood SamplesDenis Kasymov0Mikhail Agafontsev1Vladislav Perminov2Pavel Martynov3Vladimir Reyno4Egor Loboda5Department of Physical and Computational Mechanics, Tomsk State University, Tomsk 634050, RussiaDepartment of Physical and Computational Mechanics, Tomsk State University, Tomsk 634050, RussiaDepartment of Physical and Computational Mechanics, Tomsk State University, Tomsk 634050, RussiaDepartment of Physical and Computational Mechanics, Tomsk State University, Tomsk 634050, RussiaV.E. Zuev Institute of Atmospheric Optics SB RAS, Tomsk 634055, RussiaDepartment of Physical and Computational Mechanics, Tomsk State University, Tomsk 634050, RussiaThis paper presents the experimental study results on the effect of heat flux emitted by a standard source on the charring and ignition characteristics of wood construction materials (plywood, chipboard, and oriented strand board) using infrared thermography (IRT) in the narrow spectral ranges of infrared wavelength. The time to ignition (TTI), charring rate and depth were obtained for the samples. In addition, the effect of several fire retardants on the charring rate and depth of the samples and TTI was analyzed. All fire retardants contribute to an increase in TTI, which confirms their main function—fire protection. However, the effect of fire retardants differs noticeably depending on the material. A new experimental technique is suggested, with the infrared imaging of the temperature distribution along the end of a sample under the heat flux effect on its frontal surface. The uniqueness of this approach consists in the registration of the entire process of ignition and combustion of the presented materials, which occurs in real time without contact with high spatial and temporal resolution. Using the infrared camera of the research class, it becomes possible to record the entire process from the occurrence of the temperature exposure region to the deep carbonized crater in the body of the material. The results can serve as additional recommendations in the development of fire hazard testing methods for construction materials and fire retardants.https://www.mdpi.com/2571-6255/3/4/61heat fluxwood construction materialsIR diagnosticscharringignitionfire behavior
collection DOAJ
language English
format Article
sources DOAJ
author Denis Kasymov
Mikhail Agafontsev
Vladislav Perminov
Pavel Martynov
Vladimir Reyno
Egor Loboda
spellingShingle Denis Kasymov
Mikhail Agafontsev
Vladislav Perminov
Pavel Martynov
Vladimir Reyno
Egor Loboda
Experimental Investigation of the Effect of Heat Flux on the Fire Behavior of Engineered Wood Samples
Fire
heat flux
wood construction materials
IR diagnostics
charring
ignition
fire behavior
author_facet Denis Kasymov
Mikhail Agafontsev
Vladislav Perminov
Pavel Martynov
Vladimir Reyno
Egor Loboda
author_sort Denis Kasymov
title Experimental Investigation of the Effect of Heat Flux on the Fire Behavior of Engineered Wood Samples
title_short Experimental Investigation of the Effect of Heat Flux on the Fire Behavior of Engineered Wood Samples
title_full Experimental Investigation of the Effect of Heat Flux on the Fire Behavior of Engineered Wood Samples
title_fullStr Experimental Investigation of the Effect of Heat Flux on the Fire Behavior of Engineered Wood Samples
title_full_unstemmed Experimental Investigation of the Effect of Heat Flux on the Fire Behavior of Engineered Wood Samples
title_sort experimental investigation of the effect of heat flux on the fire behavior of engineered wood samples
publisher MDPI AG
series Fire
issn 2571-6255
publishDate 2020-10-01
description This paper presents the experimental study results on the effect of heat flux emitted by a standard source on the charring and ignition characteristics of wood construction materials (plywood, chipboard, and oriented strand board) using infrared thermography (IRT) in the narrow spectral ranges of infrared wavelength. The time to ignition (TTI), charring rate and depth were obtained for the samples. In addition, the effect of several fire retardants on the charring rate and depth of the samples and TTI was analyzed. All fire retardants contribute to an increase in TTI, which confirms their main function—fire protection. However, the effect of fire retardants differs noticeably depending on the material. A new experimental technique is suggested, with the infrared imaging of the temperature distribution along the end of a sample under the heat flux effect on its frontal surface. The uniqueness of this approach consists in the registration of the entire process of ignition and combustion of the presented materials, which occurs in real time without contact with high spatial and temporal resolution. Using the infrared camera of the research class, it becomes possible to record the entire process from the occurrence of the temperature exposure region to the deep carbonized crater in the body of the material. The results can serve as additional recommendations in the development of fire hazard testing methods for construction materials and fire retardants.
topic heat flux
wood construction materials
IR diagnostics
charring
ignition
fire behavior
url https://www.mdpi.com/2571-6255/3/4/61
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